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Effect of hydraulic retention time on suppression of methanogens during a continuous biohydrogen production process using molasses wastewater

机译:水力停留时间对糖蜜废水连续生物制氢过程中产甲烷菌抑制的影响

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This study was undertaken to investigate the reduction of the hydraulic retention time (HRT) to decrease methane generation and recover hydrogen production during the long-term operation of biohydrogen production in a continuous stirred tank reactor (CSTR) using molasses wastewater. Reduction of HRT can be a simple and economic method to immediately control unfavorable methane generated during continuous operation of a hydrogen production system. The steady-state performance of the CSTR showed a hydrogen content of 41.3 +/- 3.30% and a hydrogen production rate (HPR) of 63.7 +/- 10.01 mmol-H(2)L(-1)d(-1) under an organic loading rate (OLR) of 29.7 g CODL-1 at an HRT of 24 h. Increase in the methane level above 40% during long-term operation caused decrease in the hydrogen content and HPR to 5.9 +/- 1.6% and 2.1 +/- 1.1 mmoL-H(2)L(-1)d(-1), respectively. When methane increased to a high level over 40%, the CSTR at the HRT of 24 h was operated at the HRT of 12 h. Reduction of the HRT from 24 to 12 h led to decrease in the methane content of 12.1 +/- 4.44% and recovery of the HPR value to 48.9 +/- 15.37 mmol-H(2)L(-1)d(-1) over a duration of 13-22 d. When methane is generated in a continuously operated reactor, reduction of the HRT can be an easy way to suppress methanogens and recover hydrogen production without any additives or extra treatments.
机译:这项研究旨在研究减少水力停留时间(HRT)以减少甲烷生成并在使用糖蜜废水的连续搅拌釜反应器(CSTR)中长期生产生物氢的过程中回收氢的产生。降低HRT可以是一种简单且经济的方法,可以立即控制在制氢系统连续运行期间产生的有害甲烷。 CSTR的稳态性能显示,氢氧根含量为41.3 +/- 3.30%,氢生成率(HPR)为63.7 +/- 10.01 mmol-H(2)L(-1)d(-1) HRT为24 h时,有机负载量(OLR)为29.7 g CODL-1。在长期运行中甲烷含量增加到40%以上会导致氢含量和HPR降低至5.9 +/- 1.6%和2.1 +/- 1.1 mmoL-H(2)L(-1)d(-1) , 分别。当甲烷含量增加到超过40%的高水平时,在24 h的HRT下运行的CSTR在12 h的HRT下运行。将HRT从24小时降低到12小时导致甲烷含量降低12.1 +/- 4.44%,并将HPR值恢复到48.9 +/- 15.37 mmol-H(2)L(-1)d(-1) )持续13-22 d。当在连续运行的反应器中生成甲烷时,降低HRT可能是抑制甲烷源并恢复氢气生产的简便方法,而无需任何添加剂或额外的处理。

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