作为可再生能源的水果生物废弃物衍生生物乙醇生产和生物发电

A. Hossain, M. M. Uddin
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引用次数: 1

摘要

通讯作者:ABM Sharif Hossain生物技术项目,马来西亚吉隆坡马来亚大学理学院生物科学研究所,Email: abm.hossain@uoh.edu.sa摘要:食品工业产生的生物废弃物是污染环境的重要组成部分。生物材料、生物燃料等生物产品可以从生物废物中生产出来,污染可以减少。以红毛丹果为原料,对生物乙醇的生产质量进行了评价,并对利用红毛丹果废弃物生产生物乙醇进行了研究。发酵2 d时生物乙醇产量最高。与28°C和35°C相比,在pH为5.0的30°C条件下生物乙醇产量最高。与淀粉酶和纤维素相比,酵母在酶水解方面表现出更有效的生产生物乙醇。然而,在2天的孵育期产生的生物乙醇中,葡萄糖含量最低。此外,在2天的孵育期后,粘度和酸值均表现良好,符合ASTM标准。同样,金属元素(P、Ca、Si、Fe、Cu和Pb)的含量在ASTM标准的限制范围内也令人满意。Si、Cu和Pb均为零,有利于发电。利用生物乙醇对燃料电池中的生物电进行监测,发现100%乙醇和100%生物乙醇时的电压分别为269.23和233.84 mV。观察了燃料电池中风扇的旋转,在100%乙醇和100%生物乙醇的情况下,风扇的转速分别为510和450 RPM。生物乙醇基燃料电池的电压随培养时间的增加而降低。因此,从结果中可以发现,生产的生物乙醇质量良好,转化率为97.2%,优化条件为30℃,pH 5.0,孵育2天,酵母浓度4g/l,并且利用生产的生物乙醇和燃料电池成功产生以电压(mV)为代表的生物电,是可再生能源领域的一项创新技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fruit Bio-Waste Derived Bio-Ethanol Production and Bioelectricity Generation as Renewable Energy
Corresponding Author: ABM Sharif Hossain Biotechnology Program, Institute of Biological Sciences, Faculty of Science, University of Malaya, Kuala Lumpur, Malaysia, Email: abm.hossain@uoh.edu.sa Abstract: Bio-waste from food industry is a significant component to pollute the environment. Bioproducts like biomaterials, biofuel can be produced from biowaste and pollution can be reduced. The study was conducted to evaluate the quality of bioethanol production and investigate the bioethanol for bioelectricity generation using rambutan fruit biowaste. Bioethanol yield was the highest in 2 days incubation period of fermentation. The highest bioethanol yield was found at 30°C having pH 5.0 compared to the 28 and 35°C. With enzymatic hydrolysis, yeast exhibited more effective as compare to the amylase and cellulose for producing bioethanol. However, the glucose content was lowest in the bioethanol produced at 2 days incubation period. In addition, viscosity and acid value were exhibited well at 2 days incubation period followed by the ASTM standards. Similarly, the metal element contents (P, Ca, Si, Fe, Cu and Pb) were found satisfactory within the limit of the ASTM standards. The Si, Cu and Pb showed the value zero which was of good for energy generation. Bioelectricity represented by Voltage (mV) using bioethanol was monitored in fuel cell and found the Voltage (269.23 and 233.84 mV) at 100% ethanol and 100% bioethanol. The rotation of the fan in the fuel cell was observed and exhibited 510 and 450 RPM at 100% ethanol and 100% bioethanol. Voltage decreased while incubation time increased in bioethanol based fuel cell. Therefore, it was found from the results that bioethanol produced was of good quality where conversion rate was 97.2% and optimized at 30°C having pH 5.0, 2 days incubation period and 4g/l yeast concentration as well as bioelectricity represented by voltage (mV) was generated successfully using the bioethanol produced and fuel cell as an innovative technology in the field of renewable energy.
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