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Hydrothermal preparation of a platinum-loaded sulphated nanozirconia catalyst for the effective conversion of waste low density polyethylene into gasoline-range hydrocarbons

机译:铂负载硫酸化纳米锆催化剂的水热制剂,用于有效转化废水低密度聚乙烯到汽油 - 范围烃中

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A platinum-loaded sulphated nanozirconia (Pt/nano ZrO _(2) –SO _(4) ) bifunctional metal–acid catalyst was synthesized using a hydrothermal process. The nano ZrO _(2) –SO _(4) was initially prepared by dispersing the nano ZrO _(2) in H _(2) SO _(4) , followed by wet impregnation via heating in an aqueous PtCl _(4) solution. This material was subsequently calcined and reduced under hydrogen gas to produce the catalyst. The Pt/nano ZrO _(2) –SO _(4) was found to be a highly active, selective and stable solid acid catalyst for the conversion of waste low density polyethylene (LDPE) to high value hydrocarbons. The catalytic activity and stability of this material were evaluated during the hydrocracking of waste LDPE while optimizing the reaction temperature, time and catalyst-to-feed ratio. The activity of catalyst prepared by hydrothermal was attributed to highly dispersion of Pt species interacting with the support and inhibition of the agglomeration process. The impregnation method of hydrothermal generated highly active and selective catalyst with Pt loads of 1 wt%. The hydrocracking of waste LDPE over Pt/nanoZrO _(2) –SO _(4) at 250 °C for 60 min with a catalyst-to-feed proportion of 1 wt% gave the largest gasoline fraction.
机译:使用水热法合成铂负载硫酸氯化纳米锆(Pt /纳米ZrO _(2)-SO _(4))双官能金属酸催化剂。首先通过将纳米ZrO _(2)分散在H _(2)所以_(4)中,然后通过PTCL水溶液中加热浸渍浸渍(4)来制备纳米ZrO _(4)-SO_(4)。(4 ) 解决方案。随后将该材料煅烧并在氢气下减少以产生催化剂。发现Pt /纳米ZrO _(2)-SO _(4)是一种高活性,选择性和稳定的固体酸催化剂,用于将废水低密度聚乙烯(LDPE)转化为高价值烃。在废物LDPE的加氢裂化过程中评价该材料的催化活性和稳定性,同时优化反应温度,时间和催化剂 - 进给比。通过水热制备的催化剂的活性归因于Pt物种的高度分散,与载体相互作用和抑制聚集过程。水热产生高活性和选择性催化剂的浸渍方法,具有1wt%的Pt载荷。废物LDPE在Pt /纳米氮_(2)-SO _(4)上的加氢裂化在250℃下60分钟,催化剂与饲料比例为1wt%,得到了最大的汽油馏分。

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