Sectors in which Priority Adaptation Projects should be implemented first include:
- 1) Agriculture, Early Warning Systems and Forest (First Priority Level Sectors). This is followed by:
- 2) Public Health and Water Resources (Second Priority Level Sectors);
- 3) Coastal Zone (Thir...d Priority Level Sector); and
- 4) Energy and Industry, and Biodiversity (Fourth Priority Level Sectors).
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In recognition of the growing problem of antimicrobial resistance (AMR), its increasing threat to human, animal and plant health, and the need for a One Health approach to address this issue, the 39th Session of the Codex Alimentarius Commission (CAC) agreed it was important for the food safety comm...unity to play its part and re-established the ad hoc Codex Intergovernmental Task Force on Antimicrobial Resistance (TFAMR) ). The objectives of the Task Force were
to revise the current Codex Code of Practice to Minimise and Contain Antimicrobial Resistance and to develop new guidance on surveillance programmes relevant to foodborne AMR.
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There is no question that over the last thirty years environmentaldegradation and the ecological crisis have become in our day and age apredominant sign of the times. In response to this worrisome develop-ment official documents of the Roman Catholic Church, at various lev-els, have sought to addres...s the growing ecological concern from theperspective of Catholic social teaching. Consequently references to ecol-ogy and environmental issues have surfaced in papal encyclicals duringthe last fifteen years generating national and regional responses. In theUnited States, for example, the U.S. Conference of Catholic Bishops hasissued two pastoral statements on environmental issues in 1991 and2001. Significantly, the Catholic Bishops of the Pacific Northwest, rep-resenting Canada and the U.S. have also issued a unique internationalletter focused on a particular ecological region—the Columbia RiverWatershed. What all of these efforts hold in common is the attempt toapply Catholic social teaching to a new and disturbing phenomenon inhuman experience. The result has been an expansion of Catholic socialthought. What was once the “social question” has now become the socialand “ecological question.” This development, the effort to address ecol-ogy and environmental issues as ethical problems, is the focus of thispaper. In particular this paper will link environmental and humanecology with the concept of sustainability, with the intention of propos-ing an interpretation of the common good and a definition of sustain-ability within Catholic social teaching.
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Phil. Trans. R. Soc. B (2010) 365, 2959–2971; doi:10.1098/rstb.2010.0143.
Agricultural ecosystems provide humans with food, forage, bioenergy and pharmaceuticals and are essential to human wellbeing. These systems rely on ecosystem services provided by natural ecosystems, including pollination, b...iological pest control, maintenance of soil structure and fertility, nutrient cycling and hydrological services. Preliminary assessments indicate that the value of these ecosystem services to agriculture is enormous and often underappreciated. Agroecosystems also produce a variety of ecosystem services, such as regulation of soil and water quality, carbon sequestration, support for biodiversity and cultural services. Depending on management practices, agriculture can also be the source of numerous disservices, including loss of wildlife habitat, nutrient runoff, sedimentation of waterways, greenhouse gas emissions, and pesticide poisoning of humans and non-target species. The tradeoffs that may occur between provisioning services and other ecosystem services and disservices should be evaluated in terms of spatial scale, temporal scale and reversibility. As more effective methods for valuing ecosystem services become available, the potential for ‘win–win’ scenarios increases. Under all scenarios, appropriate agricultural management practices are critical to realizing the benefits of ecosystem services and reducing disservices from agricultural activities.
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Hank introduces us to biogeochemical cycles by describing his two favorites: carbon and water. The hydrologic cycle describes how water moves on, above, and below the surface of the Earth, driven by energy supplied by the sun and wind. The carbon cycle does the same... for carbon!
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Table of Contents
1) Hydrologic Cycle - 1:15
A) Clouds - 2:13
B) Runoff - 3:06
C) Oceans - 3:41
D) Evapotranspiration - 4:25
2) Carbon Cycle - 5:12
A) Plants - 5:48
B) Fossil Fuels - 6:40
C) Oceans - 7:12
D) Global Warming - 7:35
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An IPCC Special Report on climate change, desertification,
land degradation, sustainable land management, food security,
and greenhouse gas fluxes in terrestrial ecosystems.
Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change
Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change
The Planetary Health Report Card is a student-driven, metric-based initiative to inspire planetary health and sustainable healthcare education engagement in medical schools. In addition to inspiring expansion of medical school curricula, we hope to inspire medical schools to expand research efforts,... engage with communities most affected by climate change and environmental injustice, support passionate medical students who are trying to organize around planetary health at the institutional level, and implement sustainable practices. A set of metrics in these five category areas allows students and faculty to conduct a needs assessment at their medical school.
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The Planetary Health Education Framework is a project of the Planetary Health Alliance (planetaryhealthalliance.org). The Planetary Health Alliance is a consortium of over 250 partners from around the world committed to understanding and addressing the human health impacts of global environmental ch...ange
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011 - Biogeochemical Cycles
In this video Paul Andersen explains how biogeochemical cycles move required nutrients through the abiotic and biotic spheres on our planet. Matter on the Earth is conserved so producers must receive required nutrients through the water cycle, carbon cycle, nitrogen c...ycle, phosphorus cycle, and sulfur cycle.
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One Earth Perspective. Cell Press
February 2020Earth's Future 8(2):e2019EF001377.The water planetary boundary attempts to provide a global limit to anthropogenic water cycle modifications, but it has been challenging to translate and apply it to the regional and local scales at which water problems and management typically occur. We... develop a cross‐scale approach by which the water planetary boundary could guide sustainable water management and governance at subglobal contexts defined by physical features (e.g., watershed or aquifer), political borders (e.g., city, nation, or group of nations), or commercial entities (e.g., corporation, trade group, or financial institution).
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Environment International Volume 146, January 2021, 106245.
We use soils to provide 98.8% of our food, but we must ensure that the pressure we place on soils to provide this food in the short-term does not inadvertently push the Earth into a less hospitable state in the long-term. Using the planeta...ry boundaries framework, we show that soils are a master variable for regulating critical Earth-system processes. Indeed, of the seven Earth-systems that have been quantified, soils play a critical and substantial role in changing the Earth-systems in at least two, either directly or indirectly, as well as smaller contributions for a further three.
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PNAS 2022 Vol. 119 No. 7 e2109217118
This chapter addresses the biogeochemical cycles of carbon dioxide. (CO2), methane (CH4) and nitrous oxide (N2O)
The longlist of knowledge gaps is based on existing research agendas published in 2015 or later and expert input from reviewers of the first draft of the longlist. It only includes knowledge gaps focussing on a better
understanding of the relationship between global environmental change and human h...ealth, and finding an answer to the question of how best to protect human health against these new threats.
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Forests, trees and green spaces, hereinafter ‘forests and trees’ for short, provide multiple goods and services that contribute to human health. These include medicines, nutritious foods and other non-wood forest products (NWFPs). Globally, at least 3.5 billion people use NWFPs, including medici...nal plants, which are particularly important for vulnerable groups and Indigenous Peoples and local communities (IPLCs).
During periods of crises, such as the COVID-19 pandemic, demand for forest products typically increases amongst these groups. Forests and trees also contribute to better health by playing a role in climate change
mitigation and adaptation, contributing to regulating the carbon cycle, but also moderating the micro-climate, filtering pollutants from the air and protecting settlements against the effects of extreme events such as droughts and flash floods.
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