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Effects of compost, biochar and manure on carbon mineralization of biogas residues applied to soil

机译:堆肥,生物炭和肥料对施于土壤的沼气残渣碳矿化的影响

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摘要

Biogas residues contain microbial biomass, which contributes to the formation of soil organic matter. Whether the potential of biogas residues to increase soil organic matter can be enhanced by co-application with compost, biochar or manure is unknown, however. The aim of this paper is to evaluate the effects of co-amendment on the mineralization of biogas residues, carbon dioxide emissions and the carbon flow within the microbial food web. We determined the fate of C-13-labelled microbial biomass present in biogas residues applied together with compost, biochar and manure to soil, by analysing CO2 and biomarker phospholipid fatty acids. Although the rate of mineralization constant of the slowly degrading carbon pool was not affected by co-amendments, co-amendment with manure resulted in a larger rate of mineralization constant of the readily degrading carbon pool of biogas residues. The incorporation of carbon was mainly to Gram-negative biomass and was the smallest with manure co-amendment, which indicated differences in bioavailability of the carbon source.
机译:沼气残留物中含有微生物生物量,这有助于形成土壤有机质。但是,与堆肥,生物炭或粪肥共同施用能否提高沼气残余物增加土壤有机质的潜力尚不清楚。本文的目的是评估共同修正对微生物残渣矿化,二氧化碳排放量和微生物食物网中碳流量的影响。通过分析二氧化碳和生物标志物磷脂脂肪酸,我们确定了与堆肥,生物炭和粪肥一起施用到土壤中的沼气残渣中存在的C-13标记微生物生物量的去向。尽管缓慢降解的碳库的矿化常数速率不受共同修正的影响,但与粪肥的共同修正导致易于降解的沼气残渣碳库的矿化常数速率更高。碳的掺入主要是革兰氏阴性生物量,并且随着粪便的共同修正而最小,这表明碳源的生物利用度存在差异。

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