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Chemical changes during composting of plant residues reduce their mineralisation in soil and cancel the priming effect

机译:在植物残留物堆肥过程中的化学变化会降低土壤中的矿化,取消引发效果

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摘要

Applying composts is useful for increasing soil carbon (C) stocks and improving agricultural productivity. In order to understand the effects of composts on soil organic matter (SOM) formation and mineralisation, C-13-labelled plant residues, previously composted or not, were incubated in an arable soil. The amount of C-13 was quantified in the CO2 evolved, the dissolved organic carbon (DOC) and in the microbial biomass (MB). Composting decreased (from 29 to 9%) the proportion of the plant residue labile pool and increased the residence time of both labile and more stable pools from 21 to 34 days and 1.5-5.5 years, respectively. At the beginning of the incubation, the amounts of C-13 in the DOC and MB were significantly higher when adding fresh residues than composted ones to the soil. A priming effect on SOM mineralisation (+ 21% over 3 years) was only observed for non-composted residues. These differences were attributed to changes in the chemical composition of plant materials during composting (less sugars and lipids, more lignin). In terms of C budget, the total loss of CO2 (including the composting process and the SOM priming by fresh residues) was comparable for both treatments after 600 days of incubation.
机译:应用堆肥对于增加土壤碳(C)股和提高农业生产力是有用的。为了了解堆肥对土壤有机物质(SOM)的影响和矿化,在耕地中孵育先前堆肥的C-13标记的植物残基。在CO 2中量化C-13的量化,溶解的有机碳(DOC)和微生物生物量(MB)中的量化量。堆肥减少(从29%到9%)植物残留稳定性池的比例,并增加了稳定性和更稳定的水池的停留时间,分别从21至34天和1.5-5.5岁。在孵育开始时,在向土壤中添加新鲜残留物时,DOC和MB中的C-13的量显着更高。对于非堆肥残留,才观察到对SOM矿化(+ 21%超过3年)的启动效果。这些差异归因于堆肥期间植物材料的化学成分的变化(少糖和脂质,更多木质素)。就C预算而言,二氧化碳的总损失(包括堆肥过程和新鲜残留物的SOM引发)对孵育600天后的治疗相当。

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