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首页> 外文期刊>Applied Soil Ecology >Microbial mineralization of biochar and wheat straw mixture in soil: a short-term study.
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Microbial mineralization of biochar and wheat straw mixture in soil: a short-term study.

机译:土壤中生物炭和小麦秸秆混合物的微生物矿化:一项短期研究。

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摘要

A short-term incubation study was carried out to investigate the effect of biochar addition to soil on CO2 emissions, microbial biomass, soil soluble carbon (C) nitrogen (N) and nitrate-nitrogen (NO3-N). Four soil treatments were investigated: soil only (control); soil+5% biochar; soil+0.5% wheat straw; soil+5% biochar+0.5% wheat straw. The biochar used was obtained from hardwood by pyrolysis at 500 degrees C. Periodic measurements of soil respiration, microbial biomass, soluble organic C, N and NO3-N were performed throughout the experiment (84 days). Only 2.8% of the added biochar C was respired, whereas 56% of the added wheat straw C was decomposed. Total net CO2 emitted by soil respiration suggested that wheat straw had no priming effect on biochar C decomposition. Moreover, wheat straw significantly increased microbial C and N and at the same time decreased soluble organic N. On the other hand, biochar did not influence microbial biomass nor soluble organic N. Thus it is possible to conclude that biochar was a very stable C source and could be an efficient, long-term strategy to sequester C in soils. Moreover, the addition of crop residues together with biochar could actively reduce the soil N leaching potential by means of N immobilization.
机译:进行了一项短期孵育研究,研究了向土壤中添加生物炭对CO 2 排放,微生物生物量,土壤可溶性碳(C)氮(N)和硝酸盐氮(NO < sub> 3 -N)。研究了四种土壤处理方法:仅土壤处理(对照);土壤处理。土壤+ 5%生物炭土壤+ 0.5%麦秸;土壤+ 5%生物炭+ 0.5%小麦秸秆。所使用的生物炭是在500摄氏度下通过热解从硬木中获得的。在整个实验过程中(84天),定期测量土壤呼吸,微生物生物量,可溶性有机碳,氮和NO 3 -N。仅吸收了2.8%的添加的生物炭C,而56%的小麦秸秆C被分解了。土壤呼吸释放的总净CO 2 表明小麦秸秆对生物碳的分解没有引发作用。此外,小麦秸秆显着增加了微生物碳和氮,同时降低了可溶性有机氮。另一方面,生物炭既不影响微生物生物量也不影响可溶性有机氮。因此,可以得出结论,生物炭是非常稳定的碳源并可能是一种有效的长期螯合土壤中C的策略。此外,将作物残渣与生物炭一起添加可通过固氮作用积极降低土壤中的氮淋失潜力。

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