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采用固态尿素预处理提高玉米秸秆的厌氧消化性能。

Improving anaerobic digestion of corn straw by using solid-state urea pretreatment.

机构信息

Jiangsu Key Laboratory of Anaerobic Biotechnology, School of Environment and Civil Engineering, Jiangnan University, NO.1800 Lihu Avenue, Wuxi, Jiangsu Province 214122, PR China.

Department of Grain Science and Industry, Kansas State University, 101C BIVAP, 1980 Kimball Avenue, Manhattan, KS, 66506, USA.

出版信息

Chemosphere. 2022 Apr;293:133559. doi: 10.1016/j.chemosphere.2022.133559. Epub 2022 Jan 8.

Abstract

The resistant structure and high carbon/nitrogen ratio (C/N) of cellulosic substrate are the barriers during their anaerobic digestion (AD). Solid-state urea pretreatment was developed in this study to pretreat corn straw and adjust C/N ratio simultaneously for the downstream AD of corn straw. Results showed solid-state urea pretreatment was efficient in lignin removal and achieved the highest lignin reduction of 7.06% with C/N ratio = 15 during pretreatment. Scanning electron microscopy demonstrated the destruction of the dense structure by pretreatment, which benefited to the hydrolysis of corn straw. The cumulative methane yields of the pretreated corn straw ranged from 234.07 to 250.03 mL/g VS, which were obviously higher than that of the untreated corn straw. The maximum methane yield of 250.03 mL/g VS was achieved with C/N = 15 during pretreatment, which was 23.91% higher than that of the untreated group. In addition, AD digestates from the pretreated groups had 9.62% higher nutrients than that from the untreated group. The solid-state urea pretreatment can destroy the dense structure of corn straw and regulate the C/N ratio during AD, thus benefit the methane production and fertilizer use of the digestate, which is a potential choice during the AD of cellulosic substrate.

摘要

固态尿素预处理是一种有效的预处理方法,可去除木质素,同时调节 C/N 比,为后续的玉米秸秆厌氧消化(AD)提供支持。预处理后玉米秸秆的累积甲烷产量为 234.07-250.03 mL/gVS,明显高于未处理组。在预处理过程中,当 C/N 比为 15 时,最大甲烷产量达到 250.03 mL/gVS,比未处理组提高了 23.91%。此外,预处理组的 AD 消化物比未处理组的消化物含有 9.62%更高的养分。固态尿素预处理可以破坏玉米秸秆的致密结构,调节 AD 过程中的 C/N 比,从而有利于甲烷的产生和消化物的肥料利用,是一种潜在的纤维素类底物 AD 选择。

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