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厌氧发酵暴露于金属混合物的过程分析。

Process Analysis of Anaerobic Fermentation Exposure to Metal Mixtures.

机构信息

Research Center for Engineering Ecology and Nonlinear Science, North China Electric Power University, Beijing 102206, China.

出版信息

Int J Environ Res Public Health. 2019 Jul 10;16(14):2458. doi: 10.3390/ijerph16142458.

Abstract

Anaerobic fermentation is a cost-effective biowaste disposal approach. During fermentation, microorganisms require a trace amount of metals for optimal growth and performance. This study investigated the effects of metal mixtures on biogas properties, process stability, substrate degradation, enzyme activity, and microbial communities during anaerobic fermentation. The addition of iron (Fe), nickel (Ni), and zinc (Zn) into a copper (Cu)-stressed fermentation system resulted in higher cumulative biogas yields, ammonia nitrogen (NH-N) concentrations and coenzyme F activities. Ni and Zn addition enhanced process stability and acetate utilization. The addition of these metals also improved and brought forward the peak daily biogas yields as well as increased CH content to 88.94 and 86.58%, respectively. Adding Zn into the Cu-stressed system improved the abundance of , and , the degradation of cellulose, and the transformation of CO to CH. The bacterial and archaeal communities were responsible for the degradation of lignocelluloses and CH production during the fermentation process. This study supports the reutilization of heavy metal-contaminated biowaste and provides references for further research on heavy metals impacted anaerobic fermentation.

摘要

厌氧发酵是一种具有成本效益的生物废物处理方法。在发酵过程中,微生物需要微量的金属才能达到最佳的生长和性能。本研究探讨了金属混合物对沼气特性、过程稳定性、基质降解、酶活性和微生物群落的影响在厌氧发酵过程中。在铜(Cu)胁迫发酵系统中添加铁(Fe)、镍(Ni)和锌(Zn),会导致累积沼气产量、氨氮(NH-N)浓度和辅酶 F 活性更高。Ni 和 Zn 的添加增强了过程稳定性和乙酸盐的利用。添加这些金属还提高了并提前了每日沼气产量的峰值,使 CH 含量分别增加到 88.94%和 86.58%。向 Cu 胁迫系统中添加 Zn 提高了 、 和 的丰度,提高了纤维素的降解率,以及 CO 向 CH 的转化率。细菌和古菌群落负责发酵过程中木质纤维素的降解和 CH 的生成。本研究支持对重金属污染生物废物的再利用,并为进一步研究重金属对厌氧发酵的影响提供了参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6770/6678117/2d7df3305778/ijerph-16-02458-g001a.jpg

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