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Performance and Bacterial Community Diversity of a Full-Scale Biofilter Treating Leachate Odor in a Sanitary Landfill Site

机译:垃圾填埋场处理渗滤液气味的全尺寸生物滤池的性能和细菌群落多样性

摘要

Odors, such as the malodorous and toxic hydrogen sulfide (H2S), are released during leachate collection, storage, and treatment. A full-scale biofilter was applied to treat H2S emitted from a leachate equalization basin in a sanitary landfill site. The inlet concentration of H2S was 26.3-213.0 mgm(-3). In steady state, total removal efficiency was over 90 % in summer and over 80 % in winter. The maximum elimination capacity achieved 9.1 gm(-3)h(-1) at a loading rate of 10.5 gm(-3)h(-1). The biofilter was effective at reducing H2S. Factors on the level of H2S inlet concentration and performance of the biofilter were investigated. The H2S inlet load and removal efficiency relied on ambient and biofilter temperature, respectively. The water containing rate and relative humidity presented seasonal variation, according to which the interval period of irrigation could be optimized. The main product of H2S degradation was sulfate, and sulfur also could be observed from the biofilter. Spatial and temporal shifts in bacterial community composition in the biofilter were determined by polymerase chain reaction-denaturing gradient gel electrophoresis followed by DNA sequence analysis. The present study revealed a correlation between biofilter performance and bacterial community structure, especially in a real application case.
机译:在渗滤液收集,存储和处理过程中会释放出恶臭和有毒的硫化氢(H2S)等气味。在卫生垃圾填埋场中,使用了一个大型生物滤池来处理从渗滤液均衡池中排放出的H2S。 H2S的入口浓度为26.3-213.0 mgm(-3)。在稳定状态下,夏季总去除效率超过90%,冬季总去除效率超过80%。在10.5 gm(-3)h(-1)的加载速率下,最大消除容量达到9.1 gm(-3)h(-1)。该生物滤池可有效减少H2S。研究了H2S入口浓度水平和生物滤池性能的因素。 H2S入口负荷和去除效率分别取决于环境温度和生物过滤器温度。含水率和相对湿度表现出季节性变化,据此可以优化灌溉间隔期。 H2S降解的主要产物是硫酸盐,在生物滤池中也可以观察到硫。通过聚合酶链反应-变性梯度凝胶电泳,然后进行DNA序列分析,确定生物滤池中细菌群落组成的时空变化。本研究揭示了生物滤池性能与细菌群落结构之间的相关性,特别是在实际应用中。

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