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首页> 外文期刊>Journal of Environmental Protection >Environmentally Harmful Low Density Waste Plastic Conversion into Kerosene Grade Fuel
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Environmentally Harmful Low Density Waste Plastic Conversion into Kerosene Grade Fuel

机译:对环境有害的低密度废塑料转化为煤油级燃料

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摘要

Plastics wastes from a municipal solid waste (MSW) plant have a high-energy content and are suitable for fuel generation. Thermal cracking is one of the possible ways to obtain petrochemical feedstock from polymer wastes. Municipal waste plastic of LDPE conversion to kerosene grade fuel experiments were carried out under atmospheric conditions at temperatures between 150℃ and 420℃. Low density polyethylene (LDPE) plastic waste (Code #2) was thermally depolymerized in batch process into stainless steel reactor without adding catalyst. The maximum kerosene grade fuel yield is 30%, other grade fuel 60%, light gas 6% and left over residue 4%. The composition, sulphur and Btu value of liquid products were determined by ASTM method. Produced fuel was analyzed by Gas Chromatography and Mass Spectrometer and FT-IR. Very high conversions from LDPE waste plastic to kerosene grade fuel (up to 35%) were obtained while using this technique. Detailed product analyses and characterization lead to a reasonable explanation of reaction pathways and mechanisms.
机译:来自市政固体废物(MSW)厂的塑料废物具有较高的能量含量,适合用于燃料生产。热裂化是从聚合物废物中获得石油化工原料的可能方法之一。在大气条件下,150℃至420℃的温度下进行了LDPE转化为煤油级燃料的市政废塑料的实验。在不添加催化剂的情况下,将低密度聚乙烯(LDPE)废塑料(代码2)以间歇方式热解聚到不锈钢反应器中。煤油级燃料的最大产率为30%,其他级燃料为60%,轻质气体为6%,剩余残渣为4%。通过ASTM方法测定液体产物的组成,硫和Btu值。通过气相色谱和质谱仪以及FT-IR分析产生的燃料。使用此技术时,从LDPE废塑料到煤油级燃料的转化率非常高(高达35%)。详细的产品分析和表征可合理解释反应途径和机理。

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