生物炭
土壤水分
化学
有机质
生物量(生态学)
烷烃
碳纤维
修正案
环境化学
土壤有机质
碳氢化合物
农学
热解
环境科学
土壤科学
有机化学
生物
材料科学
复合材料
法学
复合数
政治学
作者
Irena Atanassova,Milena Harizanova,Maya Benkova,Stefan H. Doerr
标识
DOI:10.2478/johh-2022-0025
摘要
Abstract Biochar is widely used as a soil amendment to improve soil properties and as a tool to absorb net carbon from the atmosphere. In this study we determined the signatures of organic molecular markers in soil following the incorporation of 5 and 10 t/ha biochar in a Fluvisol, cultivated with maize at the experimental field of the ISSAPP “N. Poushkarov” institute in Bulgaria. The n- alkane distribution in the biochar treated soils was uni- or bimodal maximizing at n-C17 alkane, n-C18 or C18 branched alkanes, i.e. there was an imprint of biomass burning, e.g. from the biochar due to predominance of short chain (< C20) homologues and increased microbial activity (presence of branched alkanes). This is also confirmed by the values for the average chain length (ACL) of n-alkanes which indicated prevalence of homologues of shorter chain (20–21 C atoms) in the variants of longer biochar residence time. There was evidence of trans-13-docosenamide, which originated from biochar. Fatty acids and fatty alcohols distributions also implicate microbial contribution to soil organic matter (SOM), supporting the suggestion that biochar addition can improve soil microbiological status.
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