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Biohydrogen production from rice mill wastes by Clostridium acetobutylicum NCIM 2877

机译:丙酮丁醇梭菌NCIM 2877从碾米厂废物中生产生物氢

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The production of biohydrogen from rice mill wastes, including rice bran and rice mill effluent by Clostridium acetobutylicum NCIM 2877 was investigated in a batch culture system and optimized the temperature and pH conditions. At 35 ℃ with initial pH of 5.2 a yield of 55.7±0.8 ml with 88.6 ± 0.3% substrate utilization and at pH 6 the production was 68.7 ± 0.9 ml with 85 ± 1.0 % substrate utilization. Addition of metal ions resulted in better yield and substrate utilization efficiency of the bacteria. FeSO_4.7H_2O at a concentration of 50 mg/l gave 79.7 ± 1.5 ml with 96% of substrate utilization. Cobalt effected the production greatly by giving 96.3 ± 0.9 ml with 95.3 ± 0.7% of substrate utilization whereas Nickel didn't showed much effective results by giving only a maximum of 74.7 + 1.5 ml production at 25 mg/l concentration. Conclusively, it can be stated that rice mill wastes can be used as a substrate and use of metal ions will play a key role in the enhancement of biohydrogen production.
机译:在分批培养系统中研究了丙酮丁醇梭菌NCIM 2877从米糠废料(包括米糠和米糠废液)中生产生物氢,并优化了温度和pH条件。在35℃,初始pH值为5.2时,底物利用率为85.7±0.3%,产量为55.7±0.8 ml;在pH为6时,底物利用率为85±1.0%,产量为68.7±0.9 ml。金属离子的添加​​导致细菌的产率和底物利用率更高。浓度为50 mg / l的FeSO_4.7H_2O得到79.7±1.5 ml,底物利用率为96%。钴的产量达到96.3±0.9 ml,底物利用率为95.3±0.7%,从而极大地影响了产量,而镍在25 mg / l的浓度下最多只能提供74.7 + 1.5 ml的产量,因此并未显示出有效的结果。总而言之,可以说碾米厂的废料可以用作基质,金属离子的使用将在提高生物氢生产中起关键作用。

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