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Life cycle assessment of advanced bioethanol production from pulp and paper sludge

机译:纸浆和造纸污泥先进生物乙醇生产的生命周期评估

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摘要

This work evaluates the environmental performance of using pulp and paper sludge as feedstock for the production of second generation ethanol. An ethanol plant for converting 5400 tons of dry sludge/year was modelled and evaluated using a cradle-to-gate life cycle assessment approach. The sludge is a burden for pulp and paper mills that is mainly disposed in landfilling. The studied system allows for the valorisation of the waste, which due to its high polysaccharide content is a valuable feedstock for bioethanol production. Eleven impact categories were analysed and the results showed that enzymatic hydrolysis and neutralisation of the CaCO3 are the environmental hotspots of the system contributing up to 85% to the overall impacts. Two optimisation scenarios were evaluated: (1) using a reduced HCl amount in the neutralisation stage and (2) co-fermentation of xylose and glucose, for maximal ethanol yield. Both scenarios displayed significant environmental impact improvements.
机译:这项工作评估了使用纸浆和造纸污泥作为生产第二代乙醇的原料的环境性能。使用摇篮到大门的生命周期评估方法对乙醇工厂/年转换为5400吨干污泥的工厂进行建模和评估。污泥是纸浆和造纸厂的负担,主要处理垃圾填埋场。所研究的系统可实现废物的增值,由于其多糖含量高,因此是生物乙醇生产的宝贵原料。分析了11种影响类别,结果表明CaCO3的酶促水解和中和作用是系统的环境热点,占整体影响的85%。评估了两种优化方案:(1)在中和阶段使用减少的HCl量;(2)木糖和葡萄糖的共同发酵,以实现最大的乙醇产量。两种方案都显示出对环境影响的显着改善。

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