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Temperature Effects on Methanogenesis and Sulfidogenesis during Anaerobic Digestion of Sulfur-Rich Macroalgal Biomass in Sequencing Batch Reactors

机译:顺序分批反应器中富硫大型藻类生物质厌氧消化过程中温度对甲烷生成和硫生成的影响

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摘要

Methanogenesis and sulfidogenesis, the major microbial reduction reactions occurring in the anaerobic digestion (AD) process, compete for common substrates. Therefore, the balance between methanogenic and sulfidogenic activities is important for efficient biogas production. In this study, changes in methanogenic and sulfidogenic performances in response to changes in organic loading rate (OLR) were examined in two digesters treating sulfur-rich macroalgal waste under mesophilic and thermophilic conditions, respectively. Both methanogenesis and sulfidogenesis were largely suppressed under thermophilic relative to mesophilic conditions, regardless of OLR. However, the suppressive effect was even more significant for sulfidogenesis, which may suggest an option for H S control. The reactor microbial communities developed totally differently according to reactor temperature, with the abundance of both methanogens and sulfate-reducing bacteria being significantly higher under mesophilic conditions. In both reactors, sulfidogenic activity increased with increasing OLR. The findings of this study help to understand how temperature affects sulfidogenesis and methanogenesis during AD.
机译:产甲烷和硫化作用是厌氧消化(AD)过程中发生的主要微生物还原反应,它们竞争着常见的底物。因此,产甲烷和硫化作用之间的平衡对于有效生产沼气很重要。在这项研究中,分别在中温和嗜热条件下,在两个处理富含硫的大型藻类废物的消化池中检查了响应于有机负荷率(OLR)变化的产甲烷和生硫性能变化。相对于嗜温条件,在嗜热条件下,甲烷生成和硫化生成均受到很大程度的抑制,而与OLR无关。然而,抑制作用对于硫化物的产生甚至更为显着,这可能表明控制H S的选择。根据反应器温度,反应器微生物群落的发育完全不同,在中温条件下,产甲烷菌和还原硫酸盐的细菌的丰度明显更高。在两个反应器中,随着OLR的增加,硫化物活性也增加。这项研究的发现有助于了解温度如何影响AD期间的硫化物生成和甲烷生成。

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