利用厌氧发酵将纸板废物转化为生物乙醇

A. T. Abduljabbar, Reem Younes, Amer Jahad Ibrahem
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摘要

许多国家对废物管理技术及其使用感兴趣,因为这些技术有助于处理影响环境的污染物。废纸作为城市固体废物的重要组成部分,是生产生物乙醇的潜在来源。生物乙醇生产是一种广泛研究的生物燃料生产过程,因为通过焚烧处理的废物会排放危险的温室气体(导致全球变暖)。目前的工作将纸板废物作为生物乙醇合成的原料,通过物理、化学和酶处理,通过两阶段酵母菌和发酵阶段,使用酵母提取物,改善纸板废物的葡萄糖合成。我们所依赖的木霉是一种在所有土壤中发现的真菌属,是最广泛培养的真菌;这种真菌是纤维素酶的生产者,它将纤维素分解成发酵糖,依靠三种不同的培养基,碳源和植物源。选择羧甲基纤维素琼脂培养基培养酶溶真菌,在最佳条件pH(5.5 ~ 6)、温度28℃下取含糖率高(12 mg/l)的酶促滤液。本课题旨在研究利用纸板中的纤维素生产乙醇,通过发酵工艺进行5-8天的试验,取得了满意的结果,消耗5克纸板废料产生1%的乙醇,相当于20ml的乙醇产量。
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Converting of Cardboard Waste for Bioethanol Production Using Anaerobic ‎Fermentation
Many countries are interested in waste management technologies and their use, where these technologies contribute to ‎the disposal of pollutants that affect the environment. As a significant fraction of municipal solid waste, waste ‎paper is a potential source for producing bioethanol. Bioethanol production is a widely studied process for ‎biofuel production, as waste disposal through incineration emits dangerous greenhouse gases (which cause global ‎warming). The current work uses cardboard waste as a raw material for bioethanol synthesis through the physical, ‎chemical, and enzymatic treatments to improve glucose synthesis from cardboard waste by two-stage saccharomyces ‎and fermentation stage, using yeast extract. We relied on Trichoderma is a genus of fungi found in all soils, being the most widely cultured fungi; this fungus is ‎a producer of the cellulase enzyme that breaks down cellulose into fermented sugar and relies on three different media ‎with a carbon source and a vegetable source. (CMC) carboxymethyl cellulose agar the medium was chosen for the growth of enzyme-dissolving ‎fungi, and then the enzymatic filtrate was taken, which contains a high percentage of sugars about (12 mg/l) in the ‎optimum‏ ‏conditions pH (5.5-6) and temperature 28 °C. The purpose of the research exploitation of cellulose in cardboard and production of ethanol by fermentation process for a period ‎of 5-8 days, satisfactory results have been obtained, consumption of 5g cardboard waste produces 1%, which is equivalent to 20ml ethanol yield.
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