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首页> 外文期刊>Jurnal Energi Dan Manufaktur >Proses Treatment Dengan Menggunakan NaOCl Dan H2SO4 Untuk Mempercepat Pembuatan Bioetanol Dari Limbah Rumput Laut Eucheuma Cottonii
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Proses Treatment Dengan Menggunakan NaOCl Dan H2SO4 Untuk Mempercepat Pembuatan Bioetanol Dari Limbah Rumput Laut Eucheuma Cottonii

机译:使用NaOCl和H2SO4的处理工艺可加快从Eucheuma Cottonii海藻废料中生产生物乙醇的速度

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The fermentation process of the waste of Eucheuma cottonii seaweed to become bioethanol can beaccelerated by providing special treatment, such as delignification process using NaOCl and immersion byusing a mixture of H2SO4 for different variations. The fermentation process is also be done by using the yeast ofSaccharomyces cerevisiae with a variety of mixtures, to determine the rate of bioethanol fermentation.In this study NaOCl has been used with variation of 0.25%, 0.50% and 0.75%. H2SO4 is used with aconcentration of 0.5% and the variations of Saccharomyces cerevisiae yeast with a ratio of 1: 0.0015; 1: 0.003;1: 0.0045; 1: 0.006 and 1: 0.0075 for every kilogram of waste Eucheuma Cottonii and yeast, and withfermentation time of 3, 6 and 9 days. As a comparison is the same treatment, but without the use of H2SO4.Based on the research, the following results obtained. The highest rate of bioethanol fermentation is4.4% per day and the highest levels of ethanol produced is 14.0%. This is achieved for where each kilogram ofwaste of Eucheuma cottonii is delignificated with a concentration of 0.5% NaOCl followed by a treatment inphysics, with the variations of yeast 1: 0.006 and with a time of fermentation for 3 days.
机译:可以通过提供特殊处理来加快Eucheuma cottonii海藻废料变成生物乙醇的发酵过程,例如使用NaOCl进行脱木素处理以及通过使用不同浓度的H2SO4混合液进行浸泡。发酵过程也可以通过使用酿酒酵母的酵母与各种混合物来确定生物乙醇的发酵速率来完成。在本研究中,NaOCl的使用偏差为0.25%,0.50%和0.75%。使用的H2SO4浓度为0.5%,而酿酒酵母酵母的变异比例为1:0.0015; 1:0.003; 1:0.0045;每公斤废Eucheuma Cottonii和酵母的比例为1:0.006和1:0.0075,发酵时间为3、6和9天。作为比较,是相同的处理方法,但不使用H2SO4。根据研究,获得了以下结果。最高的生物乙醇发酵速率是每天4.4%,最高的乙醇生成水平是14.0%。这是通过以下方式实现的:将每公斤Eucheuma cottonii的废品用浓度为0.5%的NaOCl脱去木质素,然后进行物理处理,改变酵母的比例为1:0.006,发酵时间为3天。

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