File:Agriculture - sanitation circular economy.jpg

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English: The widespread adoption of an agricultural circular economy requires the recovery of resources such as water, organic matter, and nutrients from livestock manure and sanitation. While this approach offers many benefits, we argue this is not without potential risks to human and environmental health that largely stem from the presence of contaminants in the recycled resources (e.g., pharmaceuticals, pathogens). We discuss context specific challenges and solutions across the three themes: (1) contaminant monitoring; (2) collection transport and treatment; and (3) regulation and policy. We advocate for the redesign of sanitary and agricultural management practices to enable safe resource reuse in a proportionate and effective way. In populous urban regions with access to sanitation provision, processes can be optimized using emergent technologies to maximize removal of contaminant from excreta prior to reuse. Comparatively, in regions with limited existing capacity for conveyance of excreta to centralized treatment facilities, we suggest efforts should focus on creation of collection facilities (e.g., pit latrines) and decentralized treatment options such as composting systems. Overall, circular economy approaches to sanitation and resource management offer a potential solution to a pressing challenge; however, to ensure this is done in a safe manner, contaminant risks must be mitigated.
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Source https://doi.org/10.1021/acsestwater.3c00803
Author Laura J. Carter*, Sarah Dennis, Katie Allen, Patrick McKenna, Xiaohui Chen, Tim J. Daniell, Barbara Evans, Jeremy S. Guest, Hongyan Guo, Stuart Kirk, Yong-Guan Zhu, Asif Reza Anik, Naqshe Zuhra, and Steven A. Banwart

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current17:30, 27 February 2024Thumbnail for version as of 17:30, 27 February 2024575 × 558 (91 KB)OAnick (talk | contribs)Uploaded a work by Laura J. Carter*, Sarah Dennis, Katie Allen, Patrick McKenna, Xiaohui Chen, Tim J. Daniell, Barbara Evans, Jeremy S. Guest, Hongyan Guo, Stuart Kirk, Yong-Guan Zhu, Asif Reza Anik, Naqshe Zuhra, and Steven A. Banwart from https://doi.org/10.1021/acsestwater.3c00803 with UploadWizard

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