Gotowa bibliografia na temat „Aichi Target 19”

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Artykuły w czasopismach na temat "Aichi Target 19"

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Despot-Belmonte, Katherine, Michel Doudin, Quentin Groom, et al. "EU BON's contributions towards meeting Aichi Biodiversity Target 19." Research Ideas and Outcomes 3 (June 8, 2017): e14013. https://doi.org/10.3897/rio.3.e14013.

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The EU BON ("Building the European Biodiversity Observation Network") project has made important contributions towards the achievement of global conservation targets. This infographic illustrates EU BON's contributions towards the achievement of Aichi Biodiversity Target 19 "<i>By 2020, knowledge, the science base and technologies relating to biodiversity, its values, functioning, status and trends, and the consequences of its loss, are improved, widely shared and transferred, and applied.</i>"
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Despot-Belmonte, Katherine, Michel Doudin, Quentin Groom, et al. "EU BON’s contributions towards meeting Aichi Biodiversity Target 19." Research Ideas and Outcomes 3 (June 8, 2017): e14013. http://dx.doi.org/10.3897/rio.3.e14013.

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Saeedi, Hanieh, James Davis Reimer, Miriam I. Brandt, et al. "Global marine biodiversity in the context of achieving the Aichi Targets: ways forward and addressing data gaps." PeerJ 7 (October 29, 2019): e7221. http://dx.doi.org/10.7717/peerj.7221.

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In 2010, the Conference of the Parties of the Convention on Biological Diversity agreed on the Strategic Plan for Biodiversity 2011–2020 in Aichi Prefecture, Japan. As this plan approaches its end, we discussed whether marine biodiversity and prediction studies were nearing the Aichi Targets during the 4th World Conference on Marine Biodiversity held in Montreal, Canada in June 2018. This article summarises the outcome of a five-day group discussion on how global marine biodiversity studies should be focused further to better understand the patterns of biodiversity. We discussed and reviewed s
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Carr, Hannah, Marina Abas, Loubna Boutahar, et al. "The Aichi Biodiversity Targets: achievements for marine conservation and priorities beyond 2020." PeerJ 8 (December 21, 2020): e9743. http://dx.doi.org/10.7717/peerj.9743.

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In 2010 the Conference of the Parties (COP) for the Convention on Biological Diversity revised and updated a Strategic Plan for Biodiversity 2011–2020, which included the Aichi Biodiversity Targets. Here a group of early career researchers mentored by senior scientists, convened as part of the 4th World Conference on Marine Biodiversity, reflects on the accomplishments and shortfalls under four of the Aichi Targets considered highly relevant to marine conservation: target 6 (sustainable fisheries), 11 (protection measures), 15 (ecosystem restoration and resilience) and 19 (knowledge, science a
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Cunningham, Caitlin, and Karen Beazley. "Changes in Human Population Density and Protected Areas in Terrestrial Global Biodiversity Hotspots, 1995–2015." Land 7, no. 4 (2018): 136. http://dx.doi.org/10.3390/land7040136.

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Biodiversity hotspots are rich in endemic species and threatened by anthropogenic influences and, thus, considered priorities for conservation. In this study, conservation achievements in 36 global biodiversity hotspots (25 identified in 1988, 10 added in 2011, and one in 2016) were evaluated in relation to changes in human population density and protected area coverage between 1995 and 2015. Population densities were compared against 1995 global averages, and percentages of protected area coverage were compared against area-based targets outlined in Aichi target 11 of the Convention on Biolog
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Lemieux, Christopher J., Mark W. Groulx, Stephen Bocking, and Tom J. Beechey. "Evidence-based decision-making in Canada’s protected areas organizations: Implications for management effectiveness." FACETS 3, no. 1 (2018): 392–414. http://dx.doi.org/10.1139/facets-2017-0107.

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Aichi Biodiversity Target 19 calls on Parties to the United Nations Convention on Biological Diversity (CBD) to improve, share, transfer, and apply knowledge. In this study, we provide an initial assessment of the state of evidence-based decision-making in Canada’s protected areas organizations by examining (1) the value and use of various forms of evidence by managers and (2) the extent to which institutional conditions enable or inhibit the use of evidence in decision-making. Results revealed that although managers value and use many forms of evidence in their decision-making, information pr
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Abrahamse, T., M.G. Andrade-Correa, C. Arida, et al. "The Global Taxonomy Initiative in support of the post-2020 Global Biodiversity Framework." CBD Technical Seriies 96 (July 31, 2021): 103 pages. https://doi.org/10.5281/zenodo.5728812.

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<strong>Executive summary &ndash; key messages</strong> <strong>For Aichi Biodiversity Target 19 &ndash; &ldquo;By 2020, knowledge, the science base and technologies relating to biodiversity, its values, functioning, status and trends, and the consequences of its loss, are improved, widely shared and transferred, and applied&rdquo; &ndash; progress was achieved in terms of knowledge sharing through workshops and trainings.</strong> The Global Taxonomy Initiative (GTI) and the GTI community have advanced the sharing of taxonomic tools and knowledge for use by Parties (see section IV and annexes
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GIRARDELLO, MARCO, STEFANO MARTELLOS, ADARA PARDO, and SANDRO BERTOLINO. "Gaps in biodiversity occurrence information may hamper the achievement of international biodiversity targets: insights from a cross-taxon analysis." Environmental Conservation 45, no. 4 (2018): 370–77. http://dx.doi.org/10.1017/s0376892918000115.

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SUMMARYSpecies distribution data are critical information sources when it comes to implementing the multiple Aichi Targets set by the international Convention on Biological Diversity. Although there have been international-scale efforts to aggregate distribution data, the magnitudes and locations of the gaps in biodiversity knowledge remain unclear. In this study, we use a large database, including over 200 000 species occurrence records, to identify knowledge gaps in biodiversity inventories for nine animal taxa in a Mediterranean biodiversity hotspot. Spatial modelling methods were employed
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Dhandapani, Balasubramanian, Prabhakar Rajagopal, Vijay Barve, Pankaj Koparde, and Antonio Saraiva. "Global Biodiversity Knowledge Commons and Civil Society of the Global South." Biodiversity Information Science and Standards 3 (June 13, 2019): e37068. https://doi.org/10.3897/biss.3.37068.

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In our times of challenged relationships between nature and culture, it is essential that biodiversity conservation in biodiversity-rich areas of the world is ceded priority with recognised urgency. The Convention on Biological Diversity's (CBD) Aichi Target 19 states that "By 2020, knowledge, the science base and technologies relating to biodiversity, its values, functioning, status and trends, and the consequences of its loss, are improved, widely shared and transferred, and applied." One of the significant impediments mentioned in achieving the goals of CBD is lack of scientific information
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Kogler, Christoph. "Discrete Event Simulation-Based Risk Analysis for Efficient, Sustainable and Resilient Transportation." Soudní inženýrství 34, no. 1 (2023): 74–78. http://dx.doi.org/10.13164/si.2023.1.74.

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&#x0D; &#x0D; &#x0D; In a resource-constrained world the avoidance of transport-related emissions is crucial to fulfill the sustainable development goals, the Paris agreement on climate change and the Aichi biodiversity targets. Transport simulation enables the development of transport fleet strategies in risk scenarios to further improve efficientcy, sustainability and resilience of supply chains. Discrete event simulation is a valuable methodology for transport simulation, because it focuses on business processes for a digital representation of supply chains and provides an intuitive approac
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Części książek na temat "Aichi Target 19"

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Titumir, Rashed Al Mahmud, Tanjila Afrin, and Mohammad Saeed Islam. "Resilience and TRUs’ Contribution Towards SDGs and Aichi Biodiversity Targets." In Sustainable Development Goals Series. Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-3000-3_11.

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