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Sulfur Removal from Low-Sulfur Gasoline and Diesel Fuel by Metal-Organic Frameworks

机译:金属有机框架去除低硫汽油和柴油中的硫

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Several materials in the class of metal-organic frameworks (MOF) were investigated to determine their sorption characteristics for sulfur compounds from fuels. The materials were tested using different model oils and common fuels such as low-sulfur gasoline or diesel fuel at room temperature and ambient pressure. Thiophene and tetrahydrothiophene (THT) were chosen as model substances. Total-sulfur concentrations in the model oils ranged from 30 mg/kg (S from thiophene) to 9 mg/kg (S from tetrahydrothiophene) as determined by elementary analysis. Initial sulfur contents of 8 mg/kg and 10 mg/kg were identified for low-sulfur gasoline and for diesel fuel, respectively, by analysis of the common liquid fuels. Most of the MOF materials examined were not suitable for use as sulfur adsorbers. However, a high efficiency for sulfur removal from fuels and model oils was noticed for a special copper-containing MOF (copper benzene-1,3,5-tri-carboxylate, Cu-BTC-MOF). By use of this material, 78 wt % of the sulfur content was removed from thiophene containing model oils and an even higher decrease of up to 86 wt % was obtained for THT-based model oils. Moreover, the sulfur content of low-sulfur gasoline was reduced to 6.5 mg/kg, which represented a decrease of more than 22 %. The sulfur level in diesel fuel was reduced by an extent of 13 wt%. Time-resolved measurements demonstrated that the sul-fur-sorption mainly occurs in the first 60 min after contact with the adsorbent, so that the total time span of the desulfurization process can be limited to 1 h. Therefore, this material seems to be highly suitable for sulfur reduction in commercial fuels in order to meet regulatory requirements and demands for automotive exhaust catalysis-systems or exhaust gas sensors.
机译:研究了金属有机骨架(MOF)类中的几种材料,以确定它们对燃料中含硫化合物的吸附特性。在室温和环境压力下,使用不同模型的油和普通燃料(例如低硫汽油或柴油燃料)对材料进行了测试。选择噻吩和四氢噻吩(THT)作为模型物质。通过元素分析确定,模型油中的总硫浓度范围为30 mg / kg(来自噻吩的S)至9mg / kg(来自四氢噻吩的S)。通过分析普通液体燃料,分别确定低硫汽油和柴油的初始硫含量分别为8 mg / kg和10 mg / kg。所检查的大多数MOF材料都不适合用作硫吸附剂。但是,对于一种特殊的含铜MOF(铜-1,3,5-三羧酸铜,Cu-BTC-MOF),注意到从燃料和模型油中去除硫的效率很高。通过使用这种材料,从含噻吩的模型油中除去了78 wt%的硫含量,对于基于THT的模型油,甚至可以得到高达86 wt%的更高降低量。此外,低硫汽油的硫含量降至6.5 mg / kg,降幅超过22%。柴油中的硫含量降低了13 wt%。时间分辨的测量结果表明,sul-fur吸附主要发生在与吸附剂接触后的前60分钟,因此脱硫过程的总时间跨度可以限制为1 h。因此,该材料似乎非常适合于商业燃料中的硫还原,以满足汽车排气催化系统或排气传感器的法规要求和要求。

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