关于土壤固碳潜力和增加有机碳的全面综述

Pragya Pandey, V. J. Swaroopa, Kushal, Prem Lal Sahu, Bharti Parmar
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摘要

各种土壤管理技术可用于农田固碳。随着这些方法的广泛实施,可以封存大量的碳。为了从大气中清除碳并将其储存在土壤中,有各种管理技术。这些方法的效果因地区、土壤类型和气候而异。土壤固碳的寿命以及最大限度减少碳排放的理想环境仍是讨论的话题。本文探讨了土壤储存碳的过程、土壤碳研究的现状以及围绕土壤碳潜力的争议。文章强调了提高土壤碳含量的诸多益处,并为进一步研究提出了一系列建议。从传统耕作转为保护性耕作可能会固存大量的土壤有机碳(SOC),尽管这种变化只会对耕作方式产生长期影响。在将生物质碳转化为土壤有机碳方面,以豆科植物为基础的轮作比以草为基础的轮作更有效。轮牧可降低释放到大气中的二氧化碳总量,同时提高草的质量。生产生物炭并将其融入土壤是从大气中储存碳的另一种策略。
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A Comprehensive Review on Carbon Sequestration Potential and Addition of Organic Carbon to Soil
Various soil management techniques can be used to sequester carbon in agricultural fields. With widespread implementation, these methods could sequester a substantial amount of carbon. For the purpose of removing carbon from the atmosphere and storing it in the soil, various management techniques exist. The efficacy of these tactics varies depending on the region, soil type, and climate. The longevity of soil sequestration and the ideal circumstances for maximising the reduction of carbon emissions remain topics of discussion. This essay examines the process by which soil stores carbon, the current status of soil carbon research, and the controversy surrounding the potential of soil carbon. It emphasises the numerous side advantages of raising soil carbon and provides a set of suggestions for further investigation. A substantial amount of soil organic carbon (SOC) might be sequestered by switching from conventional to conservation tillage, although this change would only have a long-term impact on tillage practices. Crop rotation based on legumes is more effective than that based on grass in converting biomass carbon to soil organic carbon. Rotational grazing lowers the overall quantity of CO2 released into the atmosphere while improving the quality of the grass. Producing biochar and incorporating it into soil is an additional strategy for storing carbon from the atmosphere.
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