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Artykuły w czasopismach na temat "Mangrove plants"

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Myint, Kyi Kyi. "Study on morphological characters of some mangrove plants in South-eastern Ayeyarwady Delta of Myanmar." Journal of Aquaculture & Marine Biology 8, no. 4 (2019): 118–28. http://dx.doi.org/10.15406/jamb.2019.08.00250.

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A study on the mangrvoe plants in Pyapon Township, Ayeyarwady Region, South-eastern Ayeyarwady Delta (between Lat. 94˚30′ and 95˚45′ North and between Long. 15˚30′ and 16˚25′ East), Myanmar was conducted within the period of March 2016 to February 2017. A total of 18 species of mangroves plants were recorded in the natural mangrove areas. In the present study, the taxonomic descriptions of mangrove plants were presented.
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Vinoth, R., S. Kumaravel, and R. Ranganathan. "Therapeutic and Traditional Uses of Mangrove Plants." Journal of Drug Delivery and Therapeutics 9, no. 4-s (2019): 849–54. http://dx.doi.org/10.22270/jddt.v9i4-s.3457.

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Mangrove plants are specialized timbered plants growing in the swamps of tidal coastal areas and stream deltas of tropical and subtropical parts of the world. They have been utilized for medicinal and traditional purposes by the coastal folks over the years. A large number of mangrove plants grows natural and exploited especially, for use in indigenous pharmaceutical houses. Several mangroves genus produce expensive drugs which have high export potential. The utilization of plants and plant products as medicines could be traced as far back as the commencement of human civilization. Mangrove pl
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Maryam, Siti, Entin Daningsih, and Asriah Nurdini Mardiyyaningsih. "Identifikasi Tumbuhan Mangrove di Hutan Lindung Padu Empat-Lebak Kerawang Desa Batu Ampar Kabupaten Kubu Raya." Bioscientist : Jurnal Ilmiah Biologi 12, no. 1 (2024): 1382. http://dx.doi.org/10.33394/bioscientist.v12i1.11285.

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Mangroves in Batu Ampar Village, West Kalimantan Province are under threat of damage because they are used as various commercial purposes by the local community such as logging mangrove trees for the mangrove charcoal industry. Mangroves have a vital functions for the environment, so that mangrove conservation is necessary. One of the mangrove conservation efforts is to know the types of mangrove plants in an area. The purpose of this study was to identify the types of mangrove plants and categorize into major, minor and associated mangroves found in the Padu Empat-Lebak Kerawang Protection Fo
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Subiyati, Amin Retnoningsih, and Enni Suwarsi Rahayu. "Diversity of Mangrove Plants in Karimunjawa National Park." Jurnal Penelitian Pendidikan IPA 10, no. 12 (2024): 10745–58. https://doi.org/10.29303/jppipa.v10i12.9212.

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Karimunjawa National Park (TNK) area is ± 111,625 hectares covering 27 islands located in Jepara Regency, Central Java at the northern tip of Java Island. Karimunjawa became Karimunjawa National Park (TNK) based on the Decree of the Minister of Forestry and Plantation No.78/Kpts-II/1999 because it has high diversity. The complexity of ecosystems in TNK is interesting to study, such as coral reef ecosystems, mangrove forests, lowland tropical rainforests, seagrass meadows, seaweed, and coastal forests. The mangrove forest in Karimunjawa National Park is a unique ecosystem because it consists of
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Rejeki, Desi Sri. "Eksplorasi Potensi Ekstrak Etanol Batang Dan Daun Mangrove (Rhizophora Mucronate Poir) Sebagai Antioksidan Alami." Barongko: Jurnal Ilmu Kesehatan 1, no. 1 (2022): 166–80. https://doi.org/10.59585/bajik.v1i1.530.

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Mangroves are common plants found in coastal areas that are affected by the tides of sea water and river estuaries. Most mangrove plants have therapeutic properties. Secondary metabolite chemical compounds found in mangroves include alkaloids, flavonoids, phenols, terpenoids, steroids, and saponins. Antioxidant chemicals are one of the substances produced by mangroves. Antioxidant chemical compounds are available in two types which are synthetic and natural and aim to ward off free radicals. The purpose of this study was to determine the yield of stem and leaf extracts of mangrove plants (Rhiz
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Tai, Akira, Akihiro Hashimoto, Takuya Oba, et al. "Growth of Mangrove Forests and the Influence on Flood Disaster at Amami Oshima Island, Japan." Journal of Disaster Research 10, no. 3 (2015): 486–94. http://dx.doi.org/10.20965/jdr.2015.p0486.

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“Mangrove” is the generic name for plants growing on tropical and subtropical tidal flats. The mangrove is used for many things, including disaster protecting land from high waves and tides and tsunamis, cleaning rivers and drainage containing soil and sand, and providing a variety of organisms with living space. Climate change and rising sea levels are threatening the future of the mangrove. Developing effective ways to conserve mangroves is thus needed, but more must be known about how the mangrove’s ecology and how it develops. It has been pointed out, for example, that mangroves increased
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Siahaan, Febrina Artauli, and Dewi Lestari. "Stomatal Characteristics in Three Groups of Mangrove Plants: Major, Minor, and Associate." Jurnal Natur Indonesia 21, no. 2 (2023): 144. http://dx.doi.org/10.31258/jnat.21.2.144-148.

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Three types of mangroves inhabit different environmental gradients and zones within the mangrove ecosystem. These three mangrove types exhibit distinct adaptation strategies. Stomata, as a crucial organ of the plant system, play a significant role in the adaptability of plants. Understanding stomata is essential for comprehending the physiological conditions and responses of plants to environmental conditions. This research aimed to study the stomatal characteristics of three different mangrove types and gain a deeper understanding of their potential adaptive strategies. This research was cond
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P, Rohini, and Ayona Jayadev. "Impacts of Microplastics on Mangroves - A Review." International Journal of Research and Review 10, no. 10 (2023): 22–27. http://dx.doi.org/10.52403/ijrr.20231004.

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Microplastics are an escalating pollutant that poses risks to the health of both marine and terrestrial environments. These tiny plastic particles have multiple avenues to infiltrate marine ecosystems, including mangrove forests. Notably, mangrove areas exhibit distinct ecological characteristics, leading to varying levels of microplastic contamination compared to other coastal locations. The unique way in which mangrove plants crisscross in the water creates an efficient filtering system, effectively reducing wave energy and turbulence. This, in turn, creates an environment where plastics are
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Dat, Ton That Huu, та Oanh Phung Thi Thuy. "\(\textit{In vitro}\) antioxidant, α-amylase and α-glucosidase inhibitory activities of endophytic bacteria from the roots of the mangrove plant \(\textit{Rhizophora stylosa}\) Griffith". Academia Journal of Biology 43, № 3 (2021): 125–35. http://dx.doi.org/10.15625/2615-9023/16143.

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Mangrove is one of the highly productive ecosystems and contains diverse plants and microbial communities. Bacterial endophytes from mangroves are considered as a prolific source of biological molecules with important functions in the protection of mangrove plants against herbivores, insects as well as pathogens. The present study aimed to isolate endophytic bacteria from the roots of mangrove plant Rhizophora stylosa and to screen antioxidant,
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Muhammad Yasir, Fitria Wardani, Apliniari Yuniar, and Ardhansyah Putra Hrp. "PEMBERDAYAAN MASYARAKAT MELALUI INOVASI BATIK DAN PRODUK MAKANAN MANGROVE DI DESA TANJUNG REJO KECAMATAN PERCUT SEI TUAN KABUPATEN DELI SERDANG." J-ABDI: Jurnal Pengabdian kepada Masyarakat 1, no. 9 (2022): 2157–62. http://dx.doi.org/10.53625/jabdi.v1i9.1252.

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Mangroves are typical plants found in coastal areas. Mangrove batik motifs as coastal plants have not been exposed optimally. Meanwhile, the coastal environment with its flora and fauna has tremendous potential as a batik motif. Aside from being a motif, mangrove plants can also be used as natural batik dyes and mangroves can be processed into food and beverage ingredients which are currently becoming a trend in the community. The use of mangroves as natural dyes, in addition to providing natural colors and beautiful motifs, can also reduce environmental pollution. The method of implementing t
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Rozprawy doktorskie na temat "Mangrove plants"

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Maxwell, Gordon Selwyn. "Ecogeographic studies of Avicennia marina (Forsk.) Vierh. and Kandelia candel (L.) Druce in Brunei, Hong Kong and Thailand /." [Hong Kong : University of Hong Kong], 1993. http://sunzi.lib.hku.hk/hkuto/record.jsp?B13641256.

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Maxwell, Gordon Selwyn. "Ecogeographic studies of Avicennia marina (Forsk.) Vierh. and Kandeliacandel (L.) Druce in Brunei, Hong Kong and Thailand." Thesis, The University of Hong Kong (Pokfulam, Hong Kong), 1993. http://hub.hku.hk/bib/B31233831.

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Tong, Yee-fun Pauline. "Herbivory on the mangrove Kandelia candel (L.) druce in Hong Kong /." Hong Kong : University of Hong Kong, 1998. http://sunzi.lib.hku.hk/hkuto/record.jsp?B20668211.

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Soliman, Nabil Zaki Gadalla. "Nutrient dynamics at Matapouri Estuary, Northern New Zealand thesis submitted in (partial) fulfilment of the degree of Master of Applied Science, Auckland University of Technology, June 2004." Full thesis. Abstract, 2004.

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Hoppe-Speer, Sabine Clara Lisa. "The response of the red mangrove rhizophora mucronata lam, to changes in salinity, inundation and light : predictions for future climate change." Thesis, Nelson Mandela Metropolitan University, 2009. http://hdl.handle.net/10948/1249.

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Mangrove forests are subjected to many environmental factors which influence species distribution, zonation patterns as well as succession. Important driving factors in these forests are salinity, water level fluctuations and available light. This study investigated the response of red mangrove (Rhizophora mucronata Lam.) seedlings to these factors in controlled laboratory experiments. Increase in salinity and prolonged inundation within estuaries are predicted impacts resulting from sea level rise due to climate change. The study investigated the effect of five salinity treatments (0, 8, 18,
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Ge, Xuejun. "Reproductive biology and conservation genetics of mangroves in South China and Hong Kong /." Hong Kong : University of Hong Kong, 2001. http://sunzi.lib.hku.hk:8888/cgi-bin/hkuto%5Ftoc%5Fpdf?B22718734.

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Lee, Hoi-ki. "The feeding ecology of Littoraria species in Hong Kong mangroves /." Hong Kong : University of Hong Kong, 2001. http://sunzi.lib.hku.hk:8888/cgi-bin/hkuto%5Ftoc%5Fpdf?B22956293.

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Pribadi, Rudhi. "The ecology of mangrove vegetation in Bintuni Bay, Irian Jaya, Indonesia." Thesis, University of Stirling, 1998. http://hdl.handle.net/1893/3525.

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The ecology of mangrove forests on Potential Acid Sulphate soils at Bintuni Bay (132° 55' - 134° 02' E, and 2° 02' - 2° 97' S), Irian Jaya, Indonesia was studied. The annual rainfall is 3000mm and there is mixed semi-diurnal tide of 1-5.6m amplitude. The water has a varying salinity of 0-27%. Forest structure was studied in plots of 10m x 10m along three transects across Sikoroti Island and in three 50m x 50m plots in mixed Rhizophora - Bruguiera forest. All trees > 10cm trunk diameter were enumerated, measured and identified. Of the nine tree species, Rhizophora apiculata was the most dominan
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Ashton, Elizabeth C. "Biodiversity and community ecology of mangrove plants : molluscs and crustaceans in two mangrove forests in Peninsular Malaysia in relation to local management practices." Thesis, University of York, 1999. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.301686.

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羅毓瑩 and Yuk-ying Eugenia Lo. "Phylogenetic relationships and natural hybridization in the mangrove genus rhizophora from the Indo-West Pacific Region." Thesis, The University of Hong Kong (Pokfulam, Hong Kong), 2003. http://hub.hku.hk/bib/B31227661.

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Książki na temat "Mangrove plants"

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Duke, Norman C. Australia's mangroves: The authoritative guide to Australia's mangrove plants. University of Queensland, 2006.

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Johnstone, R. E. Mangroves and mangrove birds of Western Australia. Western Australian Museum, 1990.

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Thanikaimoni, G. Mangrove palynology. UNDP/UNESCO Regional Project on Training and Research on Mangrove Ecosystems, RAS/79/002, 1987.

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Sujanapal, P. Handbook on mangroves and mangrove associates of Kerala. Kerala State Biodiversity Board, 2014.

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Zamora, P. M. Diversity of flora in the Philippine mangrove ecosystems. University of the Philippines, Center for Integrative and Development Studies in cooperation with Haribon Foundation, 1995.

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Fitrianto, Anggoro Cahyo. Ekosistem mangrove Kepulauan Togean: Togean Island mangrove ecosystem. Pusat Survei Sumberdaya Alam Laut, Bakosurtanal, 2009.

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Wim, Giesen, FAO Regional Office for Asia and the Pacific., and Wetlands International, eds. Mangrove guidebook for Southeast Asia. FAO Regional Office for Asia and the Pacific, Wetlands International, 2007.

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Vannucci, M. Os manguezais e nós: Uma síntese de percepções. 2nd ed. Edusp, 2003.

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Fernandes, Marcus E. B. Os manguezais da costa norte brasileira. Fundação Rio Bacanga, 2003.

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Dagar, J. C. Mangroves of Andaman and Nicobar Islands. Oxford & IBH Pub. Co., 1991.

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Części książek na temat "Mangrove plants"

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Miles, D. Howard, Armando A. de la Cruz, Ana M. Ly, et al. "Toxicants from Mangrove Plants." In ACS Symposium Series. American Chemical Society, 1987. http://dx.doi.org/10.1021/bk-1987-0330.ch044.

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Pattapulavar, Veilumuthu, R. Sathiyabama, Sharini Margabandu, Sanjivkumar Muthusamy, Gokulshankar Sabesan, and J. Godwin Christopher. "Mangrove Plants as Nanoparticle Biofactories: Advancing Green Synthesis and Functional Applications." In Mangrove Microbiome. Springer Nature Singapore, 2025. https://doi.org/10.1007/978-981-96-2602-1_23.

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Abdel-Aziz, Shadia M., Foukia E. Mouafi, Yomna A. Moustafa, and Nayera A. M. Abdelwahed. "Medicinal Importance of Mangrove Plants." In Microbes in Food and Health. Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-25277-3_5.

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Ambikapathy, V., S. Babu, A. Anbukumaran, A. S. Shijila Rani, and P. Prakash. "Isolation of Actinobacteria from Mangrove Plants." In Methods in Actinobacteriology. Springer US, 2022. http://dx.doi.org/10.1007/978-1-0716-1728-1_13.

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Huntley, Brian John. "The Mangrove Biome." In Ecology of Angola. Springer International Publishing, 2023. http://dx.doi.org/10.1007/978-3-031-18923-4_17.

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AbstractThe cold Benguela Current passing along Angola’s Atlantic Ocean coast accounts for its mangrove communities lying 20° latitude north of those of the Indian Ocean Coast of Africa, bathed by the warm Mozambique Current. This chapter draws on the limited literature available on Angola’s mangrove forests and seagrass meadows that constitute its Mangrove Biome. Comprising only five of the world’s 55 mangrove species, and two of the world’s 70 species of seagrasses, Angola’s mangrove communities cover a very limited area compared with other tropical countries. This is due to Angola’s steeply
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Mitra, Subrata, Abhra Chanda, Sourav Das, Tuhin Ghosh, and Sugata Hazra. "Salinity Dynamics in the Hooghly-Matla Estuarine System and Its Impact on the Mangrove Plants of Indian Sundarbans." In Sundarbans Mangrove Systems. CRC Press, 2021. http://dx.doi.org/10.1201/9781003083573-15.

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Md Isa, Nurun Nadhirah, and Mohd Nazip Suratman. "Structure and Diversity of Plants in Mangrove Ecosystems." In Mangroves: Ecology, Biodiversity and Management. Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-2494-0_15.

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Banerjee, L. K. "Influence of salinity on mangrove zonation." In Towards the rational use of high salinity tolerant plants. Springer Netherlands, 1993. http://dx.doi.org/10.1007/978-94-011-1858-3_19.

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Kerry, Rout George, Pratima Pradhan, Gitishree Das, Sushanto Gouda, Mallappa Kumara Swamy, and Jayanta Kumar Patra. "Anticancer Potential of Mangrove Plants: Neglected Plant Species of the Marine Ecosystem." In Anticancer plants: Properties and Application. Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-10-8548-2_13.

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Wong, Y. S., C. Y. Lan, G. Z. Chen, et al. "Effect of wastewater discharge on nutrient contamination of mangrove soils and plants." In Asia-Pacific Symposium on Mangrove Ecosystems. Springer Netherlands, 1995. http://dx.doi.org/10.1007/978-94-011-0289-6_28.

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Streszczenia konferencji na temat "Mangrove plants"

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Poolatt, Ajaydas, K. Arun Prasad, and L. Gnanappazham. "Hyperspectral Classification Of Invasive Alien Plants (IAPS) From Co-Occurring Mangroves Using Ensemble Learning Model." In 2024 IEEE India Geoscience and Remote Sensing Symposium (InGARSS). IEEE, 2024. https://doi.org/10.1109/ingarss61818.2024.10984152.

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Sutawane, Shrikrishna, and Saurav Mitra. "Remote Monitoring and Change Detection in Mangrove Growth in Nearby Area Around JSW Ratnagiri Thermal Power Plant." In 2025 International Conference on Knowledge Engineering and Communication Systems (ICKECS). IEEE, 2025. https://doi.org/10.1109/ickecs65700.2025.11035475.

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Isaifan, Dina Jamal, and Yousra Suleiman. "Quantifying Biomass of Microphytobenthos in sediments of Mangroves in the east coast of Qatar." In Qatar University Annual Research Forum & Exhibition. Qatar University Press, 2021. http://dx.doi.org/10.29117/quarfe.2021.0061.

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Mangroves, Avicennia marina, are highly productive coastal ecosystems with capacity to store carbon within plants and in sediments. Micropytobenthos (MPB) in the sediments also fix carbon and play a significant role in carbon burial. However, there is paucity of information on the role of MPB in coastal carbon budget. We quantified the biomass of MPB as an important carbon pool in the mangrove of Al Thakhira, located at the east coast of Qatar. Sediments at different tidal levels namely, supratidal, intertidal, and subtidal were collected and analyzed for grain size, chlorophyll (a), total car
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Alhazzaa, Mohammed S., Ioannis Georgiou, and Hashem H. Ghanem. "Excellence Journey Towards Environmental Stewardship Through Circular and Sustainable Decarbonization, Ecosystem and Biodiversity Initiatives." In ADIPEC. SPE, 2023. http://dx.doi.org/10.2118/216385-ms.

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Abstract This paper presents circular environmental initiatives at Abu Ali Island, Eastern Province, Saudi Arabia that led to sustainable and systematic decarbonization, ecosystem, and biodiversity programs. The prosperous ecological system in the Island makes it an excellent hub for wildlife, marine, and birds. The organization environmental initiative programs are: Contribute a net zero-carbon emission by reducing and offsetting greenhouse gas emissions.Support Saudi green initiative through mangrove plantation in the Island.Adapt carbon circular economy (CCE) approaches to turning wasted ma
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Adriyanti, Dwi Tyaningsih, Aswati Mindaryani, Agus Prasetya, et al. "Development of Small-Scale Charcoal Briquettes and Natural Dyes Production Units to Implement Zero-Waste System through Utilizing Mangrove Forests." In 3rd International Conference on Community Engagement and Education for Sustainable Development. AIJR Publisher, 2023. http://dx.doi.org/10.21467/proceedings.151.18.

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Through the participation of local communities in the preservation of mangrove forest ecosystems, an attempt is being made to prevent further damage to the mangrove environment and recover from any damage already caused. The mangrove forests along the shore of Kampung Laut, most notably those located in the Ujung Alang Village, are kept in pristine form because of the numerous and varied types of mangrove plantation activities that are carried out there. The local people are currently utilizing mangrove plants as a source of food (certain parts of the plant) and building materials (the stems).
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Basyuni, Mohammad, Ridha Wati, Astrid Nur Prabuanisa, et al. "Changes to the polyisoprenoid composition in aging leaves of mangrove plants." In THE 8TH ANNUAL BASIC SCIENCE INTERNATIONAL CONFERENCE: Coverage of Basic Sciences toward the World’s Sustainability Challanges. Author(s), 2018. http://dx.doi.org/10.1063/1.5062731.

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Budianto, Budianto, Edi Azwar, Pandu Prabowo, and Abdurrozzaq Hasibuan. "Analysis Diversity of Mangrove Plants and Brachyura (Uca Crab) at Yagasu Belawan Forest." In Proceedings of The 2nd International Conference On Advance And Scientific Innovation, ICASI 2019, 18 July, Banda Aceh, Indonesia. EAI, 2019. http://dx.doi.org/10.4108/eai.18-7-2019.2288584.

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Ratnani, Rita Dwi, Ahmad Muhyi, Agus Ismanto, and Forita Dyah Arianti. "Exploring the potential compounds in mangrove plants with aphrodisiac effects for herbal therapy." In PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON INFORMATICS, MECHANICAL, INDUSTRIAL, AND CHEMICAL ENGINEERING (ICIMICE2023). AIP Publishing, 2025. https://doi.org/10.1063/5.0240892.

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Ceccopieri, M., R. Carreira, A. Scofield, et al. "CARBON ISOTOPIC COMPOSITION OF LEAF WAX n-ALKANES OF MANGROVE PLANTS DISTRIBUTED ALONG A LATITUDINAL GRADIENT IN BRAZIL." In 30th International Meeting on Organic Geochemistry (IMOG 2021). European Association of Geoscientists & Engineers, 2021. http://dx.doi.org/10.3997/2214-4609.202134252.

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Soraya, R. K., N. D. Takarina, and T. Soedjiarti. "Metals accumulation (Cu, Zn and Pb) in mangrove-associated plants from Blanakan Brackish Water Pond, Subang District, West Java." In PROCEEDINGS OF THE 4TH INTERNATIONAL SYMPOSIUM ON CURRENT PROGRESS IN MATHEMATICS AND SCIENCES (ISCPMS2018). AIP Publishing, 2019. http://dx.doi.org/10.1063/1.5132513.

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Raporty organizacyjne na temat "Mangrove plants"

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Raikow, David, Jacob Gross, Amanda McCutcheon, and Anne Farahi. Trends in water quality and assessment of vegetation community structure in association with declining mangroves: A condition assessment of American Memorial Park. National Park Service, 2023. http://dx.doi.org/10.36967/2301598.

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American Memorial Park (AMME) in Saipan contains a rare mangrove wetland that is known to support several endangered species. Through monitoring water quality and vegetation characteristics of the wetland for >10 years we documented a declining mangrove population, an increase in invasive plant species, and declining surface water salinity. Comprehensive surveys conducted in 2014 and 2019 quantified declines in the plant community observed by park staff. Surface water salinity declined from 2009 to 2018 and no other trend in surface water quality was observed. Over the time period of the pr
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Merk, Christine. Summary report on Workshop 1 laypersons’ perceptions of marine CDR, Deliverable 3.1. OceanNETs, 2021. http://dx.doi.org/10.3289/oceannets_d3.1.

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This deliverable reports about the successful completion of three group discussions on marine carbon dioxide removal (CDR) with laypersons in Germany. The 2-hour group discussions were held online. 5 participants discussed these three topics: (1) the environmental state of the oceans, (2) four selected marine CDR approaches, and (3) responsible research and innovation. The four approaches were ocean fertilization, ocean alkalinization via ocean liming and electrochemical weathering in desalination plants, artificial upwelling, and blue carbon management via kelp forests, mangroves and seagrass
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Veland, Siri. Summary report on Workshop 2 laypersons’ perceptions of marine CDR, Deliverable 3.2. OceanNETs, 2021. http://dx.doi.org/10.3289/oceannets_d3.2.

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This deliverable reports about the successful completion of three group discussions on marine carbon dioxide removal (CDR) with laypersons in Norway. The 2-hour group discussions were held online. In three groups, and a pilot group, between 2 and 7 participants discussed these three topics: (1) the environmental state of the oceans, (2) four selected marine CDR approaches, and (3) responsible research and innovation. The four approaches were ocean fertilization, ocean alkalinization via ocean liming and electrochemical weathering in desalination plants, artificial upwelling, and blue carbon ma
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Muxo, Robert, Kevin Whelan, Robert Muxo, and Kevin Whelan. Colonial nesting birds in Biscayne National Park: 2021?2022 nesting year summary. National Park Service, 2024. http://dx.doi.org/10.36967/2304740.

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The habitats within Biscayne National Park consist of rocky coast lines, Biscayne Bay (a shallow water bay), over 40 mangrove islands, and coral reefs. This ecosystem lies near the large metropolitan area of Miami, suburban development, a nuclear power plant, and has several canals that drain from the mainland into Biscayne National Park or close to park boundaries. As a result of the park?s proximity to a large population, it endures heavy usage. The park is a popular destination for anglers and boaters. All the aforementioned factors put stressors on the park ecosystem. The South Florida/Car
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Dixon, John A. Enhanced Cost Benefit Analysis of IDB Waste Water Treatment Projects with Special Consideration to Environmental Impacts: Lessons Learned from a Review of Four Projects. Inter-American Development Bank, 2012. http://dx.doi.org/10.18235/0006941.

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Development projects have a wider set of impacts than just direct project outputs. A hydropower dam, for example, produces electricity but also disrupts river flows and may affect biodiversity and the general aquatic environment. A new port development may affect coastal resources such as mangroves and coral reefs. Coal-fired power plants affect both the local and the global environments through emissions of ash and dust (affecting mostly the local environment) as well as greenhouse gases (affecting the global environment). Sewage and sanitation projects provide new services to consumers but a
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Ruiz, Pablo, Craig Perry, Alejando Garcia, et al. The Everglades National Park and Big Cypress National Preserve vegetation mapping project: Interim report—Northwest Coastal Everglades (Region 4), Everglades National Park (revised with costs). National Park Service, 2020. http://dx.doi.org/10.36967/nrr-2279586.

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The Everglades National Park and Big Cypress National Preserve vegetation mapping project is part of the Comprehensive Everglades Restoration Plan (CERP). It is a cooperative effort between the South Florida Water Management District (SFWMD), the United States Army Corps of Engineers (USACE), and the National Park Service’s (NPS) Vegetation Mapping Inventory Program (VMI). The goal of this project is to produce a spatially and thematically accurate vegetation map of Everglades National Park and Big Cypress National Preserve prior to the completion of restoration efforts associated with CERP. T
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Rapport Annuel 2023: Découvrez le pouvoir de l'action collective. Rights and Resources Initiative, 2024. http://dx.doi.org/10.53892/xltl2276.

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Cette année 2023 a été une période de renforcement des mouvements et de construction de relations avec les détenteurs de droits, les alliés et les donateurs qui sont à la base de la mission de RRI. Des sommets des Andes péruviennes aux plaines désertiques d’Afrique de l’Est en passant par les mangroves côtières d’Indonésie, notre coalition travaille d’arrache-pied pour créer les conditions propices à la reconnaissance des droits. En continuant à tirer parti de nos diverses forces, nous continuerons à catalyser de véritables changements pour l’amélioration de la planète et de ses habitants. Not
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Annual Report 2023: The Power of Collective Action. Rights and Resources Initiative, 2024. http://dx.doi.org/10.53892/hmol6945.

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The year 2023 was a year of strengthening movements and building relationships with the rightsholders, allies, and donors who underpin the Rights and Resources Initiative's mission. From the mountaintops of the Peruvian Andes to East Africa’s desert plains and the coastal mangroves of Indonesia, our coalition is hard at work creating the enabling conditions for the recognition of rights. By leveraging our diverse strengths, we are catalyzing real change for the betterment of the planet and its people. RRI's 2023 Annual Report is a snapshot of just some of the pivotal successes that continue to
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