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Isolation and characterization of sulfur-containing compounds by positive-ion electrospray ionization and online HPLC/Atmospheric pressure chemical ionization coupled to Orbitrap mass spectrometry

机译:通过正离子电喷雾电离和在线HPLC /大气压化学电离的含硫化合物的分离和表征偶联至围绕左侧光谱法

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摘要

Extraction and fractionation of sulfur-containing compounds from vacuum gas oil were carried out by using non-reactive methods such as ligand exchange chromatography (LEC) on solid-phase extraction cartridges and a molecularly imprinted polymer (MIP). All fractions obtained by these methods were methylated, and sulfur compounds (S1) were analyzed as methyl sulfonium ions [M + CH3](+) by positive-ion ESI Orbitrap mass spectrometry. LEC on strong cation exchange sorbents modified with Ag+ (SCX-Ag+) and Cu2+ (SCX-Cu2+) cations isolate sulfides and thiophenes through complexation of the sulfur atoms with the metal cations. In contrast, LEC on the stationary silica phase modified with Ag+ cations (Si-Ag+) was selective of sulfur species (S1) with higher DBE values near the planar limit. Interestingly, LEC/SCX-Cu2+ allowed the extraction of disulfides and other sulfur compound classes such as OS and OS2 detected as [M + H](+). Among LEC separations, the Si-Ag+ provides the largest number of molecular assignments (565) of sulfur species (S1) followed by SCX-Ag+ and SCX-Cu2+ with 463 and 408 formulae, respectively. On the other hand, a polymer with dibenzothiophene molecules imprinted afforded the highest number (820) of molecular formulae (CcHhS1) with a wider DBE similar to 1-20 and carbon number similar to 30-70 in comparison with the species (S1) eluted by LEC methods. A further separation by online HPCL/APCI (+) Orbitrap MS of the fractions obtained by SCX-Ag+ allows detecting sulfur compounds with DBE values up to 23. This contribution provides alternatives for the isolation and fractionation of sulfur-containing compounds that may be extended to heavy crude oil and asphaltenes.
机译:通过使用固相萃取盒(LEC)和分子印迹聚合物(MIP),通过使用非反应性方法(如配体交换色谱(LEC))进行含硫化合物的萃取和分馏。通过这些方法获得的所有级分是甲基化的,并通过正离子ESI嵌合质谱法分析硫化合物(S1)作为甲基锍离子[M + CH3](+)。用Ag +(SCX-Ag +)和Cu2 +(ScX-Cu2 +)阳离子改性的强阳离子交换吸附剂通过将硫原子与金属阳离子的络合络合来分离硫化物和硫化物。相比之下,用Ag +阳离子(Si-Ag +)改性的固定二氧化硅相的LEC选择硫物质(S1),具有较高的平面限值附近的DBE值。有趣的是,LEC / SCX-CU2 +允许提取二硫化物和其他硫化合物类,例如检测为[M + H](+)的OS和OS2。在LEC分离中,Si-Ag +分别提供硫种类的最大分子分配(565)(S1),然后分别具有463和408配方的SCX-Ag +和ScX-Cu2 +。另一方面,与物种相比(S1)相比,具有印记的二苯甲酸噻吩分子的聚合物,其被印记,得到最高数量(820)的分子式(CCHHS1),与物种(S1)相似的较长的DBE和类似于30-70的碳数(S1)通过LEC方法。通过SCX-AG获得的级分的在线HPCl / APCI(+)壁射肌的进一步分离+允许用DBE值检测硫化合物,最高可达23.该贡献为可以延长的含硫化合物的分离和分离提供替代方法重原油和沥青质。

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