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超声对沼渣溶解和甲烷产量的影响研究。

An investigation of ultrasound effect on digestate solubilization and methane yield.

机构信息

Department of Civil, Construction and Environmental Engineering, San Diego State University, 5500 Campanile Drive, San Diego, CA 92182, USA.

Department of Civil, Construction and Environmental Engineering, San Diego State University, 5500 Campanile Drive, San Diego, CA 92182, USA.

出版信息

Waste Manag. 2018 Jan;71:728-733. doi: 10.1016/j.wasman.2017.03.021. Epub 2017 Mar 17.

Abstract

In this study, different ultrasound power intensities of 0.05-0.21kW/L (4.13-16.52kWh/kg TS) were applied at a frequency of 20kHz and for durations of 5-20min to digestate obtained from a domestic wastewater treatment plant. The ultrasonic effect on digestate solubilization was revealed by increased levels of soluble Chemical Oxygen Demand (sCOD), soluble Total Organic Carbon (sTOC), and soluble Total Nitrogen (sTN) released into the solution. The highest material release was achieved at an ultrasonic energy intensity of 0.21kWh/L. Furthermore, the ultrasonic effect on CH production was studied using the anaerobic digestion process. The application of ultrasound at 0.05-0.21kWh/L provided 1.6-2.3-fold increase in net CH production. Analysis of the energetics of the system showed that only about 4 and 11% of the energy input was recovered in terms of additional CH production at 0.21 and 0.05kWh/L, respectively. A comprehensive cost-benefit analysis of the system is required for making a conclusion on the feasibility of the system, and such analysis should include environmental, economic, and societal benefits of the system, among others.

摘要

在这项研究中,在 20kHz 的频率下,应用了 0.05-0.21kW/L(4.13-16.52kWh/kg TS)的不同超声功率强度,持续时间为 5-20 分钟,对来自家庭废水处理厂的消化物进行处理。通过释放到溶液中的可溶化学需氧量(sCOD)、可溶总有机碳(sTOC)和可溶总氮(sTN)水平的增加,揭示了超声对消化物溶解的影响。在超声能量强度为 0.21kWh/L 时,实现了最高的材料释放。此外,还使用厌氧消化工艺研究了超声对 CH 生产的影响。在 0.05-0.21kWh/L 的超声作用下,净 CH 产量增加了 1.6-2.3 倍。对系统能量学的分析表明,在 0.21 和 0.05kWh/L 下,输入能量的仅约 4%和 11%分别以附加 CH 产量的形式回收。需要对系统进行全面的成本效益分析,才能得出关于系统可行性的结论,这种分析应包括系统的环境、经济和社会效益等方面。

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