Hu Jiajun, Tang Han, Wang Ya Zhu, Yang Chen, Gao Min-Tian, Tsang Yiu Fai, Li Jixiang
Shanghai Key Laboratory of Bio-Energy Crops, School of Life Sciences, Shanghai University, Shanghai 200444, China.
Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai 201210, China.
Environ Sci Process Impacts. 2022 Apr 21;24(4):598-608. doi: 10.1039/d2em00036a.
Dissolved solids released from biochar (DSRB), including organic and inorganic compounds, may affect the role of biochar as a soil amendment. In this study, the effects of DSRB on soil microbe metabolism, especially CO fixation, were evaluated in liquid soil extract. DSRB were found to be released in large amounts (289.05 mg L at 1 hour) from biochar over a short period of time before their rate of release slowed to a gradual pace. They increased the microbial biomass and provided energy and reducing power to microbes, while reducing their metabolic output of extracellular proteins and polysaccharides. DSRB inputs led to the redistribution of metabolic flux in soil microorganisms and an increased organic carbon content in the short term. This content gradually decreased as it was utilized. DSRB did not improve microbial CO fixation but, rather, enhanced its release, while promoting specific soil microorganism genera, including , , and . These heterotrophic genera may compete with autotrophic microorganisms for nutrients but have positive synergistic relationships with autotrophs during CO fixation. These results demonstrated that reducing the DSRB in biochar can improve its role as a soil amendment by enhancing soil carbon storage and CO fixation capabilities.
生物炭释放的溶解性固体(DSRB),包括有机和无机化合物,可能会影响生物炭作为土壤改良剂的作用。在本研究中,在液体土壤提取物中评估了DSRB对土壤微生物代谢,特别是对CO固定的影响。发现DSRB在短时间内从生物炭中大量释放(1小时时为289.05毫克/升),之后其释放速率减缓至逐渐稳定的水平。它们增加了微生物生物量,并为微生物提供能量和还原力,同时减少了它们细胞外蛋白质和多糖的代谢输出。DSRB的输入导致土壤微生物代谢通量的重新分配,并在短期内增加了有机碳含量。随着该含量被利用,其逐渐下降。DSRB并未改善微生物的CO固定,而是增强了其释放,同时促进了特定的土壤微生物属,包括 、 和 。这些异养属可能会与自养微生物争夺养分,但在CO固定过程中与自养生物具有积极的协同关系。这些结果表明,减少生物炭中的DSRB可以通过增强土壤碳储存和CO固定能力来改善其作为土壤改良剂的作用。