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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Bio-refinery system of DME or CH4 production from black liquor gasification in pulp mills
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Bio-refinery system of DME or CH4 production from black liquor gasification in pulp mills

机译:制浆厂黑液气化生产DME或CH4的生物精炼系统

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摘要

There is great interest in developing black liquor gasification technology over recent years for efficient recovery of bio-based residues in chemical pulp mills. Two potential technologies of producing dimethyl ether (DIME) and methane (CH4) as alternative fuels from black liquor gasification integrated with the pulp mill have been studied and compared in this paper. System performance is evaluated based on: (i) comparison with the reference pulp mill, (ii) fuel to product efficiency (FTPE) and (iii) biofuel production potential (BPP). The comparison with the reference mill shows that black liquor to biofuel route will add a highly significant new revenue stream to the pulp industry. The results indicate a large potential of DME and CH4 production globally in terms of black liquor availability. BPP and FTPE of CH4 production is higher than DME due to more optimized integration with the pulping process and elimination of evaporation unit in the pulp mill.
机译:近年来,对于在化学制浆厂中有效回收生物基残留物的黑液气化技术的开发,人们产生了浓厚的兴趣。本文研究并比较了与制浆厂集成的黑液气化生产二甲醚(DIME)和甲烷(CH4)作为替代燃料的两种潜在技术。系统性能的评估基于:(i)与参考纸浆厂的比较,(ii)燃料对产品的效率(FTPE)和(iii)生物燃料的生产潜力(BPP)。与参考工厂的比较表明,黑液到生物燃料的路线将为制浆业增加新的收入来源。结果表明,就黑液可用性而言,全球DME和CH4的生产潜力很大。 CH4生产的BPP和FTPE比DME高,这是因为与制浆过程的集成更加优化,并且在制浆厂中省去了蒸发装置。

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