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生物源硫化物在减轻氧化锌和铜纳米颗粒对产乙酸甲烷作用毒性中的作用。

Role of biogenic sulfide in attenuating zinc oxide and copper nanoparticle toxicity to acetoclastic methanogenesis.

机构信息

Department of Chemical and Environmental Engineering, University of Arizona, P.O. Box 210011, Tucson, AZ 85721, USA.

Department of Chemical and Environmental Engineering, University of Arizona, P.O. Box 210011, Tucson, AZ 85721, USA.

出版信息

J Hazard Mater. 2015;283:755-63. doi: 10.1016/j.jhazmat.2014.10.030. Epub 2014 Oct 30.

Abstract

Soluble ions released by zinc oxide (ZnO) and copper (Cu(0)) nanoparticles (NPs) have been associated with toxicity to methanogens. This study evaluated the role of biogenic sulfide in attenuating ZnO and Cu(0) NP toxicity to methanogens. Short- and long-term batch experiments were conducted to explore ZnO and Cu(0) NPs toxicity to acetoclastic methanogens in sulfate-containing (0.4mM) and sulfate-free conditions. ZnO and Cu(0) were respectively 14 and 7-fold less toxic in sulfate-containing than in sulfate-free assays as indicated by inhibitory constants (Ki). The Ki with respect to residual soluble metal indicated that soluble metal was well correlated with toxicity irrespective of the metal ion source or presence of biogenic sulfide. Long-term assays indicated that ZnO and Cu(0) NPs caused different effects on methanogens. ZnO NPs without protection of sulfide caused a chronic effect, whereas Cu(0) NPs caused an acute effect and recovered. This study confirms that biogenic sulfide effectively attenuates ZnO and Cu(0) NPs toxicity to methanogens by the formation of metal sulfides.

摘要

氧化锌 (ZnO) 和铜 (Cu(0)) 纳米颗粒 (NPs) 释放的可溶性离子与甲烷菌的毒性有关。本研究评估了生物硫在减轻 ZnO 和 Cu(0) NP 对甲烷菌毒性中的作用。进行了短期和长期批量实验,以探索含有硫酸盐 (0.4mM) 和无硫酸盐条件下 ZnO 和 Cu(0) NPs 对乙酰氧甲烷菌的毒性。抑制常数 (Ki) 表明,与无硫酸盐条件相比,硫酸盐条件下 ZnO 和 Cu(0) 的毒性分别降低了 14 倍和 7 倍。相对于残留可溶性金属的 Ki 表明,无论金属离子来源或生物硫的存在与否,可溶性金属与毒性都有很好的相关性。长期实验表明,ZnO 和 Cu(0) NPs 对甲烷菌产生了不同的影响。没有硫化物保护的 ZnO NPs 会引起慢性影响,而 Cu(0) NPs 会引起急性影响并恢复。本研究证实,生物硫通过形成金属硫化物有效地减轻了 ZnO 和 Cu(0) NPs 对甲烷菌的毒性。

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