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Synergistic effects of co-combustion of sewage sludge and corn stalk and the resulting gas emission characteristics

机译:污泥污泥和玉米秸秆共燃烧的协同效应及其气体排放特性

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摘要

Increasing discharge of sewage sludge is a threat to the ecological environment, and sludge treatment via combustion is the most feasible alternative. However, the low calorific value and high-water content of raw sludge results in poor firing performance and increases the risk of environmental pollution. Recently, co-combustion has emerged as a more environment-friendly technology. Herein, the combustion behaviours of sewage sludge, corn stalk and their mixture at four heating rates were studied via thermogravimetric experiments. Results yielded the division of weight loss into three stages for corn stalk: dehydration, combustion of volatiles and combustion of fixed carbon; four stages were identified for sewage sludge and the mixture of sludge and stalk: dehydration, combustion of volatiles, combustion of fixed carbon and thermal decomposition of a small amount of minerals. Synergistic analyses found that with a 60% blending ratio of sewage sludge, interaction between the components in the high-temperature range was greatly promoted. Gas emission characteristics showed that CO(2)was the main product during (co-)combustion, while the NO(x)emissions at low (or high) temperatures for the blend were higher (or lower) than the theoretical values. Temperature had little effect on H2S emissions, though it significantly affected SO(2)emissions during co-combustion.
机译:污水污泥的越来越高的排放是对生态环境的威胁,通过燃烧污泥处理是最可行的替代方案。然而,低热量值和原料污泥的高含水量导致射击性能不佳,增加了环境污染的风险。最近,共燃烧已经成为一种更环保的技术。这里,通过热重试验研究了污水污泥,玉米秸秆及其混合物的燃烧行为。结果将体重减轻分为三个阶段为玉米秸秆:脱水,挥发物燃烧和固定碳的燃烧;污水污泥和污泥和茎的混合物鉴定了四个阶段:脱水,挥发物燃烧,固定碳的燃烧和少量矿物质的热分解。协同分析发现,随着污水污泥的60%混合比,大大促进了高温范围内的组分之间的相互作用。气体排放特性表明CO(2)在(共同)燃烧期间是主要产物,而NO(X)的混合物的低(或高)温度的排放比理论值更高(或更低)。温度对H2S排放几乎没有影响,尽管它在共燃烧过程中显着影响了(2)所以排放量。

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