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Enhancing performance and stability of anaerobic digestion of chicken manure using thermally modified bentonite

机译:热改性膨润土提高鸡粪厌氧消化性能和稳定性

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In this study, anaerobic digestion was carried out along with bentonite addition to avoid ammonia accumulation, which significantly inhibits methane production. To make better use of bentonite, calcinations were applied for modification. Chicken manure was anaerobically digested for 75 days at 35 +/- 1 degrees C in lab-scale sequencing batch reactors. Better performance in methane production and process stability was observed in reactors treated with bentonite, compared to those without bentonite. Among all treatments, the maximum increase of 41% in cumulative methane was found with the treatment where bentonite thermally modified at 300 degrees C was applied. The treatment also revealed stable variation of pH, total ammonia nitrogen (TAN), and free NH3 contents. In addition, adsorption capacity of bentonite to TAN was enhanced significantly with thermal modification as well, the TAN concentration reduction was improved by 5%-12% compared to natural bentonite. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在这项研究中,厌氧消化与膨润土的添加一起进行,以避免氨的积累,氨的积累显着抑制了甲烷的产生。为了更好地利用膨润土,对煅烧进行了改性。在实验室规模的测序批处理反应器中,将鸡粪在35 +/- 1摄氏度下厌氧消化75天。与没有膨润土的反应器相比,在用膨润土处理的反应器中观察到了更好的甲烷生产性能和工艺稳定性。在所有处理中,采用在300℃下热改性的膨润土的处理,累积甲烷的最大增加量达到41%。处理还显示出pH值,总氨氮(TAN)和游离NH3含量的稳定变化。另外,通过热改性,膨润土对TAN的吸附能力也显着提高,与天然膨润土相比,TAN浓度降低了5%-12%。 (C)2018 Elsevier Ltd.保留所有权利。

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