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Processes regulating nitric oxide emissions from soils (Review)

机译:调节土壤中一氧化氮排放量的方法(综述)

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摘要

Nitric oxide (NO) is a reactive gas that plays an important role in atmospheric chemistry by influencing the production and destruction of ozone and thereby the oxidizing capacity of the atmosphere. NO also contributes by its oxidation products to the formation of acid rain. The major sources of NO in the atmosphere are anthropogenic emissions (from combustion of fossil fuels) and biogenic emission from soils. NO is both produced and consumed in soils as a result of biotic and abiotic processes. The main processes involved are microbial nitrification and denitrification, and chemodenitrification. Thus, the net result is complex and dependent on several factors such as nitrogen availability, organic matter content, oxygen status, soil moisture, pH and temperature. This paper reviews recent knowledge on processes forming NOin soils and the factors controlling its emission to the atmosphere. Schemes for simulating these processes are described, and the results are discussed with the purpose of scaling up to global emission.
机译:一氧化氮(NO)是一种反应性气体,通过影响臭氧的产生和破坏并进而影响大气的氧化能力,在大气化学中发挥重要作用。 NO的氧化产物也有助于酸雨的形成。大气中NO的主要来源是人为排放(来自化石燃料的燃烧)和土壤的生物排放。由于生物和非生物过程,在土壤中既产生又消耗NO。涉及的主要过程是微生物硝化和反硝化以及化学反硝化。因此,最终结果是复杂的,并且取决于几个因素,例如氮的有效性,有机物含量,氧气状态,土壤湿度,pH和温度。本文回顾了有关在土壤中形成NO的过程以及控制其向大气排放的因素的最新知识。描述了模拟这些过程的方案,并讨论了结果,目的是扩大到全球排放量。

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