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Providing low-budget estimations of carbon sequestration and greenhouse gas emissions in agricultural wetlands

机译:提供低预算的农业湿地碳固存和温室气体排放估算

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摘要

The conversion of wetlands to agriculture through drainage and flooding, and the burning of wetland areas for agriculture have important implications for greenhouse gas (GHG) production and changing carbon stocks. However, the estimation of net GHG changes from mitigation practices in agricultural wetlands is complex compared to dryland crops. Agricultural wetlands have more complicated carbon and nitrogen cycles with both above- and below-ground processes and export of carbon via vertical and horizontal movement of water through the wetland. This letter reviews current research methodologies in estimating greenhouse gas production and provides guidance on the provision of robust estimates of carbon sequestration and greenhouse gas emissions in agricultural wetlands through the use of low cost reliable and sustainable measurement, modelling and remote sensing applications. The guidance is highly applicable to, and aimed at, wetlands such as those in the tropics and sub-tropics, where complex research infrastructure may not exist, or agricultural wetlands located in remote regions, where frequent visits by monitoring scientists prove difficult. In conclusion, the proposed measurement-modelling approach provides guidance on an affordable solution for mitigation and for investigating the consequences of wetland agricultural practice on GHG production, ecological resilience and possible changes to agricultural yields, variety choice and farming practice.ud
机译:通过排水和洪水将湿地转变为农业,以及燃烧湿地以供农业使用,对温室气体的生产和碳储量的变化具有重要意义。但是,与旱地作物相比,通过农业湿地减缓作法估算的净温室气体变化是复杂的。农业湿地在地上和地下过程中都有更复杂的碳和氮循环,并通过水在湿地中的垂直和水平运动来输出碳。这封信回顾了当前估算温室气体产量的研究方法,并就通过使用低成本可靠且可持续的测量,建模和遥感应用提供有关农业湿地中碳固存和温室气体排放的可靠估算提供了指导。该指南非常适用于并针对以下地区,例如热带地区和亚热带地区的湿地,这些地区可能不存在复杂的研究基础设施,或者位于偏远地区的农业湿地,监测科学家很难经常访问这些湿地。总之,拟议的测量模型方法为减轻负担的可负担解决方案以及调查湿地农业实践对温室气体生产,生态适应力以及农业产量,品种选择和耕作方式可能发生的变化的后果提供了指导。

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