Cheng Hongguang, Xing Dan, Lin Shan, Deng Zhaoxia, Wang Xi, Ning Wenjing, Hill Paul W, Chadwick David R, Jones Davey L
State Key Laboratory of Environmental Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang, China.
School of Natural Science, Bangor University, Bangor, United Kingdom.
Front Microbiol. 2022 Jul 1;13:901658. doi: 10.3389/fmicb.2022.901658. eCollection 2022.
Currently, modified biochar has been successfully used in the remediation of soil polluted with heavy metals. However, the effects of the modified biochar on pesticides (such as simazine) are still unclear. Herein, the environmental fate of simazine, such as decomposition, leaching, and adsorption in unamended soil, in the soil amended with unmodified and modified biochar (biochar + FeCl, biochar + FeOS, biochar + Fe) were evaluated. In addition, an incubation experiment was also performed to observe the influence of modified biochar on the microbial community and diversity in the soil. The results showed that modified biochar significantly decreased the decomposition of simazine in the soil compared to its counterpart. Modified biochar also reduced the concentration of simazine in the leachate. Compared with the control, soil microbial biomass in the soil amended with unmodified biochar, biochar + FeCl, biochar + Fe, and biochar + FeOS was decreased by 5.3%, 18.8%, 8.7%, and 18.1%, respectively. Furthermore, modified biochar changed the structure of the microbial community. This shows that modified biochar could increase the soil adsorption capacity for simazine and change the amount and microbial community that regulates the fate of simazine in the soil. This study concludes that iron-modified biochar has positive and negative effects on the soil. Therefore, its advantages and side effects should be considered before applying it to the soil.
目前,改性生物炭已成功用于修复重金属污染土壤。然而,改性生物炭对农药(如西玛津)的影响仍不清楚。在此,评估了西玛津在未改良土壤、未改性生物炭和改性生物炭(生物炭+FeCl、生物炭+FeOS、生物炭+Fe)改良土壤中的分解、淋溶和吸附等环境行为。此外,还进行了一项培养实验,以观察改性生物炭对土壤微生物群落和多样性的影响。结果表明,与未改性生物炭相比,改性生物炭显著降低了土壤中西玛津的分解。改性生物炭还降低了渗滤液中西玛津的浓度。与对照相比,未改性生物炭、生物炭+FeCl、生物炭+Fe和生物炭+FeOS改良土壤中的土壤微生物生物量分别降低了5.3%、18.8%、8.7%和18.1%。此外,改性生物炭改变了微生物群落结构。这表明改性生物炭可以提高土壤对西玛津的吸附能力,并改变调节土壤中西玛津环境行为的数量和微生物群落。本研究得出结论,铁改性生物炭对土壤有正负两方面影响。因此,在将其应用于土壤之前,应考虑其优点和副作用。