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Improvement of Mesophilic Biohydrogen Production from Palm Oil Mill Effluent Using Ozonation Process

机译:利用臭氧处理方法改善棕榈油磨流出物的嗜液生物氢化

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Biological fermentative production of hydrogen from the ozonated palm oil mill effluent (POME) was conducted in batch reactors using an anaerobic sludge as a microbial seed. Fermentation was setup at pH 4.0-6.0, varying POME concentration range of 5,000-37,000 mg L~(-1) under mesophilic condition (37°C). The results showed that pH 6.0 is an optimum pH and the maximum hydrogen yield of 28.3 mL g~(-1)COD was obtained. Comparative results of hydrogen production from the raw POME versus the ozonated POME indicated that the ozone pretreatment of POME (mg COD: mg ozone = 102.8) elevated the biodegradability of the POME constituents and significantly enhanced yield and rate of the hydrogen production. Hydrogen production using ozonated POME concentration of 30,000 mg L~(-1) displayed the maximum yield of 182.3 mL g~(-1) COD, which is 49% higher than that from raw POME. Meanwhile the maximum production rate of 43.1 mL h~(-1) was observed at COD concentration of 25,000 mg L~(-1) ozonated POME. Maximum COD removal was 44% at COD concentration of 15,000 mg L~(-1) ozonated POME. This work demonstrated ozonation of POME significant improved performance of hydrogen production.
机译:使用厌氧污泥作为微生物种子,在批量反应器中进行生物发酵生产来自臭氧棕榈油磨流出物流料流出物(Pome)的氢气。在pH 4.0-6.0的pH 4.0-6.0中设置发酵,在碘入条件下改变5,000-37,000mg L〜(-1)的宽型浓度范围(37℃)。结果表明,pH6.0是最佳pH,得到28.3ml G〜(-1)鳕鱼的最大氢产率。氢气生产的对比结果与臭味的储备厂表明,臭氧预处理的臭氧预处理(Mg COD:Mg臭氧= 102.8)升高了Pome成分的生物降解性,并显着提高了氢生产的产量和速率。使用臭氧料浓度为30,000 mg L〜(-1)的氢气产生显示的最大收率为182.3ml g〜(-1)鳕鱼,比从原始圆顶高49%。同时,在鳕鱼浓度为25,000mg l〜(-1)臭氧料型污染物中观察到43.1ml H〜(-1)的最大产量。 COD浓度为15,000mg L〜(-1)臭氧碱基的最大COD去除为44%。这项工作展示了臭氧的臭氧显着提高了氢气产量的性能。

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