Evaluating the Crucial Relationships between Soil Health and Climate Change

Khan Waqar Ahmad, Gang Wang
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Abstract

Content of paper emphasizes the significant influence of soil health on global warming and climate stability. Soil affects the Earth's carbon cycle by acting as a source and sink of greenhouse gases. Climate is considered important a factor in soil formation, but also soils also have an impact on the climate. Therefore, soils are affected by the current climate change as well, particularly because they may release excessive amounts of carbon dioxide (CO2) and other greenhouse gases (GHG) as a result of changing their usage or poor management or human wrong practices. The pressure that climate change places on soil ecosystems has a significant impact on agriculture, biodiversity, and ecosystem services. For effective climate mitigation and adaptation policies to be developed, it is essential to understand these relationships. Worthwhile that the greatest soil management practices for reducing climate change focus on increasing soil organic matter content and water retention. The enormous carbon and nitrogen (N) store that is soil. acting as a possible regulator of the CO2, N2O, and CH4—the three main greenhouse gases in the atmosphere. Because biota is the organic matter carrier to the soil, both in living organisms and through their decomposing remains, mature soils rich in life are frequently CO2 sinks. But heterotrophic organisms that live in soil are also OM net consumers, and they release CO2 into the atmosphere through respiration. The interactions between plants, soil organisms, and abiotic soil conditions are actually changing as a result of climate change, which has an impact on plant performance, plant diversity, and community structure. The loss of soil organic matter (OM) and its development to the atmosphere quickly became a significant effect of tillage and any other activity, agricultural or otherwise, that disturbs the natural soils since then. It is anticipated that the areas affected by salinization would increase due to climate change which affects the suitability of the soil agriculture or any other development purposes.The conclusion of the current study Carbon sequestration can reduced the green house gas emission.
评估土壤健康与气候变化之间的重要关系
论文内容强调土壤健康对全球变暖和气候稳定的重大影响。土壤作为温室气体的源和汇,影响着地球的碳循环。气候被认为是土壤形成的一个重要因素,但土壤也会对气候产生影响。因此,土壤也会受到当前气候变化的影响,特别是因为土壤可能会因为改变用途、管理不善或人类的错误做法而释放出过多的二氧化碳(CO2)和其他温室气体(GHG)。气候变化对土壤生态系统造成的压力会对农业、生物多样性和生态系统服务产生重大影响。要制定有效的气候减缓和适应政策,就必须了解这些关系。值得注意的是,减少气候变化最有效的土壤管理方法集中在增加土壤有机质含量和保水性上。土壤是巨大的碳和氮储存库,可能是大气中二氧化碳、一氧化二氮和甲烷这三种主要温室气体的调节器。由于生物群是土壤中有机物的载体,既包括活的生物体,也包括它们分解后的残骸,因此富含生物的成熟土壤往往是二氧化碳的吸收汇。但是,生活在土壤中的异养生物也是 OM 净消费者,它们通过呼吸作用将二氧化碳释放到大气中。由于气候变化,植物、土壤生物和非生物土壤条件之间的相互作用实际上正在发生变化,这对植物的表现、植物多样性和群落结构都有影响。此后,土壤有机质(OM)的流失及其向大气的发展迅速成为耕作和其他任何扰乱自然土壤的活动(农业或其他)的重要影响。预计受盐碱化影响的地区将因气候变化而增加,这将影响土壤的农业适用性或任何其他发展目的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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