Academic literature on the topic 'Conservation of natural resources Belize'

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Journal articles on the topic "Conservation of natural resources Belize"

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Farrell, Tracy A., and Jeffrey L. Marion. "Identifying and assessing ecotourism visitor impacts at eight protected areas in Costa Rica and Belize." Environmental Conservation 28, no. 3 (September 2001): 215–25. http://dx.doi.org/10.1017/s0376892901000224.

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Protected area visitation is an important component of ecotourism, and as such, must be sustainable. However, protected area visitation may degrade natural resources, particularly in areas of concentrated visitor activities like trails and recreation sites. This is an important concern in ecotourism destinations such as Belize and Costa Rica, because they actively promote ecotourism and emphasize the pristine qualities of their natural resources. Research on visitor impacts to protected areas has many potential applications in protected area management, though it has not been widely applied in Central and South America. This study targeted this deficiency through manager interviews and evaluations of alternative impact assessment procedures at eight protected areas in Belize and Costa Rica. Impact assessment procedures included qualitative condition class systems, ratings systems, and measurement-based systems applied to trails and recreation sites. The resulting data characterize manager perceptions of impact problems, document trail and recreation site impacts, and provide examples of inexpensive, efficient and effective rapid impact assessment procedures. Interview subjects reported a variety of impacts affecting trails, recreation sites, wildlife, water, attraction features and other resources. Standardized assessment procedures were developed and applied to record trail and recreation site impacts. Impacts affecting the study areas included trail proliferation, erosion and widening, muddiness on trails, vegetation cover loss, soil and root exposure, and tree damage on recreation sites. The findings also illustrate the types of assessment data yielded by several alternative methods and demonstrate their utility to protected area managers. The need for additional rapid assessment procedures for wildlife, water, attraction feature and other resource impacts was also identified.
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Aguilar-Støen, Mariel, and Shivcharn S. Dhillion. "Implementation of the Convention on Biological Diversity in Mesoamerica: environmental and developmental perspectives." Environmental Conservation 30, no. 2 (June 2003): 131–38. http://dx.doi.org/10.1017/s0376892903000110.

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Mesoamerica (Southern Mexico, Guatemala, Belize, El Salvador, Honduras, Nicaragua, Costa Rica and Panama) is a culturally diverse region considered a conservation priority due to its biotic richness and high endemism. The Convention on Biological Diversity (CBD) sets out obligations and objectives for national parties to cope with biodiversity reduction, and encourages these national parties to develop measures to conserve and manage biodiversity. This paper presents trends in Mesoamerican countries in the implementation of the CBD, specifically in relation to the general measures for conservation and sustainable use (Article 6), identification and monitoring (Article 7), and in situ conservation (Article 8) derived from examination of reports from the CBD National Reports unit, questionnaires to national focal points, and interviews in the field. In general, there was increased effort toward CBD implementation and related issues. The scientific capacity, political stability, and accessibility to resources in each country, however, influenced the rate at which capacity was being built and the relative importance governments afforded to each of the CBD articles. Lack of resources or institutional limitations are identified as major impediments to fulfilling obligations. The CBD is also poorly known among actors in civil society and at several levels of administration. Overall, Costa Rica and Mexico are exceptions in the region with regard to inventory and monitoring, and the efforts to incorporate biodiversity into broader intersectoral policies. However, the measures required to ensure the fair and equitable sharing of benefits arising from biodiversity are poorly developed, or not developed at all, in the region. It is pivotal that, since Mesoamerica is one of the poorest regions in the world, any attempt to conserve biodiversity in the region must include sustainable use and equity.
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Hartup, Barry K. "Community conservation in belize: Demography, resource use, and attitudes of participating landowners." Biological Conservation 69, no. 3 (1994): 235–41. http://dx.doi.org/10.1016/0006-3207(94)90422-7.

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Kerr, A. J. "Conservation of natural resources." Proceedings of the Royal Society of Edinburgh. Section B. Biological Sciences 90 (1986): 469–78. http://dx.doi.org/10.1017/s0269727000005169.

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SynopsisAn indication is given of the importance of the Clyde Estuary for economic, scientific and aesthetic purposes. The main thrust of the World Conservation Strategy and the Conservation and Development Programme for the U.K. is explained. In the light of this the attitudes and actions of a range of agencies operating in the estuary are examined.
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Verma, Pragati. "CONSERVATION OF NATURAL RESOURCES." International Journal of Research -GRANTHAALAYAH 3, no. 9SE (September 30, 2015): 1–3. http://dx.doi.org/10.29121/granthaalayah.v3.i9se.2015.3244.

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The survival and progress of human life depends on developmental resources. Since ancient times human beings get various types of things from nature and fulfill their needs. In fact, resources are those which are useful to human beings, human beings are a part of the environment just like other organisms but a variation which is easily reflected. That is, human beings have sufficient ability to affect the environment around them and control them in some sense as compared to other organisms. That is why human relations with environment are given so much importance.In modern life, there is nothing more curious than the problem of human and environmental relations. The pace of this awareness has been slow in the developing countries and its solution has just started to be fully realized.The global dimension of environmental awareness is beginning to appear in some decades. It has been felt that the unpredictable loss of land, air, water etc. is being done by the nature system of the earth, the future survival of the organisms on earth is starting to be threatened, now there is a need to think holistically. It is known that the object of the world is in our hands.Man has also had to bear the consequences of contempt for nature. Due to all this, a strong need is being felt today that how the above balance of nature can be regained, now we have to use our technical skills in ways to reclaim our lost environment. मानव जीवन का अस्तित्व, प्रगति विकास संसाधनों पर निभ्रर करता है । आदिकाल से मनुष्य प्रकृति से विभिन्न प्रकार की वस्तुएँ प्राप्त कर अपनी आवष्यकताओं को पूरा करता है वास्तव में संसाधन वे है जिनकी उपयोगिता मानव के लिए हो, अन्य जीवों के समान ही मानव भी पर्यावरण का ही एक अंग है परन्तु एक विभिन्नता जो सहज ही परिलक्षित होती है वह यह है कि अन्य जीवों की तुलना में मानव अपने चारों ओर के पर्यावरण को प्रभावित तथा कुछ अर्थो में उसे नियंत्रित कर पाने की पर्याप्त क्षमता है यही कारण है कि मानव का पर्यावरण के साथ संबंधों को इतना महत्व दिया जाता है ।आधुनिक जीवन में मानव तथा पर्यावरण के संबंधों की समस्या से अधिक उत्सुकता का अन्य कोई विषय नहीं है । इस जागरूकता की गति विकासषील देषों में मंद रही है तथा इसका समाधान संपूर्णता से अभी-अभी ही अनुभव किया जाने लगा है । विगत् कुछ दषकों में पर्यावरणीय सजगता का वैष्विक आयाम प्रकट होने लगा है । यह महसूस किया गया है कि पृथ्वी की प्रकृति व्यवस्था से भूमि, वायु, जल आदि का अप्रत्याषित नुकसान किया जा रहा है पृथ्वी पर जीवों की भावी उत्तरजीविता को खतरा उत्पन्न होने लगा है अब समग्र रूप से सोचने की आवष्यकता पड़ रही है अब यह महसूस किया जाने लगा है कि विष्व का शग्य हमारे हाथो में है ।मनुष्य को प्रकृति के प्रति तिरस्कार का परिणाम भी सहना पड़ा है । इस सबके कारण ही आज इस बात की प्रबल आवष्यकता अनुभव की जाने लगी है कि किस प्रकार प्रकृति का उपर्युक्त संतुलन पुनः प्राप्त किया जा सकता है अब हमें अपने तकनीकी कौषल का उपयोग अपने खोये हुए पर्यावरण को पुनः प्राप्त करने के तरीकों में करना होगा ।
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Sharma, Seema. "CONSERVATION OF NATURAL RESOURCES." International Journal of Research -GRANTHAALAYAH 3, no. 9SE (September 30, 2015): 1–3. http://dx.doi.org/10.29121/granthaalayah.v3.i9se.2015.3174.

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The importance of natural resources in sustaining productivity and environmental protection is now relatively more realized than the past. Over the past few decades or so, more and more attention is being paid all over the world to conserve the Natural Resources. Natural resources are important material basis for a stable economy and social development too With Industrialization and Urbanization, mankind’s great demand for natural resources and their large scale exploitation and consumption has resulted in the weakening, deterioration and exhaustion of these resources. Human existence depends on the natural resources and the environment and the maintenance of which is now increasingly being considered as essential for mankind. As human populations increase and natural resources become more limited, there is a critical need for trained conservation professionals in natural resources conservation. Natural Resources are those environmental gifts which satisfy the human wants. They are the means of attaining social objectives. Conservation of natural resources is the wise use of the earth's resources by humanity to achieve its benefits for the longest possible period of time and ensure availability of these resources for the further generation. One difficult task faced by all countries is to guarantee the lasting utilization of natural resources at the lowest possible environmental cost while still assuring economical and social development.
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Hedrick, Philip. "Conservation Genetics for Natural Resources." BioScience 61, no. 4 (April 2011): 330–31. http://dx.doi.org/10.1525/bio.2011.61.4.19.

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Singh, Anita, and Ragini Singh. "NATURAL RESOURCES AND THEIR CONSERVATION." International Journal of Research -GRANTHAALAYAH 3, no. 9SE (September 30, 2015): 1–3. http://dx.doi.org/10.29121/granthaalayah.v3.i9se.2015.3210.

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Nature has provided all the useful resources to man with free hand. Adivana relied entirely on nature to fulfill all its needs, but in the development of Adivasi from human to modern man, man exploited the natural resources in full and consequently the abundant wealth of nature gradually started to end. In this sequence, various species have reached the category of extinct species, conservation of natural resources has become imperative to preserve the remaining species and the human species itself. Along with taking various protective measures for this, the need is for the youth who are sensitive to nature and able to bear the responsibility of conservation of natural resources by staying in the nature of nature even in odd circumstances. प्रकृति ने मनुष्य को सभी जीवनोपयोगी संसाधन मुक्त हस्त से प्रदान किये हैं। आदिमानव अपनी समस्त आवष्यकताओं की पूर्ति के लिये पूरी तरह प्रकृति पर निर्भर करता था, किंतु आदि मानव से आधुनिक मनुष्य बनने की विकासयात्रा में मनुष्य ने प्राकृतिक संसाधनों का भरपूर दोहन किया फलस्वरूप प्रकृति की अकूत संपदा धीरे-धीरे समाप्त होने लगी। इस क्रम में विभिन्न प्रजातियाँ विलुप्त प्रजातियों की श्रेणी में पहुँच गयीं, शेष बची हुई प्रजातियों और स्वयं मनुष्य प्रजाति को बचाये रखने के लिये भी प्राकृतिक संसाधनों का संरक्षण अत्यावष्यक हो गया है। इस हेतु विभिन्न सुरक्षात्मक कदम उठाने के साथ-साथ आवष्यकता ऐसे युवाओं की है जो प्रकृति के प्रति संवेदनषील हों तथा विषम परिस्थितियों में भी प्रकृति के सानिध्य में रहकर प्राकृतिक संसाधनों के संरक्षण का उत्तरदायित्व निभाने में सक्षम हों।
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Boback, Scott M. "Natural History and Conservation of Island Boas (Boa Constrictor) in Belize." Copeia 2005, no. 4 (December 2005): 879–84. http://dx.doi.org/10.1643/0045-8511(2005)005[0879:nhacoi]2.0.co;2.

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Boback, Scott M. "Natural History and Conservation of Island Boas (Boa constrictor) in Belize." Copeia 2005, no. 4 (December 2005): 880–85. http://dx.doi.org/10.1643/0045-8511(2005)005[0880:nhacoi]2.0.co;2.

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Dissertations / Theses on the topic "Conservation of natural resources Belize"

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Bruner, Gail Yvonne. "Evaluation a model of private-ownership conservation : ecotourism in the community baboon sanctuary in belize." Thesis, Georgia Institute of Technology, 1993. http://hdl.handle.net/1853/30382.

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Wildes, Fred Thomas. "A resource management strategy for the Belize barrier reef system." Thesis, Virginia Tech, 1992. http://hdl.handle.net/10919/41513.

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The need for a broader geographical and functional perspective in managing natural resources of the Belize barrier reef system was examined. The small country of Belize in Central America is struggling to increase its economic development and growth. It has an excellent natural resource base, the most dramatic component being the extensive barrier reef system just offshore. The research identified key economic and environmental issues relative to Belize’s reef complex, and analyzed resource management policies and actions taken to date. Development and conservation needs suggest a multiple use strategy aimed at economic and environmental sustainability. Due to areal extent and ecological complexity, the present reactive, small-scale and piecemeal approach is not adequate to realize sustainable utilization of the area’s resources. This research shows the need for a broad spatial and interdisciplinary “coastal zone" perspective, leading to a comprehensive and integrated strategy upon which to base resource planning and management. A strategy for the reef system must be accomplished within the broader context of a national resource management strategy, integrating concerns of economic development and environmental protection. As a component of this national policy, the proposed strategy for the barrier reef system is based on principles of multiple use of resources, coastal zone scope, and sustainability. The research supports a reef system-wide protected area, using a biosphere reserve framework and a customized model planning process to implement the strategy.
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Goetze, Tara C. Feit Harvey A. "Muddy waters: conservation discourse and the politics of power in marine park co-management in Belize /." *McMaster only, 2005.

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Lai, Shin-kwan Flora. "Conservation consideration in Hong Kong : a case study of sites of special scientific interest (SSSI) /." Hong Kong : University of Hong Kong, 1998. http://sunzi.lib.hku.hk/hkuto/record.jsp?B19906092.

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Edwards, Taylor. "Desert tortoise conservation genetics." Thesis, The University of Arizona, 2003. http://hdl.handle.net/10150/291566.

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Managing for the long-term survival of a species requires an understanding of its population genetics. The desert tortoise, Gopherus agassizii, inhabits the Mojave and Sonoran deserts of North America. Desert tortoises face many threats to their continued survival, including habitat loss and fragmentation. I used mitochondrial and microsatellite DNA markers to examine genetic structure within and among populations of desert tortoises. I found that both the Mojave and Sonoran populations of desert tortoise exhibit similar patterns of population genetic structure. Gene flow among localities within each region is part of the evolutionary history of the desert tortoise and dispersal events probably play an important role in the long-term maintenance of populations. Movement barriers caused by anthropogenic landscape changes have the potential to effect desert tortoise population viability. Understanding the historical connectivity between and within the Mojave and Sonoran populations of desert tortoises will help facilitate the conservation of this species.
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Green, Gina C. "Conservation projects in Central America an analysis to determine the ingredients for success /." Thesis, University of Oxford, 1989. http://catalog.hathitrust.org/api/volumes/oclc/26977311.html.

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Tanner, Randy. "Legitimacy and the use of natural resources in Kruger National Park, South Africa." CONNECT TO THIS TITLE ONLINE, 2007. http://etd.lib.umt.edu/theses/available/etd-05222008-101255/.

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Singh, Jaidev. "State-making and community-based natural resource management : cases of the Vhimba CAMPFIRE Project (Zimbabwe) and the Chimanimani Transfrontier Conservation Area (Mozambique) /." Thesis, Connect to this title online; UW restricted, 2001. http://hdl.handle.net/1773/5532.

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Calegari, Valerie Rose. "Environmental perceptions and local conservation efforts in Cuatro Ciénegas, Coahuila, México /." Access online version, 1997. http://www.desertfishes.org/cuatroc/lit/calegari/thesis.html.

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Chassels, Marla R. "Participatory conservation in the Philippines : a case study in Siquijor." Online access for everyone, 2007. http://www.dissertations.wsu.edu/Thesis/Spring2007/m_chassels_050107.pdf.

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Books on the topic "Conservation of natural resources Belize"

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Klee, Gary A. Conservation of natural resources. Englewood Cliffs, N.J: Prentice Hall, 1991.

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Natural resources conservation law. New Delhi: Sage Publications, 2010.

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Conservation of natural resources. Hauppauge, N.Y: Nova Science Publishers, 2009.

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Jakab, Cheryl. Natural resources. North Mankato, MN: Smart Apple Media, 2007.

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White, James. Conservation in 1918. Ottawa: Commission of Conservation, 1997.

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Clifford, Sifton. Conservation in 1917. Ottawa: Commission of Conservation, 1997.

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Pakistan. Natural resources laws. [Fort Abbas]: Lawvision, 2008.

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II, Conservation Congress. Conservation C.O.N.G.R.E.S.S.: Department of Conservation analysis of recommendations. [Springfield, Ill: Illinois Dept. of Conservation, 1994.

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L, Wallace Donald, and Gore Dorothy J, eds. Our natural resources and their conservation. 7th ed. Danville, Ill: Interstate Publishers, 1992.

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Our natural resources: Environmental science - conservation. Corry, PA: Allegheny Press, 1995.

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Book chapters on the topic "Conservation of natural resources Belize"

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Williams, Byron K., and James D. Nichols. "Optimization in Natural Resources Conservation." In Application of Threshold Concepts in Natural Resource Decision Making, 45–65. New York, NY: Springer New York, 2014. http://dx.doi.org/10.1007/978-1-4899-8041-0_4.

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Kanazawa, Mark. "Energy conservation and energy efficiency." In Natural Resources and the Environment, 198–215. Abingdon, Oxon; New York, NY: Routledge, 2021.: Routledge, 2021. http://dx.doi.org/10.4324/9780429022654-11.

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Monod, Th. "Conservation of Natural Resources in Africa." In Novartis Foundation Symposia, 258–80. Chichester, UK: John Wiley & Sons, Ltd., 2008. http://dx.doi.org/10.1002/9780470719411.ch12.

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Flippen, J. Brooks. "NATURAL RESOURCES, CONSERVATION, AND THE ENVIRONMENT." In A Companion To Dwight D. Eisenhower, 264–79. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2017. http://dx.doi.org/10.1002/9781119027737.ch14.

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Hazrana, Jaweriah. "Natural Resources: Classification, Scarcity and Management." In Energy Economics and the Environment: Conservation, Preservation and Sustainability, 47–81. B1/I-1 Mohan Cooperative Industrial Area, Mathura Road New Delhi 110 044: SAGE Publications Pvt Ltd, 2020. http://dx.doi.org/10.4135/9789353883102.n3.

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Muñoz Sevilla, Norma Patricia, Maxime Le Bail, and Omar Berkelaar Muñoz. "Public Policies and Biodiversity Conservation in Mexico." In Mexican Natural Resources Management and Biodiversity Conservation, 105–15. Cham: Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-90584-6_4.

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McKelvey, Robert. "Common Property and the Conservation of Natural Resources." In Applied Mathematical Ecology, 58–80. Berlin, Heidelberg: Springer Berlin Heidelberg, 1989. http://dx.doi.org/10.1007/978-3-642-61317-3_3.

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Khatoon, Nasima. "Natural Resources and Biodiversity Conservation Practices in Tawang." In Tawang, Monpas and Tibetan Buddhism in Transition, 89–102. Singapore: Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-15-4346-3_7.

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Pinkus-Rendón, Miguel, Enrique Rodríguez-Balam, and Manuel Pinkus-Rendón. "Socio-environmental Aspects of Conservation in Rural Communities." In Mexican Natural Resources Management and Biodiversity Conservation, 167–76. Cham: Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-90584-6_8.

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Jiménez-Sierra, Cecilia Leonor, Daniel Torres-Orozco Jiménez, and Ma Loraine Matias-Palafox. "Are Current Actions for Conservation in Mexico Enough? A Review of the Proximate and Ultimate Threats." In Mexican Natural Resources Management and Biodiversity Conservation, 53–71. Cham: Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-90584-6_2.

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Conference papers on the topic "Conservation of natural resources Belize"

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Khan, Muhammad Moazzam. "Conservation and Management of Natural Resources." In IBRAS 2021 INTERNATIONAL CONFERENCE ON BIOLOGICAL RESEARCH AND APPLIED SCIENCE. Juw, 2021. http://dx.doi.org/10.37962/ibras/2021/104-105.

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Wyshnytzky, Cianna, and Todd Sieber. "NATURAL RESOURCES CONSERVATION SERVICE PROGRAMS & EXAMPLES UTAH PROJECTS." In 72nd Annual GSA Rocky Mountain Section Meeting - 2020. Geological Society of America, 2020. http://dx.doi.org/10.1130/abs/2020rm-346423.

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Arthur M. Brate. "Rehabilitation of the Natural Resources Conservation Service Small Watershed Dams." In 2003, Las Vegas, NV July 27-30, 2003. St. Joseph, MI: American Society of Agricultural and Biological Engineers, 2003. http://dx.doi.org/10.13031/2013.13782.

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Prestwich, Clarence, and Ruth Book. "A Comparison of Standards: USDA-Natural Resources Conservation Service and ASABE." In 2021 ASABE Annual International Virtual Meeting, July 12-16, 2021. St. Joseph, MI: American Society of Agricultural and Biological Engineers, 2021. http://dx.doi.org/10.13031/aim.202100041.

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Sunandar, Ahmad Dany, Sriyanti Puspita Barus, Wanda Ksuwanda, and Muhammad Hadi Saputra. "Vegetation Diversity and Conservation Implications on Habitat of Taxus (Taxus sumatrana Miq. de Laub) in Northern Sumatra." In International Conference on Natural Resources and Technology. SCITEPRESS - Science and Technology Publications, 2019. http://dx.doi.org/10.5220/0008554603650371.

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Johansen, Line, Tommy Lennartsson, Anna Westin, Anamaria Iuga, Cosmin Marius Ivascu, Eveliina Eveliina Kallioniemi, and Sølvi Wehn. "Traditional semi-natural grassland management with heterogeneous mowing times enhances flower resources for pollinators in farmed landscapes." In 5th European Congress of Conservation Biology. Jyväskylä: Jyvaskyla University Open Science Centre, 2018. http://dx.doi.org/10.17011/conference/eccb2018/108127.

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Pirmatov, Khabibullo, Alim Pulatov, and Elena Horská. "Comparative analysis of Conventional and conservation agriculture." In International Scientific days 2016 :: The Agri-Food Value Chain: Challenges for Natural Resources Management and Society. Slovak University of Agriculture in Nitra, 2016. http://dx.doi.org/10.15414/isd2016.s2.07.

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Husain, Fadly, and Baiq Farhatul Wahidah. "Medicine from nature: Identification of medicinal plants used by belian (sasakese indigenous healer) in traditional medicine in Lombok, West Nusa Tenggara, Indonesia." In THE 9TH INTERNATIONAL CONFERENCE ON GLOBAL RESOURCE CONSERVATION (ICGRC) AND AJI FROM RITSUMEIKAN UNIVERSITY. Author(s), 2018. http://dx.doi.org/10.1063/1.5061896.

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Nugroho, Sigit, Absori Absori, Harun Harun, and Rahmanta Setiahadi. "Customary Law Harmonization Norma Interaction and Legal State in the Management of Natural Resources Conservation." In Proceedings of 1st Workshop on Environmental Science, Society, and Technology, WESTECH 2018, December 8th, 2018, Medan, Indonesia. EAI, 2019. http://dx.doi.org/10.4108/eai.8-12-2018.2283961.

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MURPHY, JULIA, JEREMIAH LEIBOWITZ, and ANNA HUDSON. "CONSERVATION FOR THE LONG-HAUL: PROTECTING CULTURAL AND NATURAL RESOURCES THROUGH FINANCIAL, LEGAL, AND PROGRAMMATIC STRATEGIES." In SUSTAINABLE DEVELOPMENT AND PLANNING 2017. Southampton UK: WIT Press, 2017. http://dx.doi.org/10.2495/sdp170361.

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Reports on the topic "Conservation of natural resources Belize"

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Onokpise, Oghenekome U., Don L. Rockwood, Dreamal H. Worthen, and Ted Willis. Celebrating minority professionals in forestry and natural resources conservation: proceedings of the symposium on the tenth anniversary of the 2 + 2 Joint Degree Program in Forestry and Natural Resources Conservation. Asheville, NC: U.S. Department of Agriculture, Forest Service, Southern Research Station, 2008. http://dx.doi.org/10.2737/srs-gtr-106.

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Onokpise, Oghenekome U., Don L. Rockwood, Dreamal H. Worthen, and Ted Willis. Celebrating minority professionals in forestry and natural resources conservation: proceedings of the symposium on the tenth anniversary of the 2 + 2 Joint Degree Program in Forestry and Natural Resources Conservation. Asheville, NC: U.S. Department of Agriculture, Forest Service, Southern Research Station, 2008. http://dx.doi.org/10.2737/srs-gtr-106.

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Rajarajan, Kunasekaran, Alka Bharati, Hirdayesh Anuragi, Arun Kumar Handa, Kishor Gaikwad, Nagendra Kumar Singh, Kamal Prasad Mohapatra, et al. Status of perennial tree germplasm resources in India and their utilization in the context of global genome sequencing efforts. World Agroforestry, 2020. http://dx.doi.org/10.5716/wp20050.pdf.

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Tree species are characterized by their perennial growth habit, woody morphology, long juvenile period phase, mostly outcrossing behaviour, highly heterozygosity genetic makeup, and relatively high genetic diversity. The economically important trees have been an integral part of the human life system due to their provision of timber, fruit, fodder, and medicinal and/or health benefits. Despite its widespread application in agriculture, industrial and medicinal values, the molecular aspects of key economic traits of many tree species remain largely unexplored. Over the past two decades, research on forest tree genomics has generally lagged behind that of other agronomic crops. Genomic research on trees is motivated by the need to support genetic improvement programmes mostly for food trees and timber, and develop diagnostic tools to assist in recommendation for optimum conservation, restoration and management of natural populations. Research on long-lived woody perennials is extending our molecular knowledge and understanding of complex life histories and adaptations to the environment, enriching a field that has traditionally drawn its biological inference from a few short-lived herbaceous species. These concerns have fostered research aimed at deciphering the genomic basis of complex traits that are related to the adaptive value of trees. This review summarizes the highlights of tree genomics and offers some priorities for accelerating progress in the next decade.
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Dugan, Alexa, Al Steele, David Hollinger, Richard Birdsey, and Jeremy Lichstein. Assessment of Forest Sector Carbon Stocks and Mitigation Potential for the State Forests of Pennsylvania. United States Department of Agriculture, July 2018. http://dx.doi.org/10.32747/2018.6893743.ch.

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Forests and their products provide many benefits including clean water, recreation, wildlife habitat, wood products, energy, as well as carbon sequestration and climate change mitigation. This project assesses past and future carbon sequestration and mitigation potential across the forest sector of Pennsylvania with a focus on State Forest lands. This research resulted from a collaboration between the U.S. Forest Service and the Pennsylvania Department of Conservation and Natural Resources (PA DCNR).
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Ruiz de Gauna, Itziar, Anil Markandya, Laura Onofri, Francisco (Patxi) Greño, Javier Warman, Norma Arce, Alejandra Navarrete, et al. Economic Valuation of the Ecosystem Services of the Mesoamerican Reef, and the Allocation and Distribution of these Values. Inter-American Development Bank, May 2021. http://dx.doi.org/10.18235/0003289.

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Coral reefs are one of the most diverse and valuable ecosystems on Earth. The Mesoamerican Reef contains the largest barrier reef in the Western Hemisphere. However, its health is threatened, so there is a need for a management and sustainable conservation. Key to this is knowing the economic value of the ecosystem. “Mainstreaming the value of natural capital into policy decision-making is vital” The value of environmental and natural resources reflects what society is willing to pay for a good or service or to conserve natural resources. Conventional economic approaches tended to view value only in terms of the willingness to pay for raw materials and physical products generated for human production and consumption (e.g. fish, mining materials, pharmaceutical products, etc.). As recognition of the potential negative impacts of human activity on the environment became more widespread, economists began to understand that people might also be willing to pay for other reasons beyond the own current use of the service (e.g. to protect coral reefs from degradation or to know that coral reefs will remain intact in the future). As a result of this debate, Total Economic Value (TEV) became the most widely used and commonly accepted framework for classifying economic benefits of ecosystems and for trying to integrate them into decision-making. This report estimates the economic value of the following goods and services provided by the MAR's coral reefs: Tourism & Recreation, Fisheries, Shoreline protection. To our knowledge, the inclusion of non-use values in the economic valuation of the Mesoamerican Barrier Reef System is novel, which makes the study more comprehensive.
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Wyndham, Amber, Emile Elias, Joel R. Brown, Michael A. Wilson, and Albert Rango. Drought Vulnerability Assessment to Inform Grazing Practices on Rangelands in Southeast Arizona and Southwest New Mexico’s Major Land Resource Area 41. United States. Department of Agriculture. Southwest Climate Hub, August 2018. http://dx.doi.org/10.32747/2018.6818230.ch.

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Increased climate variability, including more frequent and intense drought, is projected for the southwestern region of the United States. Increased temperatures and reduced precipitation lower soil water availability, resulting in decreased plant productivity and altered species composition, which may affect forage quality and quantity. Reduced forage quality and increased heat stress attributable to warmer temperatures could lead to decreased livestock performance in this system, which is extensively used for livestock grazing. Mitigating the effects of increasing drought is critical to social and ecological stability in the region. Reduced stocking rates and/or a change in livestock breeds and/or grazing practices are general recommendations that could be implemented to cope with increased climatic stress. Ecological Sites (ESs) and their associated state-and-transition models (STMs) are tools to help land managers implement and evaluate responses to disturbances. The projected change in climate will vary depending upon geographic location. Vulnerability assessments and adaptation strategies are necessary at the local level to inform local management decisions and help to ameliorate the effects of climate change on rangelands. The USDA Southwest Climate Hub and the Natural Resources Conservation Service (NRCS) worked together to produce this drought vulnerability assessment at the Major Land Resource Area (MLRA) level: it is based on ESs/STMs that will help landowners and government agencies to identify and develop adaptation options for drought on rangelands. The assessment illustrates how site-specific information can be used to help minimize the effects of drought on rangelands and to support informed decision-making for selecting management adaptations within MLRA 41.
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Wyndham, Amber, Emile Elias, Joel R. Brown, Michael A. Wilson, and Albert Rango. Drought Vulnerability Assessment to Inform Grazing Practices on Rangelands of Southeastern Colorado’s Major Land Resource Area 69. United States. Department of Agriculture. Southwest Climate Hub, January 2018. http://dx.doi.org/10.32747/2018.6876399.ch.

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Increased climate variability, including more frequent and intense drought, is projected for the southwestern region of the United States. Increased temperatures and reduced precipitation lower soil water availability resulting in decreased plant productivity and altering species composition which may affect forage quality and quantity. Reduced forage quality and increased heat stress attributable to warmer temperatures could lead to decreased livestock performance in this system, which is extensively used for livestock grazing. Mitigating the effects of increasing drought is critical to social and ecological stability in the region. Reduced stocking rates, change in livestock breeds and/or grazing practices are general recommendations that could be implemented to cope with increased climatic stress. Ecological Sites (ESs) and their associated state and transition models (STMs) are tools to help land managers implement and evaluate responses to disturbances. The projected change in climate will vary depending on geographic location. Vulnerability assessments and adaptation strategies are needed at the local level to inform local management decisions and help ameliorate the effects of climate change on rangelands. The USDA Southwest Climate Hub and Natural Resources Conservation Service (NRCS) worked together to produce this drought vulnerability assessment at the Major Land Resource Area (MLRA) level based on ESs/STMs that will help landowners and government agencies identify and develop adaptation options for drought on rangelands. The assessment illustrates how site-specific information can be used to help minimize the effects of drought on rangelands and support informed decision-making for selecting management adaptations within MLRA 69.
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Wyndham, Amber, Emile Elias, Joel Brown, Michael Wilson, and Albert Rango Rango. Drought Vulnerability Assessment to Inform Grazing Practices on Rangelands in Southeast Arizona and Southwest New Mexico’s Major Land Resource Area 41. USDA Southwest Climate Hub, August 2018. http://dx.doi.org/10.32747/2018.6947060.ch.

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Abstract:
Increased climate variability, including more frequent and intense drought, is projected for the southwestern region of the United States. Increased temperatures and reduced precipitation lower soil water availability, resulting in decreased plant productivity and altered species composition, which may affect forage quality and quantity. Reduced forage quality and increased heat stress attributable to warmer temperatures could lead to decreased livestock performance in this system, which is extensively used for livestock grazing. Mitigating the effects of increasing drought is critical to social and ecological stability in the region. Reduced stocking rates and/or a change in livestock breeds and/or grazing practices are general recommendations that could be implemented to cope with increased climatic stress. Ecological Sites (ESs) and their associated state-and-transition models (STMs) are tools to help land managers implement and evaluate responses to disturbances. The projected change in climate will vary depending upon geographic location. Vulnerability assessments and adaptation strategies are necessary at the local level to inform local management decisions and help to ameliorate the effects of climate change on rangelands. The USDA Southwest Climate Hub and the Natural Resources Conservation Service (NRCS) worked together to produce this drought vulnerability assessment at the Major Land Resource Area (MLRA) level: it is based on ESs/STMs that will help landowners and government agencies to identify and develop adaptation options for drought on rangelands. The assessment illustrates how site-specific information can be used to help minimize the effects of drought on rangelands and to support informed decision-making for selecting management adaptations within MLRA 41.
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Wyndham, Amber, Emile Elias, Joel Brown, Michael Wilson, and Albert Rango. Drought Vulnerability Assessment to Inform Grazing Practices on Rangelands of Southeastern Colorado’s Major Land Resource Area 69. USDA Southwest Climate Hub, July 2018. http://dx.doi.org/10.32747/2018.6947062.ch.

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Abstract:
Increased climate variability, including more frequent and intense drought, is projected for the southwestern region of the United States. Increased temperatures and reduced precipitation lower soil water availability, resulting in decreased plant productivity and altering species composition, which may affect forage quality and quantity. Reduced forage quality and increased heat stress attributable to warmer temperatures could lead to decreased livestock performance in this system, which is extensively used for livestock grazing. Mitigating the effects of increasing drought is critical to social and ecological stability in the region. Reduced stocking rates, change in livestock breeds and/or grazing practices are general recommendations that could be implemented to cope with increased climatic stress. Ecological Sites and their associated state–and-transition models (STMs) are tools to help land managers implement and evaluate responses to disturbances. The projected change in climate will vary depending upon geographic location. Vulnerability assessments and adaptation strategies are needed at the local level to inform local management decisions and help ameliorate the effects of climate change on rangelands. The United States Department of Agriculture (USDA) Southwest Climate Hub and Natural Resources Conservation Service (NRCS) worked together to produce this drought vulnerability assessment at the Major Land Resource Area (MLRA) level, based on ecological sites and state-and-transition models that will help landowners and government agencies to identify and develop adaptation options for drought on rangelands. The assessment illustrates how site-specific information can be used to help minimize the effects of drought on rangelands and support informed decision-making for the selection of management adaptations within MLRA 69.
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Wyndham, Amber, Emile Elias, Joel Brown, Michael Wilson, and Albert Rango. Drought Vulnerability Assessment to Inform Grazing Practices on Rangelands of Southeastern Colorado’s Major Land Resource Area 69. USDA Southwest Climate Hub, March 2018. http://dx.doi.org/10.32747/2018.6965584.ch.

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Abstract:
Increased climate variability, including more frequent and intense drought, is projected for the southwestern region of the United States. Increased temperatures and reduced precipitation lower soil water availability resulting in decreased plant productivity and altering species composition which may affect forage quality and quantity. Reduced forage quality and increased heat stress attributable to warmer temperatures could lead to decreased livestock performance in this system, which is extensively used for livestock grazing. Mitigating the effects of increasing drought is critical to social and ecological stability in the region. Reduced stocking rates, change in livestock breeds and/or grazing practices are general recommendations that could be implemented to cope with increased climatic stress. Ecological Sites (ESs) and their associated state and transition models (STMs) are tools to help land managers implement and evaluate responses to disturbances. The projected change in climate will vary depending on geographic location. Vulnerability assessments and adaptation strategies are needed at the local level to inform local management decisions and help ameliorate the effects of climate change on rangelands. The USDA Southwest Climate Hub and Natural Resources Conservation Service (NRCS) worked together to produce this drought vulnerability assessment at the Major Land Resource Area (MLRA) level based on ESs/STMs that will help landowners and government agencies identify and develop adaptation options for drought on rangelands. The assessment illustrates how site-specific information can be used to help minimize the effects of drought on rangelands and support informed decision-making for selecting management adaptations within MLRA 69.
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