生物炭
环境修复
微生物种群生物学
土壤有机质
环境化学
土壤肥力
土壤质量
环境科学
土壤污染物
化学
土壤污染
固碳
微生物
土壤健康
土壤水分
污染
生态学
土壤科学
生物
细菌
热解
有机化学
遗传学
二氧化碳
作者
Xiaomin Zhu,Baoliang Chen,Lizhong Zhu,Baoshan Xing
标识
DOI:10.1016/j.envpol.2017.04.032
摘要
Biochars have attracted tremendous attention due to their effects on soil improvement; they enhance carbon storage, soil fertility and quality, and contaminant (organic and heavy metal) immobilization and transformation. These effects could be achieved by modifying soil microbial habitats and (or) directly influencing microbial metabolisms, which together induce changes in microbial activity and microbial community structures. This review links microbial responses, including microbial activity, community structures and soil enzyme activities, with changes in soil properties caused by biochars. In particular, we summarized possible mechanisms that are involved in the effects that biochar-microbe interactions have on soil carbon sequestration and pollution remediation. Special attention has been paid to biochar effects on the formation and protection of soil aggregates, biochar adsorption of contaminants, biochar-mediated transformation of soil contaminants by microorganisms, and biochar-facilitated electron transfer between microbial cells and contaminants and soil organic matter. Certain reactive organic compounds and heavy metals in biochar may induce toxicity to soil microorganisms. Adsorption and hydrolysis of signaling molecules by biochar interrupts microbial interspecific communications, potentially altering soil microbial community structures. Further research is urged to verify the proposed mechanisms involved in biochar-microbiota interactions for soil remediation and improvement.
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