玉米废弃物在分离水解发酵生产生物乙醇中的利用

J. Osei
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引用次数: 0

摘要

本研究探讨了利用玉米(Zea mays)废料生产生物乙醇的可行性。从吉图莱市场收集玉米芯、玉米壳和玉米粒,并在肯雅塔大学实验室进行分析。对废物进行物理预处理,以增加酶促反应的表面积。在不同的培养温度(28℃、30℃、32℃)和孵育时间(24、48、72、96 h)下,分别用黑曲霉和酿酒酵母进行酶解和发酵。发酵在150毫升棉花塞锥形烧瓶中进行,其中含有100毫升样品水解物,接种2毫升培养酵母悬浮液。每次孵育后用重铬酸钾氧化法测定乙醇浓度,用% v/v表示,乙醇产率(l/kg)由乙醇浓度除以所用底物的量得到。50 g预处理玉米芯、玉米皮和玉米籽粒产量最高分别为1.84 l/kg、1.76 l/kg和2.05 l/kg。所有玉米基质乙醇产量的最佳温度均为30℃,培养时间分别为96 h、48 h和24 h,玉米棒子、玉米皮和玉米籽粒的乙醇产量最高。结果表明,生物乙醇可以很容易地从玉米废料中生产出来,并建议将其明智地用于能源生产,特别是生物乙醇,以增加其价值,而不是填埋。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Utilization of Corn (Zea Mays) wastes in Bioethanol production by Separate Hydrolysis and Fermentation
The study investigates the feasibility of producing bioethanol from corn (Zea mays) wastes. Corn cobs, husks and grains were collected from Githurai market and analysis was done in the Kenyatta university laboratory. Wastes were physically pre-treated to increase their surface area for enzymatic reactions. Separate Hydrolysis and Fermentation were carried out by using Aspergillus niger for enzymatic hydrolysis and Saccharomyces cerevisiae yeast for fermentation at different incubation temperatures (28oC, 30oC, 32oC) and times (24, 48, 72 and 96 hours). Fermentation was carried out in 150 ml cotton- plugged conical flasks containing 100 ml sample hydrolysates inoculated with 2 ml cultured yeast suspension. Ethanol concentration was determined by potassium dichromate oxidation method after each incubation time and expressed as % v/v whilst ethanol yield (l/kg) was derived from the ethanol concentration divided by the quantity of substrates used.  Maximum yields of 1.84 l/kg, 1.76 l/kg and 2.05 l/kg were obtained from 50 g of pre-treated corn cobs, corn husks and corn grains respectively. The optimum temperature for maximum ethanol yield in all corn substrates was 30oC whilst incubation time 96 hours, 48 hours and 24 hours were optimum for ethanol production in corn cobs, corn husks and corn grains respectively. Results show that bioethanol can easily be produced from corn wastes and is recommended that they are used wisely for energy generation specifically bioethanol to add value to them rather than landfilling.
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