首页> 外文会议>EPD congress;TMS annual meeting exhibition >ANALYSIS AND CONTROL OF LIGHT HYDROCARBON GASES IN THE PYROLYSIS/COMBUSTION PROCESS OF SEVERAL SOLID WASTES
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ANALYSIS AND CONTROL OF LIGHT HYDROCARBON GASES IN THE PYROLYSIS/COMBUSTION PROCESS OF SEVERAL SOLID WASTES

机译:几种固体废物热解/燃烧过程中轻烃气体的分析与控制

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The disposal of wastes is a serious environmental problem, since available landfill space is dwindling. Their treatment by pyrolysis or combustion has merit, and the corresponding fuel or power production is of technological interest. However, such processes need a rigid control of emissions. This work addresses the gaseous light hydrocarbons (LHCs) generated during sequential pyrolysis and partial oxidation of unserviceable tires, PET bottles, corn wastes (DDGS) and sugarcane bagasse in a two-stage laminar-flow horizontal furnace, kept at 1000 °C. Gas chromatography was used to identify and quantify the components of the emitted gaseous light hydrocarbons. The results showed that the biomass residues generated the highest emissions of aliphatic hydrocarbons, whereas PET generated the most aromatic hydrocarbons. When stainless steel meshes were inserted in the exhaust flow, it was found that hydrocarbon emissions were curtailed; as such meshes catalyzed partial conversion of these carbon-bearing gases to carbonaceous nanomaterials.
机译:废物的处置是一个严重的环境问题,因为可用的垃圾掩埋空间正在减少。通过热解或燃烧对其进行处理具有优点,并且相应的燃料或动力生产具有技术意义。但是,这样的过程需要严格控制排放。这项工作解决了在两级层流卧式炉中在1000°C下对无法使用的轮胎,PET瓶,玉米废渣(DDGS)和甘蔗渣连续进行热解和部分氧化过程中产生的气态轻烃(LHC)。气相色谱法用于鉴定和定量排放的气态轻烃的成分。结果表明,生物质残渣产生的脂族烃排放量最高,而PET产生的芳族烃含量最高。当在排气流中插入不锈钢网时,发现碳氢化合物的排放减少了。这样的网状物催化了这些含碳气体向碳纳米材料的部分转化。

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