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采用新型节能射频预处理系统对城市污泥进行高级厌氧消化。

Advanced anaerobic digestion of municipal sludge using a novel and energy-efficient radio frequency pretreatment system.

机构信息

UBC Bioreactor Technology Group, School of Engineering, The University of British Columbia, Okanagan Campus, 1137 Alumni Avenue, Kelowna, BC V1V 1V7, Canada.

出版信息

Water Res. 2017 Jul 1;118:70-81. doi: 10.1016/j.watres.2017.04.017. Epub 2017 Apr 8.

Abstract

Microwave (MW) sludge pretreatment systems are usually limited to a frequency of 2.45 GHz and the heating frequency is constrained by commercially available hardware. Studies using MW heating at this frequency have reported negative net energy balance (output energy as methane minus input electrical energy). This necessitates further research into more efficient thermal pretreatment technologies. In this research, a novel and highly efficient radio frequency (RF) pretreatment system at a frequency of 13.56 MHz was designed, implemented, and tested for the first time. The system was custom-designed based on the dielectric characteristics of thickened waste activated sludge (TWAS) to achieve a very efficient and uniform heating system. The effects of three factors including pretreatment method (RF vs. MW), final temperature (60, 90 and 120 °C), and stationary (holding) time (0, 1 and 2 h) on sludge solubilization and performance of mesophilic batch anaerobic digestion were evaluated simultaneously. Energy measurements were also made to compare the efficiency of the custom-designed RF and conventional MW heating systems. The differences in sludge disintegration (solubilization) using the RF and MW pretreatment systems were negligible (P > 0.05). No statistically significant difference was also observed between the two pretreatment systems in terms of mesophilic biogas production rate and extent (P > 0.05). The energy efficiency of the RF pretreatment system was measured between 67.3 and 95.5% for the temperature range of 25-120 °C which was significantly higher than that of the MW system efficiency which varied from 37 to 43%. Overall, the average input energy of the RF system was less than half of the energy consumed during the operation of the MW system to achieve a same target temperature. Considering the results of this research, the RF heating at a frequency of 13.56 MHz is suggested as an effective and energy-efficient technique for thermal hydrolysis of TWAS.

摘要

微波(MW)污泥预处理系统通常限于 2.45GHz 的频率,且加热频率受到商业上可用硬件的限制。使用此频率进行 MW 加热的研究报告称存在负的净能量平衡(甲烷输出能量减去输入电能)。这需要进一步研究更有效的热预处理技术。在这项研究中,首次设计、实施和测试了一种新颖且高效的 13.56MHz 射频(RF)预处理系统。该系统是根据增稠剩余活性污泥(TWAS)的介电特性定制的,以实现非常高效和均匀的加热系统。同时评估了预处理方法(RF 与 MW)、最终温度(60、90 和 120°C)和静置(保持)时间(0、1 和 2h)这三个因素对污泥溶解和中温批式厌氧消化性能的影响。还进行了能量测量以比较定制 RF 和传统 MW 加热系统的效率。RF 和 MW 预处理系统在污泥解体(溶解)方面的差异可以忽略不计(P>0.05)。在中温沼气产生率和程度方面,两种预处理系统之间也没有观察到统计学上的显著差异(P>0.05)。RF 预处理系统的能量效率在 25-120°C 的温度范围内测量为 67.3%至 95.5%,明显高于 MW 系统效率(37%至 43%)。总体而言,RF 系统的平均输入能量不到 MW 系统运行时消耗能量的一半,即可达到相同的目标温度。考虑到这项研究的结果,建议在 13.56MHz 频率下使用 RF 加热作为一种有效且节能的 TWAS 热解技术。

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