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Design and Construction of an Experimental Setup to Enhance Mineral Weathering through the Activity of Soil Organisms
Published on: November 10, 2023
Straw return and organic fertilization promote soil organic carbon sequestration through microbes
Yu Yu1, Xueqing Deng1, Fuwei Wang1,2
1College of Resource and Environment, Anhui Science and Technology University, Fengyang, China.
Abstract:
Soil organic carbon (C) is a critical component of terrestrial ecosystem C pools, playing a vital role in maintaining soil fertility, supporting sustainable agricultural development, and mitigating global climate change. Therefore, a comprehensive understanding of the pathways and effects of straw return and organic fertilizer application on soil C sequestration is essential. Straw return introduces exogenous C inputs that stimulate microbial activity and promote the formation of stable organic C fractions, although its decomposition is initially constrained by nitrogen (N) limitation. In contrast, organic fertilizer provides readily available stable C sources and essential nutrients, thereby enhancing soil aggregation and C stabilization. The combined application of straw return and organic fertilizer produces significant synergistic effects on soil C sequestration. Organic fertilizer alleviates microbial N deficiency caused by the high C to N ratio (C/N) of straw, facilitating more efficient straw decomposition and nutrient release. Simultaneously, it improves the functional structure of soil microbial communities, promoting the formation of mineral-associated organic C and strengthening aggregate-protected C pools. This integrated management strategy enhances short-term nutrient cycling while contributing to long-term C sequestration, offering substantial potential for advancing sustainable agriculture and climate change mitigation. This review aims to provide a theoretical basis for addressing the microbial mechanisms underlying the synergistic effect of straw returning to the soil and organic fertilizer application.
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