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Effects of biochar and thermally treated biochar on Eisenia fetida survival, growth, lysosomal membrane stability and oxidative stress

机译:生物炭和热处理生物炭对艾西哥纤维生存,生长,溶酶体膜稳定性和氧化应激的影响

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摘要

Despite its known positive impacts when added to soil, the negative effects of biochar on earthworms are not fully understood. Here, we investigated the toxicity of nine biochars of three feedstock origins, animal (cow dung), plant (corncob) and microorganism (sewage sludge), produced at three pyrolysis temperatures (350 °C, 550 °C and 750 °C) on earthworms. Vermitoxicity was first assessed using acute toxicity test, neutral red retention time (NRRT) assay and oxidative stress response assay. Furthermore, we evaluated whether the thermal treatment of biochars could reduce their vermitoxicity using an acute toxicity assay. We found that, according to LC_(50) and earthworm weight loss, cow dung biochar was more toxic than corncob or sewage sludge biochar; thus, production feedstock is apparently important to biochar vermitoxicity. Furthermore, NRRTs indicated cow dung biochar disrupted lysosomal membrane stability in earthworm coelomocytes, providing further evidence for the toxicity of this biochar to earthworms. Disturbed antioxidant enzyme activities and elevated malondialdehyde content showed that earthworm suffer oxidative stress, also implying a potential vermitoxicity. However, thermal treatment of cow dung biochar substantially improved its LC_(50) and decreased earthworm weight loss, implying that the PAHs in this biochar might be damage factors and that heating could reduce the potential toxicity of biochar. Besides, NRRT assay was first used to evaluate the effects of biochar on earthworms and clear dose-effect relationships indicated that NRRT assay might be a useful tool for assessing the potential negative effects of biochar. Overall, given the different effects of various biochars, including toxicity, reported here, our findings will help improve understanding of biochar vermitoxicity mechanisms, serve to improve biochar ecological risk assessments and provide a reference for the proper application of biochar amendments.
机译:尽管当添加到土壤时具有已知的积极影响,但Biochar对蚯蚓的负面影响尚未完全理解。在这里,我们研究了三种原料起源,动物(牛粪),植物(玉米板)和微生物(污水污泥)的氮素毒性,在三种热解温度(350℃,550℃和750°C)上产生蚯蚓。首先使用急性毒性试验,中性红色保留时间(NRRT)测定和氧化应激反应测定评估蠕虫毒性。此外,我们评估了生物触体的热处理是否可以使用急性毒性测定来减少其蠕虫毒性。我们发现,根据LC_(50)和蚯蚓体重减轻,牛粪Biochar比玉米木或污水污泥Biochar更毒性;因此,生产原料对生物醌虫性显然是重要的。此外,NRRTS指示牛粪BioChar中断蚯蚓中蛋白细胞中的溶酶体膜稳定性,为该生物炭毒性提供了进一步的探讨了蚯蚓。令人不安的抗氧化酶活性和丙二醛含量升高显示,蚯蚓遭受氧化应激,也意味着潜在的虫毒性。然而,牛粪Biochar的热处理基本上改善了其LC_(50)并降低了蚯蚓体重减轻,这意味着这种生物炭中的PAHS可能是损伤因子,并且加热可以降低生物炭的潜在毒性。此外,首先使用NRRT测定来评估生物炭对蚯蚓上的影响,并且透明剂量效应关系表明NRRT测定可能是评估生物炭潜在负面影响的有用工具。总体而言,鉴于各种生物炸素的不同效果,包括毒性,在此报告,我们的调查结果将有助于提高对生物炭虫害机制的理解,有助于改善生物炭生态风险评估,并为正确应用生物炭修正案提供参考。

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  • 来源
    《Science of the total environment》 |2021年第20期|144778.1-144778.9|共9页
  • 作者单位

    College of Environmental and Resource Sciences Shanxi University Taiyuan 030006 PR China Shaanxi Key Laboratory of Land Consolidation School of Earth Science and Resources Chang'an University Xi'an 710064 PR China;

    College of Environmental and Resource Sciences Shanxi University Taiyuan 030006 PR China;

    College of Environmental and Resource Sciences Shanxi University Taiyuan 030006 PR China;

    College of Environmental and Resource Sciences Shanxi University Taiyuan 030006 PR China;

    Shaanxi Key Laboratory of Land Consolidation School of Earth Science and Resources Chang'an University Xi'an 710064 PR China;

    College of Environmental and Resource Sciences Shanxi University Taiyuan 030006 PR China Shaanxi Key Laboratory of Land Consolidation School of Earth Science and Resources Chang'an University Xi'an 710064 PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Acute toxicity test; Neutral red retention time; Growth inhibition rate; Superoxide dismutase; Earthworm biomarker;

    机译:急性毒性测试;中性红色保留时间;生长抑制率;超氧化物歧化酶;蚯蚓生物标志物;

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