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首页> 外文期刊>Journal of Cleaner Production >Enhanced corn-stover fermentation for biogas production by NaOH pretreatment with CaO additive and ultrasound
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Enhanced corn-stover fermentation for biogas production by NaOH pretreatment with CaO additive and ultrasound

机译:通过使用CaO添加剂和超声波进行NaOH预处理来增强玉米秸秆发酵以生产沼气

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摘要

Corn stover provides a great potential of bioenergy and biomaterial production through biorefinery, rather than being discarded as solid wastes. Appropriate pretreatments can enhance the biodegradability and digestion efficiency of lignocellulosics, and NaOH pretreatment is considered as an effective method. However, most NaOH pretreatments are usually performed at high temperatures (>100 degrees C) and over a long reaction time (similar to days). In this study, we utilize both CaO-additive and ultrasound technique to improve the cost-effectiveness of NaOH pretreatment of corn stover at relatively low temperatures for a short treatment time. We first evaluate the effect of CaO/ultrasound-assisted NaOH pretreatment on the properties of corn stover, and then determine the performance of subsequent biogas production. We also estimate the costs and benefits of the entire biogas production processes. The results indicated that the developed CaO-and-ultrasound-assisted NaOH pretreatment could effectively improve the lignin conversion to 60% and promote the biogas production through anaerobic digestion to over 500mL per gram of total solids. The benefit-cost ratio of the proposed pretreatment was estimated as 1.39-1.65, suggesting that the combination of ultrasound and CaO addition should result in a higher lignin conversion, and thus enhance the cost-effectiveness of biogas production. (c) 2019 Elsevier Ltd. All rights reserved.
机译:玉米秸秆通过生物精炼提供了巨大的生物能源和生物材料生产潜力,而不是作为固体废物丢弃。适当的预处理可以增强木质纤维素的生物降解性和消化效率,而NaOH预处理被认为是一种有效的方法。但是,大多数NaOH预处理通常在高温(> 100摄氏度)和较长的反应时间(类似于几天)中进行。在这项研究中,我们同时利用CaO添加剂和超声技术来提高NaOH预处理玉米秸秆在相对较低的温度下的短时间的成本效益。我们首先评估CaO /超声辅助NaOH预处理对玉米秸秆特性的影响,然后确定后续沼气生产的性能。我们还估算了整个沼气生产过程的成本和收益。结果表明,已开发的CaO和超声辅助NaOH预处理可以有效地将木质素转化率提高至60%,并通过厌氧消化将沼气产量提高至每克总固体500mL以上。拟议的预处理的成本效益比估计为1.39-1.65,这表明超声和CaO的组合应可导致更高的木质素转化率,从而提高沼气生产的成本效益。 (c)2019爱思唯尔有限公司。保留所有权利。

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