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利用新型土著铁激活过氧化物预处理工艺提高废活性污泥产甲烷量。

Enhancing methane production from waste activated sludge using a novel indigenous iron activated peroxidation pre-treatment process.

机构信息

Advanced Water Management Centre, The University of Queensland, St. Lucia, Queensland 4072, Australia.

Advanced Water Management Centre, The University of Queensland, St. Lucia, Queensland 4072, Australia.

出版信息

Bioresour Technol. 2015 Apr;182:267-271. doi: 10.1016/j.biortech.2015.01.132. Epub 2015 Feb 7.

Abstract

Methane production from anaerobic digestion of waste activated sludge (WAS) is limited by the slow hydrolysis rate and/or poor methane potential of WAS. This study presents a novel pre-treatment strategy based on indigenous iron (in WAS) activated peroxidation to enhance methane production from WAS. Pre-treatment of WAS for 30 min at 50mg H2O2/g total solids (dry weight) and pH 2.0 (iron concentration in WAS was 7 mg/g TS) substantially enhanced WAS solubilization. Biochemical methane potential tests demonstrated that methane production was improved by 10% at a digestion time of 16d after incorporating the indigenous iron activated peroxidation pre-treatment. Model-based analysis indicated that indigenous iron activated peroxidation pre-treatment improved the methane potential by 13%, whereas the hydrolysis rate was not significantly affected. The economic analysis showed that the proposed pre-treatment method can save the cost by $112,000 per year in a treatment plant with a population equivalent of 300,000.

摘要

厌氧消化废活性污泥(WAS)产生甲烷的速度受到 WAS 缓慢的水解速率和/或较差的甲烷生成潜力的限制。本研究提出了一种基于原位铁(WAS 中的铁)激活过氧化物化的新型预处理策略,以提高 WAS 产甲烷量。在 50mg H2O2/g 总固体(干重)和 pH 2.0(WAS 中的铁浓度为 7mg/g TS)下对 WAS 预处理 30min,可显著提高 WAS 的溶解能力。生物化学甲烷潜能测试表明,在 16d 的消化时间后,结合原位铁激活过氧化物预处理,甲烷产量提高了 10%。基于模型的分析表明,原位铁激活过氧化物预处理可提高甲烷潜能 13%,而水解速率则没有显著影响。经济分析表明,在一个人口当量为 300,000 的处理厂中,该预处理方法每年可节省 112,000 美元的成本。

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