嗜热厌氧消化过程中两种醇醛基化合物存在下造纸废弃物的甲烷产率

E. Yarsur, I. Horváth, C. Yangin-Gomec
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摘要

在这项研究中,研究了两种化合物(即1-辛醇和己醛)分别来自酒精和醛对嗜热(55±2°C)厌氧工艺消化造纸工业产生的废物的影响。在这个范围内,通过在间歇反应器中以0.005%、0.05%和0.5%的浓度消化造纸废料作为原料的累积甲烷(CH4)产量来监测可能的抑制作用。对比两组与仅以废纸为底物的对照反应器的效果,结果表明,添加0.05%浓度的1-辛醇和己醛对沼气产量有一定的协同效应(即提高3% ~ 12%)。因此,在浓度为0.05%的1-辛醇和己醛存在下,甲烷平均产率分别为678和695 mL/g-VSfed,而对照反应器的累积甲烷产率为618 mL/g-VSfed。除0.5%的1-辛醇外,在每一种浓度下添加这两种化合物都有利于间歇过程中的消化。因此,即使在本研究中添加的最大量下,所选择的醇和醛源也不会对产甲烷菌产生预期的有害影响。然而,由于化合物对甲烷生成的影响通常是浓度依赖性的,因此1-辛醇和己醛的毒性作用在较高浓度下(0.5%)会得到更好的观察,特别是在厌氧反应器中消化造纸废物超过其阈值水平时。
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Methane Yield of Paper Industry Waste in the Presence of Two Compounds from Alcohol and Aldehyde Groups During Thermophilic Anaerobic Digestion
In this study, effect of two chemical compounds (i.e., 1-octanol and hexanal) respectively from the alcohol and aldehyde groups on thermophilic (55±2 °C) anaerobic process digesting the waste produced at a paper industry was investigated. In this scope, possible inhibition was monitored by the cumulative methane (CH4) yields in the batch reactors digesting the paper waste as the feedstock at concentrations of 0.005%, 0.05%, and 0.5% for each compound. Comparing the effects of the two different groups with the control reactor having only the paper waste as the substrate, the results revealed that adding 1-octanol and hexanal up to 0.05% concentrations had some synergistic effect on biogas yield (i.e., from 3% to 12% enhancement). Accordingly, the highest methane yields were 678 and 695 mL/g-VSfed, respectively on average in the presence of 1-octanol and hexanal at a concentration of 0.05% while the cumulative methane yield was observed as 618 mL/g-VSfed for the control reactor. With the exception of 1-octanol at 0.5%, adding both compounds at each investigated concentration was beneficial for the digestion in the batch process. Therefore, the selected alcohol and aldehyde sources did not cause the expected detrimental effect on the methanogens even at the maximum amounts added in this study. Nevertheless, since the effect of the chemical compounds on methane generation has been generally concentration-dependent, the toxic effects of 1-octanol and hexanal would be better observed at higher concentrations (0.5%), especially when their threshold levels are exceeded in anaerobic reactors digesting paper wastes.
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