Zhang Siyuan, Long Yuyang, Fang Yuan, Du Yao, Liu Weijia, Shen Dongsheng
Zhejiang Provincial Key Laboratory of Solid Waste Treatment and Recycling, School of Environmental Science and Engineering, Zhejiang Gongshang University, Hangzhou 310012, China.
Zhejiang Provincial Key Laboratory of Solid Waste Treatment and Recycling, School of Environmental Science and Engineering, Zhejiang Gongshang University, Hangzhou 310012, China.
Waste Manag. 2017 Oct;68:337-343. doi: 10.1016/j.wasman.2017.07.013. Epub 2017 Jul 21.
The issue of odorous volatile organic sulfur compound methyl mercaptan (MM) released from landfill sites cannot be ignored for its extremely low odor threshold and high toxicity. In this study, we focused on the formation and emission of MM in four lab-scaled simulated landfill reactors running in different operation modes, namely, R1 and R2, without leachate recirculation, running under anaerobic and semi-aerobic atmosphere, R3 and R4, with leachate recirculation, running under anaerobic and semi-aerobic atmosphere, respectively. From the perspective of odor abatement, the semi-aerobic operation mode can efficiently lower the emitted MM concentration by 87.4-94.9%, relative to the semi-aerobic operation mode. Furthermore, under semi-aerobic conditions, leachate recirculation substantially shortened the period of MM influence by 12.7%, thus reducing the risk of affecting the surrounding atmospheric environment. The formation of MM was dependent on the characteristics such as the volatile fatty acid concentration and chemical oxygen demand in the leachate and sulfide concentration of the refuse. Overall, MM release can be effectively controlled with semi-aerobic operation mode and leachate recirculation.
垃圾填埋场释放的有气味挥发性有机硫化合物甲硫醇(MM),因其极低的气味阈值和高毒性,其问题不容忽视。在本研究中,我们聚焦于四个实验室规模的模拟垃圾填埋反应器中MM的形成与排放,这些反应器运行于不同操作模式,即R1和R2,无渗滤液回流,分别在厌氧和半好氧气氛下运行;R3和R4,有渗滤液回流,分别在厌氧和半好氧气氛下运行。从除臭角度来看,相对于厌氧操作模式,半好氧操作模式可有效降低MM排放浓度87.4 - 94.9%。此外,在半好氧条件下,渗滤液回流显著缩短了MM影响期12.7%,从而降低了影响周边大气环境的风险。MM的形成取决于渗滤液中的挥发性脂肪酸浓度、化学需氧量以及垃圾中的硫化物浓度等特性。总体而言,采用半好氧操作模式和渗滤液回流可有效控制MM释放。