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Hydroreforming over Ni/H-beta of the thermal cracking products of LDPE, HDPE and PP for fuel production

机译:用于燃料生产的LDPE,HDPE和PP热裂解产物的Ni /H-β加氢重整

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摘要

The thermal cracking at 400 ℃ of pure poly-olefins-low density polyethylene (LDPE), high density polyethylene (HDPE) and polypropylene (PP) and a standard polyolefin mixture (46 % LDPE + 27 % HDPE 4-28 % PP)-was studied together with the catalytic hydroreforming of the obtained oils over Ni/h-beta at 310 ℃ under 20 bar of hydrogen. The oils obtained after the thermal cracking of PP contain the highest amount of gasoline (58 %), while those coming from HDPE the lowest (39 %). The bromine index of the oils was very high, ranging from 54.1 (LDPE) to 83.8 (PP), indicating a high olefinic content of the oils. Additionally, the thermal cracking of the mixture indicates the occurrence of a syn-ergestic effect among plastics, with transfer of methyl groups from PP to polyethylenes. Ni/h-beta (Si/Al = 25; Ni content = 6.2 wt%) catalyst was used in the hydroreforming since it contains a bimodal pore size distribution (0.6/3.1 nm), which improves accessibility of the oil molecules to the catalytic sites. After the hydroreforming and regardless of the plastics used, the share of lighter products (gasoline and gases) increases, reaching a remarkable 68 % of gasolines with the oils coming from PP. Regardless of the starting feed, the amount of useful fuels (gasoline + light diesel) was within 80-85 %. Additionally, the oils were successfully hydrogenated since the bromine indexes dropped below 7, indicating that more than 90 % of the starting olefins were saturated. The usage of catalysts increased the amount of aromatics in the obtained oils within 13-20 %, depending on the starting plastic. Likewise, the isoparaffin content of the gasolines was within 35-40 %, except for PP, where it was enhanced to 62 %. However, the research octane number (RON) of the gasolines from LDPE and PP and the cetane indexes of the diesel from all the plastics were promising for their application as fuels.
机译:纯聚烯烃-低密度聚乙烯(LDPE),高密度聚乙烯(HDPE)和聚丙烯(PP)和标准聚烯烃混合物(46%LDPE + 27%HDPE 4-28%PP)在400℃下的热裂解-用Ni /h-β在310℃和20 bar的氢气条件下对所得油进行催化加氢重整。 PP热裂解后获得的油中汽油含量最高(58%),而来自HDPE的那些油中汽油含量最低(39%)。这些油的溴指数非常高,范围从54.1(LDPE)到83.8(PP),表明这些油的烯烃含量很高。另外,混合物的热裂化表明塑料之间发生了协同作用,其中甲基从PP转移到聚乙烯。 Ni /h-β(Si / Al = 25; Ni含量= 6.2 wt%)催化剂用于加氢重整,因为它具有双峰孔径分布(0.6 / 3.1 nm),从而改善了油分子对催化剂的可及性网站。加氢重整后,无论使用哪种塑料,较轻产品(汽油和气体)的份额都增加了,达到显着的68%的汽油是由PP制成的。无论起始进料如何,有用燃料(汽油+轻柴油)的量都在80-85%之内。另外,由于溴指数降到7以下,油被成功氢化,表明超过90%的起始烯烃已饱和。取决于原料塑料,催化剂的使用使所得油中的芳烃含量增加了13-20%。同样,除PP外,汽油的异链烷烃含量在35-40%之内,而PP增至62%。但是,对LDPE和PP汽油的辛烷值(RON)以及所有塑料的柴油的十六烷指数的研究都有望将其用作燃料。

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    Department of Chemical and Environmental Technology, ESCET Rey Juan Carlos University, c/Tulipan s, 28933 Mostoles, Madrid, Spain;

    Department of Chemical and Environmental Technology, ESCET Rey Juan Carlos University, c/Tulipan s, 28933 Mostoles, Madrid, Spain;

    Department of Chemical and Energy Technology, ESCET Rey Juan Carlos University, c/Tulipan s, 28933 Mostoles, Madrid, Spain,IMDEA Energy Institute, Avda. Ramon de la Sagra 3, 28935 Mostoles, Madrid, Spain;

    Department of Chemical and Environmental Technology, ESCET Rey Juan Carlos University, c/Tulipan s, 28933 Mostoles, Madrid, Spain;

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  • 正文语种 eng
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  • 关键词

    hydroreforming; HDPE; LDPE; PP; Ni/h-Beta;

    机译:羟乙二醛g;HD pe;LD pe;pp;ni / h;

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