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Catalytic supercritical water gasification of plastics with supported RuO2:a potential solution to hydrocarbons-water pollution problem

机译:负载RuO2的塑料催化超临界水气化:解决碳氢化合物-水污染问题的潜在方法

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摘要

Here we report on a potential catalytic process for efficient clean-up of plastic pollution in waters, such as the Great Pacific Garbage Patch (CPGP). Detailed catalytic mechanisms of RuO2 during supercritical water gasification of common polyolefin plastics including low-density polyethylene (LDPE), high-density polyethylene (HDPE), polypropylene (PP) and polystyrene (PP), have been investigated in a batch reactor at 450 °C, 60 min. All four plastics gave very high carbon gasification efficiencies (CGE) and hydrogen gasification efficiencies (HGE). Methane was the highest gas component, with a yield of up to 37 mol kg−1LDPE using the 20 wt% RuO2 catalyst. Evaluation of the gas yields, CGE and HGE revealed that the conversion of PS involved thermal degradation, steam reforming and methanation; whereas hydrogenolysis was a possible additional mechanism during the conversion of aliphatic plastics. The process has the benefits of producing a clean-pressurized methane-rich fuel gas as well as cleaning up hydrocarbons-polluted waters.
机译:在这里,我们报告了有效净化水中塑料污染的潜在催化过程,例如太平洋大垃圾场(CPGP)。在450°C的间歇式反应器中研究了RuO2在包括低密度聚乙烯(LDPE),高密度聚乙烯(HDPE),聚丙烯(PP)和聚苯乙烯(PP)在内的普通聚烯烃塑料的超临界水气化过程中的详细催化机理。 C,60分钟。四种塑料都具有很高的碳气化效率(CGE)和氢气气化效率(HGE)。甲烷是最高的气体成分,使用20 wt%的RuO2催化剂,甲烷的收率最高为37 mol kg-1LDPE。对天然气产量,CGE和HGE的评估表明,PS的转化涉及热降解,蒸汽重整和甲烷化。而氢解是脂肪族塑料转化过程中可能的附加机制。该方法的优点是可以生产出清洁加压的富含甲烷的燃气,并可以净化碳氢化合物污染的水。

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