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Effect of hydraulic retention time on biohydrogen production from palm oil mill effluent in anaerobic sequencing batch reactor

机译:水力停留时间对厌氧顺序分批反应器中棕榈油厂废液生产生物氢的影响

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摘要

The feasibility of hydrogen generation from palm oil mill effluent (POME), a high strength wastewater with high solid content, was evaluated in an anaerobic sequencing batch reactor (ASBR) using enriched mixed rnicroflora, under mesophilic digestion process at 37 "C. Four different hydraulic retention times (HRT), ranging from 96 h to 36 h at constant cycle length of 24 h and various organic loading rate (OLR) concentrations were tested to evaluate hydrogen productivity and operational stability of ASBR. The results showed higher system efficiency was achieved at HRT of 72 h with maximum hydrogen production rate of 6.7 LH_2/L/d and hydrogen yield of 0.34 LH_2/g COD_(feeding), while in longer and shorter HRTs, hydrogen productivity decreased. Organic matter removal efficiency was affected by HRT; accordingly, total and soluble COD removal reached more than 37% and 50%, respectively. Solid retention time (SRT) of 4—19 days was achieved at these wide ranges of HRTs. Butyrate was found to be the dominant metabolite in all HRTs. Low concentration of volatile fatty acid (VFA) confirmed the state of stability and efficiency of sequential batch mode operation was achieved in ASBR. Results also suggest that ASBR has the potential to offer high digestion rate and good stability of operation for POME treatment.
机译:在37摄氏度下的中温消化过程中,使用富集混合紫花苜蓿在厌氧测序间歇反应器(ASBR)中评估了棕榈油厂废液(POME)(一种高浓度固体含量的高强度废水)中制氢的可行性。在恒定的24 h循环长度和各种有机负荷率(OLR)浓度下,水力停留时间(HRT)为96h至36h,以评估ASBR的氢气生产率和运行稳定性,结果显示系统效率更高HRT 72 h,最大产氢量为6.7 LH_2 / L / d,产氢量为0.34 LH_2 / g COD_(进料),HRT时间越长,氢生产率下降,HRT影响有机物去除效率。因此,总的COD和可溶性COD的去除率分别达到了37%和50%以上,在如此宽的HRT范围内,固体保留时间(SRT)为4-19天。是所有HRT中的主要代谢产物。低浓度的挥发性脂肪酸(VFA)证实了ASBR达到了连续批处理模式的稳定性和效率状态。结果还表明,ASBR有潜力为POME治疗提供高消化率和良好的操作稳定性。

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