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Effect of Zn Addition on the Cd-Containing Anaerobic Fermentation Process: Biodegradation and Microbial Communities

机译:锌添加对含镉厌氧发酵过程的影响:生物降解和微生物群落

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摘要

Anaerobic fermentation is considered as a cost-effective way of biomass waste disposal. However, the compound heavy metals contained in the biomass may induce complex effects on anaerobic fermentation, which limit the utilization of metal-contaminated biowaste. In this study, the impacts of Cd and Zn addition on biogas properties, process stability, substrate biodegradation, enzyme activity, and microbial properties were studied. The results showed that the addition of Cd together with Zn (Cd+Zn) increased the maximum daily and cumulative biogas yields, and brought forward the gas production peak compared with the Cd-added group. Taking the whole fermentation process into account, the promotion effects of adding Zn into the Cd-containing fermentation system on biogas yields were mainly attributable to better process stability, higher average NH4+-N concentration in the later stage of fermentation, reduced COD (p < 0.05), and increased biodegradability of lignocelluloses (p < 0.01), especially cellulose (p < 0.05) and lignin (p < 0.01). Meanwhile, the addition of Zn promoted the coenzyme M activity (p < 0.05), and increased the absolute abundance of Methanothermobacter. The bacteria communities during the fermentation process were responsible for the degradation of lignocelluloses. The results demonstrated that the addition of appropriate Zn into the Cd-containing fermentation system enhanced the efficiency of anaerobic fermentation and utilization of biowaste.
机译:厌氧发酵被认为是处理生物质废物的一种经济有效的方式。但是,生物质中所含的复合重金属可能会对厌氧发酵产生复杂的影响,从而限制了金属污染的生物废物的利用。在这项研究中,研究了添加Cd和Zn对沼气性质,工艺稳定性,底物生物降解,酶活性和微生物性质的影响。结果表明,与添加镉相比,添加镉和锌(Cd + Zn)可增加最大日沼气产量和累积沼气产量,并提高了产气高峰。考虑到整个发酵过程,在含镉发酵系统中添加锌对沼气产量的促进作用主要是由于工艺稳定性更好,后期平均NH4 + -N浓度较高。发酵时间的延长,COD降低(p <0.05)和木质纤维素的生物降解性提高(p <0.01),尤其是纤维素(p <0.05)和木质素(p <0.01)。同时,锌的添加促进了辅酶M的活性(p <0.05),并增加了甲烷甲烷杆菌的绝对丰度。发酵过程中的细菌群落负责木质纤维素的降解。结果表明,向含Cd的发酵系统中添加适当的Zn可以提高厌氧发酵的效率和生物废物的利用。

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