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Multilevel investigation of the ecotoxicological effects of sewage sludge biochar on the earthworm Eisenia fetida

胎儿艾森氏菌 生物炭 蚯蚓 安德爱胜蚓 污水污泥 环境科学 生物固体 寡毛纲(植物) 环境化学 生态毒性 生态毒理学 污水 废物管理 环境工程 化学 生态学 生物 毒性 工程类 热解 有机化学
作者
Yanxiu Zhao,Xin Li,Guoren Xu,Jun Nan
出处
期刊:Chemosphere [Elsevier]
卷期号:360: 142455-142455 被引量:1
标识
DOI:10.1016/j.chemosphere.2024.142455
摘要

The ecological risks of sewage sludge biochar (SSB) after land use is still not truly reflected. Herein, the ecological risks of SSB prepared at different temperature were investigated using the earthworm E. fetida as a model organism from the perspectives of organismal, tissue, cellular, and molecular level. The findings revealed that the ecological risk associated with low-temperature SSB (SSB300) was more pronounced compared to medium- and high-temperature SSB (SSB500 and SSB700), and the ecological risk intensified with increasing SSB addition rates, as revealed by an increase in the integrated biomarker response v2 (IBRv2) value by 2.59-25.41 compared to those of SSB500 and SSB700. Among them, 10% SSB300 application caused significant oxidative stress and neurotoxicity in earthworms compared to CK (p<0.001). The weight growth rate and cocoon production rate of earthworms were observed to decrease by 25.06% and 69.29%, respectively, while the mortality rate exhibited a significant increase of 33.34% following a 10% SSB300 application, as compared to the CK. Moreover, 10% SSB300 application also resulted in extensive stratum corneum injury and significant longitudinal muscle damage in earthworms, while also inducing severe collapse of intestinal epithelial cells and disruption of intestinal integrity. In addition, 10% SSB300 caused abnormal expression of earthworm detoxification and cocoon production genes (p<0.001). These results may improve our understanding of the ecotoxicity of biochar, especially in the long term application, and contribute to providing the guidelines for applying biochar as a soil amendment.
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