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Biogeochemical silicon cycle and carbon sequestration in agricultural ecosystems

机译:农业生态系统中的生物地球化学硅循环和碳固存

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摘要

Global agricultural ecosystems, the largest biospheric sources of atmospheric carbon dioxide (CO2), may turn into considerable net carbon (C) sinks through adopting management strategies advised by research. As C sequestration is usually coupled with the silicon (Si) cycle, strategic manipulation of the biogeochemical Si cycle in agricultural ecosystems offers a not yet fully explored possibility to enhance C sequestration. This review summarizes current knowledge of C sequestration coupled with the Si cycle and its management in agricultural ecosystems. Carbon sequestration is coupled with the Si cycle through many processes including dynamics of phytoliths and aggregates, and silicate weathering at different temporal and spatial scales. Cultivation of deep rooting crops, erosion mitigation with buffer strips, fertilization of Si-rich materials are some of the potential management strategies to increase both crop production and C sequestration coupled with the Si cycle. Further questions such as identifying the controlling factors of bioavailable Si pools and C sequestration, and quantifying the cost-efficiency of different management strategies to manipulate the Si cycle with the aim to enhance C sequestration should be investigated. (C) 2014 Elsevier B.V. All rights reserved.
机译:全球农业生态系统是大气中二氧化碳(CO2)的最大生物圈来源,通过采用研究建议的管理策略,可能会转化为可观的净碳(C)汇。由于碳固存通常与硅(Si)循环耦合,因此在农业生态系统中对生物地球化学硅循环的策略性操纵提供了增强C固存的尚未充分探索的可能性。这篇综述总结了当前对固碳,硅循环及其在农业生态系统中的管理的认识。碳固存通过许多过程与硅循环耦合,包括硅藻石和聚集体的动力学,以及不同时空尺度的硅酸盐风化。深植农作物的栽培,缓冲带缓解侵蚀,富硅材料的施肥是增加作物产量和固碳与硅循环的潜在管理策略。应该研究更多的问题,例如确定生物可利用的硅库和碳固存的控制因素,以及量化各种旨在提高碳固存的硅循环的管理策略的成本效益。 (C)2014 Elsevier B.V.保留所有权利。

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