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超声辅助垃圾渗滤液生物制沼气。

Ultrasound assisted biogas production from landfill leachate.

机构信息

Çanakkale Onsekiz Mart University, Department of Environmental Engineering, Çanakkale 17100, Turkey.

Çanakkale Onsekiz Mart University, Department of Environmental Engineering, Çanakkale 17100, Turkey.

出版信息

Waste Manag. 2014 Jul;34(7):1165-70. doi: 10.1016/j.wasman.2014.03.003. Epub 2014 Apr 4.

Abstract

The aim of this study is to increase biogas production and methane yield from landfill leachate in anaerobic batch reactors by using low frequency ultrasound as a pretreatment step. In the first part of the study, optimum conditions for solubilization of organic matter in leachate samples were investigated using various sonication durations at an ultrasound frequency of 20 kHz. The level of organic matter solubilization during ultrasonic pretreatment experiments was determined by calculating the ratio of soluble chemical oxygen demand (sCOD) to total chemical oxygen demand (tCOD). The sCOD/tCOD ratio was increased from 47% in raw leachate to 63% after 45 min sonication at 600 W/l. Non-parametric Friedman's test indicated that ultrasonic pretreatment has a significant effect on sCOD parameter for leachate (p<0.05). In the second part of the study, anaerobic batch reactors were operated for both ultrasonically pretreated and untreated landfill leachate samples in order to assess the effect of sonication on biogas and methane production rate. In anaerobic batch reactor feed with ultrasonically pretreated leachate, 40% more biogas was obtained compared to the control reactor. For statistical analysis, Mann-Whitney U test was performed to compare biogas and methane production rates for raw and pretreated leachate samples and it has been found that ultrasonic pretreatment significantly enhanced biogas and methane production rates from leachate (p<0.05) in anaerobic batch reactors. The overall results showed that low frequency ultrasound pretreatment can be potentially used for wastewater management especially with integration of anaerobic processes.

摘要

本研究旨在通过低频超声预处理提高厌氧批式反应器中垃圾渗滤液的沼气产量和甲烷产率。在研究的第一部分,通过在 20 kHz 的超声频率下进行不同的超声持续时间,研究了渗滤液样品中有机物溶解的最佳条件。通过计算可溶化学需氧量(sCOD)与总化学需氧量(tCOD)的比值来确定超声预处理实验中有机物的溶解程度。在 600 W/l 下超声 45 分钟后,sCOD/tCOD 比值从原渗滤液的 47%增加到 63%。非参数 Friedman 检验表明,超声预处理对渗滤液的 sCOD 参数有显著影响(p<0.05)。在研究的第二部分,为了评估超声处理对沼气和甲烷产率的影响,分别用未经超声预处理和超声预处理的垃圾渗滤液进行了厌氧批式反应器实验。在超声预处理的渗滤液作为厌氧批式反应器进料的情况下,与对照反应器相比,获得了 40%更多的沼气。为了进行统计分析,对原始和预处理渗滤液样品的沼气和甲烷产率进行了 Mann-Whitney U 检验,结果表明,超声预处理显著提高了厌氧批式反应器中渗滤液的沼气和甲烷产率(p<0.05)。总体结果表明,低频超声预处理可用于废水管理,特别是与厌氧工艺相结合时。

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