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微生物共生物预处理对废纸和纸板甲烷产量的影响。

Effect of pretreatment by a microbial consortium on methane production of waste paper and cardboard.

机构信息

College of Agronomy and Biotechnology/Center of Biomass Engineering, China Agricultural University, Beijing 100193, China.

出版信息

Bioresour Technol. 2012 Aug;118:281-8. doi: 10.1016/j.biortech.2012.05.058. Epub 2012 May 22.

Abstract

A microbial consortium MC1 was used to pretreat filter paper, office paper, newspaper, and cardboard to enhance methane production. The results of pretreatment indicated that sCOD of hydrolysates of the four substrates increased significantly in the early stage, and peaked on day 7. During pretreatment, ethanol, acetic acid, propionic acid, butyric acid, and glycerol were the predominant volatile organic products in hydrolysates. MC1 had strong degradation ability on the four substrates, and the weight loss of filter paper, office paper, newspaper, and cardboard reached 78.3%, 80.5%, 39.7%, and 49.7%, respectively. The results of anaerobic digestion showed that methane production yields and rates of the four substrates significantly increased after pretreatment. This study is the first attempt to explore the microbial pretreatment method for anaerobic digestion of waste paper and cardboard. Microbial consortium pretreatment could be an effective method for enhancing methane production of waste paper and cardboard into bioenergy.

摘要

采用微生物共混物 MC1 预处理滤纸、办公用纸、报纸和硬纸板,以提高甲烷产量。预处理结果表明,四种基质水解物的 sCOD 在早期显著增加,并在第 7 天达到峰值。在预处理过程中,乙醇、乙酸、丙酸、丁酸和甘油是水解物中主要的挥发性有机产物。MC1 对四种基质具有很强的降解能力,滤纸、办公用纸、报纸和硬纸板的失重率分别达到 78.3%、80.5%、39.7%和 49.7%。厌氧消化的结果表明,四种基质的甲烷产量和产率在预处理后均显著提高。本研究首次尝试探索微生物预处理方法用于废纸和纸板的厌氧消化。微生物共混物预处理可以有效提高废纸和纸板转化为生物能源的甲烷产量。

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