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Graphene oxide/mixed metal oxide hybrid materials for enhanced adsorption desulfurization of liquid hydrocarbon fuels

机译:氧化石墨烯/混合金属氧化物杂化材料,用于增强液态烃燃料的吸附脱硫

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摘要

A series of mixed metal oxides (MMOs) adsorbents (MgAl-, CuAl- and CoAl-MMOs) were supported on graphene oxide (GO) through in-situ precipitation of layered double hydroxides (LDHs) onto exfoliated GO, followed by thermal conversion. The study shows that GO is an excellent support for the LDH-derived MMOs due to matching geometry and charge complementarity, resulting in a strong hybrid effect, evidenced by significantly enhanced adsorption performance for the commercially important removal of heavy thiophenic compounds from hydrocarbons. Fundamental liquid-phase adsorption characteristics of the MMO/GO hybrids are quantified in terms of adsorption equilibrium isotherms, selectivity and adsorbent regenerability. Upon incorporation of as little as 5 wt% GO into the MMO material, the organosulfur uptake was increased by up to 170%, the recycling stability was markedly improved and pronounced selectivity for thiophenic organosulfurs over sulfur-free aromatic hydrocarbons was observed.
机译:一系列混合金属氧化物(MMOs)吸附剂(MgAl-,CuAl-和CoAl-MMOs)通过将层状双氢氧化物(LDHs)原位沉淀到剥离的GO上,然后进行热转化而负载在氧化石墨烯(GO)上。该研究表明,由于几何形状和电荷互补性的缘故,GO是LDH衍生MMO的极佳支持,从而产生了强大的杂化效果,这一点可通过从商业上重要地从烃类中去除重噻吩化合物的吸附性能显着提高来证明。 MMO / GO杂化物的基本液相吸附特性根据吸附平衡等温线,选择性和吸附剂的可再生性进行了定量。在将低至5 wt%的GO掺入MMO材料后,有机硫的吸收量最多增加170%,循环稳定性得到显着改善,并且观察到噻吩有机硫对无硫芳烃的选择性明显。

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