生物炭对不同接种源厌氧消化性能和微生物结构群落的调节作用

Jingran Ding, Feng Zhen, Xiaoying Kong, Yunzi Hu, Yi Zhang, Lang Gong
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引用次数: 0

摘要

生物炭作为一种可提高厌氧消化(AD)性能的添加剂已引起越来越多的关注,但生物炭在提高厌氧消化性能方面对微生物调节机制的影响尚不清楚。为了研究生物炭如何调节厌氧消化过程,研究人员设计了不同的接种物来源,包括纤维素-胨-猪接种物(CPI)和猪粪接种物(SMI),以确定生物炭对原料浓度为 1% 至 6% 的厌氧消化性能和微生物群落的影响。结果表明,CPI 种子的甲烷产量比未添加生物炭的 SMI 种子高 20.3-38.7%,而添加生物炭后,CPI 和 SMI 的相应甲烷产量分别减少了 5.3%和 23.1%。生物炭提高了挥发性脂肪酸(VFAs)的积累,削弱了潜在的氨吸附抑制作用,并能提高不同接种物来源的可溶性 COD 有机物含量的降解率。微生物群落分析表明,生物炭的添加能促进类杆菌和梭状芽孢杆菌的生长,并提高了养氢型甲烷菌 Methanobrevibacter 和 Methanobacterium 的相对丰度。总之,虽然生物炭的调节对厌氧消化性能有不同的影响,但它有助于提高消化系统的稳定性和降解效率。生物炭的循环利用意义对于实现低碳和可再生的有机废物处理系统至关重要。
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Effect of Biochar in Modulating Anaerobic Digestion Performance and Microbial Structure Community of Different Inoculum Sources
Biochar has attracted increasing attention as an additive for enhancing the performance of anaerobic digestion (AD), but the effect of biochar on microbial regulatory mechanisms in enhancing AD performance is unclear. To investigate how biochar modulates the process of AD, different inoculum sources including cellulose–peptone–swine inoculum (CPI) and swine manure inoculum (SMI) were designed to determine the effect of biochar on the performance and microbial communities of anaerobic digestion of the feedstock concentration from 1 to 6%. The results showed that the methane yields of CPI seeds were higher 20.3–38.7% than those of SMI seeds without a biochar addition, whereas the biochar addition reduced 5.3 and 23.1% of the corresponding methane yield of CPI and SMI, respectively. The biochar enhances the accumulation of volatile fatty acids (VFAs) and weakens the potential ammonia inhibition by adsorption, and it can improve the degradation rate of organic content of soluble COD for different inoculum sources. Microbial community analyses showed that the biochar addition could facilitate the growth of Bacteroidetes and Clostridiales, and it enriched the relative abundance of hydrogenotrophic methanogens Methanobrevibacter and Methanobacterium. Overall, although the modulation of biochar possessed different effects on the anaerobic digestion performance, it contributed to the stability and degradation efficiency of the digestion system. The recycling implication of biochar is critical to realizing a low-carbon and renewable treatment system for organic wastes.
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