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Synthesis of novel polymer poly(glycidyl methacrylate) incorporated with tetranitrofluorenone for selective removal of neutral nitrogen species from bitumen-derived heavy gas oil

机译:新型聚合物聚甲基丙烯酸缩水甘油酯与四硝基芴酮的合成,用于从沥青衍生的重质汽油中选择性去除中性氮

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Over the last two decades, numerous studies have been undertaken in identifying the inhibiting and deactivating effects of basic nitrogen compounds present in heavy gas oil (HGO) on catalyst active sites; however, limited information is available on the presence and effect of neutral nitrogen species, which have shown to exhibit both inhibitory and deactivating effects comparable to those of the basic species. A novel pretreatment process employing the heterogeneously cross-linked macroporous polymer poly(glycidyl methacrylate) as the hydrophilic support coupled with organic compound tetranitrofluorenone has been synthesized in a four stage procedure for the selective removal of neutral nitrogen heterocyclic compounds from heavy gas oil using charge transfer complexes. Scanning electron microscopy (SEM), low temperature N2 adsorption-desorption (BET), CHNOS elemental analysis, Fourier transform infrared spectroscopy (FT-IR), epoxy content titration, and thermo gravimetry/differential thermal analyzer (TG/DTA) were employed for determining the optimum parameters during the synthesis of each stage. The optimized polymer has shown promising results with successful removal of up to 6.7% of the nitrogen species in a single contact using approximately 15 wt.% of the polymer with respect to HGO, while having little to no influence on the sulfur species. The reusability of the polymer has also shown consistency in the selective removal of nitrogen compounds, with continuous removal rates in the range of 6.7%.
机译:在过去的二十年中,已经进行了许多研究来确定重瓦斯油(HGO)中存在的碱性氮化合物对催化剂活性位点的抑制和失活作用。但是,关于中性氮物质的存在和作用的信息有限,已显示出与碱性物质相当的抑制和失活作用。以四步法合成了一种新的预处理方法,该方法采用非均相交联的大孔聚合物聚甲基丙烯酸缩水甘油酯作为亲水性载体,并与有机化合物四硝基芴酮偶联,从而通过电荷转移从重瓦斯油中选择性去除中性氮杂环化合物。复合体。使用扫描电子显微镜(SEM),低温N2吸附-脱附(BET),CHNOS元素分析,傅里叶变换红外光谱(FT-IR),环氧含量滴定和热重/差示热分析仪(TG / DTA)在每个阶段的合成过程中确定最佳参数。优化的聚合物显示出令人鼓舞的结果,使用相对于HGO约15 wt%的聚合物,一次接触即可成功去除多达6.7%的氮,而对硫的影响很小甚至没有影响。聚合物的可重复使用性在选择性去除氮化合物方面也显示出一致性,连续去除率在6.7%的范围内。

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