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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Improved Catalytic Technology for Waste Plastic Processing: Toward Novel Remediation and Emission Control Measures
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Improved Catalytic Technology for Waste Plastic Processing: Toward Novel Remediation and Emission Control Measures

机译:改进废旧塑料加工催化技术:朝着新的修复和排放控制措施

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摘要

A mesoporous zeolite USY to process waste plastic, illustrated on low-density polyethylene, is presented. The technology is mobile and can be used as a remediation and control measure to the emissions in the open environment. The core of this approach lays on the catalytic material employed. It is a zeolite USY that possesses both micropores (up to 2 nm) and mesopores (between 2 and 50 nm) that was prepared by desilication using a mixture of mesopore inducing agents, tetra-butyl ammonium hydroxide and sodium hydroxide. This gives rise to a well-defined zeolite USY with double intracrystalline mesoporosity and higher intrinsic acidity. Those improvements had a positive impact on the cracking of low-density polyethylene, with a lowering of the cracking temperature, ascribed to the enhanced mass transfer of the reactant into the acid sites. The lowering of the reaction temperature reduces the energy requirements with operational savings of 0.50 MW with respect to the thermal process and 80 kW with respect to the untreated zeolite for a plant of SO kt per year, though the scale of operation can be adjusted to the local requirements. The lower operation temperature triggered by the catalyst has also benefits in terms of lower capital investment since low-cost construction materials would be required. The zeolite preparation is industrially scalable. All these features make the deployment of this technology a realistic option.
机译:提出了一种介孔沸石,用于处理低密度聚乙烯的废塑料。该技术是移动的,可以用作开放环境中排放的修复和控制措施。这种方法的核心位于所用催化材料上。它是一种沸石USY,其具有通过使用中孔诱导剂,氢氧化铵四丁基铵和氢氧化钠的混合物来制备的微孔(最多2nm)和中孔(在2和50nm之间)。这引起了一种明确定义的沸石USY,具有双脑内脑中间渗透性和更高的内在酸性。这些改进对低密度聚乙烯的裂缝具有积极影响,裂解温度降低,归因于反应物的增强块转移到酸位点。反应温度的降低降低了在每年kt的未处理沸石的热过程和80kw的运行节省的能量要求,但是每年的植物的植物,尽管可以调整到的规模本地要求。由于需要低成本的建筑材料,催化剂触发的较低的操作温度在降低资本投资方面也有益。沸石制剂是在工业上可扩展的。所有这些功能都可以将此技术部署成为现实选项。

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