Synthesis of Dawson Hetero-Polyoxometalate/Activated Carbon Composite and evaluation of its catalytic application for Oxidative removal of Dibenzothiophene

Ali M. Kermani, A. Ahmadpour, T. R. Bastami
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Abstract

The presence of sulfur-containing compounds in fossil fuels has been considered as major source of SOx. Oxidative desulfurization (ODS) is recognized as a promising process to remove sulfur compounds in fossil fuels. Furthermore, in recent years, polyoxometalates (POMs), renowned as green catalysts, have attracted worldwide attention for their high efficiency in ODS. In this research, activated carbon (AC) supported dawson type hetero-polyoxometalate composite has been synthesized and evaluated as a new catalyst in oxidative desulfurization of model fuel containing dibenzothiophene. The prepared Dawson/AC catalysts were analyzed using FTIR, XRD, SEM. In order to optimize the operating conditions of ODS using Dawson/AC as catalyst, three conditions such as temperature, catalyst dosage and oxidant dosage were studied. Under optimized conditions, sulfur removal up to 99.2% or even higher than that using Dawson/AC composite as catalyst in ODS can be achieved.
道森杂多金属氧酸盐/活性炭复合材料的合成及其氧化脱除二苯并噻吩的催化性能评价
化石燃料中含硫化合物的存在被认为是硫氧化物的主要来源。氧化脱硫(ODS)是一种很有前途的脱除化石燃料中含硫化合物的方法。近年来,多金属氧酸盐(pom)作为一种绿色催化剂,因其在ODS中的高效应用而备受关注。本研究合成了活性炭负载的道森型杂多金属氧酸盐复合材料,并对其作为含二苯并噻吩模型燃料氧化脱硫的新型催化剂进行了评价。采用FTIR、XRD、SEM对制备的Dawson/AC催化剂进行了分析。为了优化以Dawson/AC为催化剂的ODS的操作条件,对温度、催化剂用量和氧化剂用量三个条件进行了研究。在优化条件下,ODS中硫的去除率可达99.2%,甚至高于使用Dawson/AC复合材料作为催化剂的去除率。
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