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首页> 外文期刊>Journal of porphyrins and phthalocyanines >Preparative-scale purification of petroleum vanadyl porphyrins by sulfuric acid loaded macroporous silica
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Preparative-scale purification of petroleum vanadyl porphyrins by sulfuric acid loaded macroporous silica

机译:硫酸加载大孔二氧化硅制备甲钒丙氨酸的制备级纯化

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The practical potential of petroleum porphyrins still remains underestimated because of the absence of satisfactory simple and effective methods for their isolation in pure form. Our work aims to provide a solution for this problem via use of sulfuric acid loaded macroporous silica as an unprecedentedly effective adsorbent for deep petroporphyrin purification. Using chromatographic columns of reduced volume (4 cm 3 ), a series of experiments on optimization of chromatographic conditions for silica-based sulfocationite were carried out. As a source of petroleum porphyrins, the primary concentrates of vanadyl porphyrins isolated on silica gel column from DMF extracts of heavy oil asphaltenes have been used. UV-vis and MALDI-TOF mass-spectrometric methods were employed for vanadyl porphyrin analysis and identification. We established that in a narrow range of water and acid content equal to similar to 25 and similar to 15 wt.%, respectively, silica-based sulfocationite becomes able to retain a bulk of polar petroleum components with exception of porphyrins, which thus leave the column first. A preparative-scale purification of vanadyl porphyrins by the sulfocationite-based method was performed for the first time and 18.5 mg of excellently pure product were obtained. Considering the extremely simple preparation and excellent purification performance of our novel sulfocationite, it could greatly facilitate access to high-purity petroleum porphyrins.
机译:由于在纯形式中缺乏令人满意的简单和有效方法,石油卟啉的实际潜力仍然被低估了。我们的工作旨在通过使用硫酸负载的大孔二氧化硅作为对深层吡喃蛋白纯化的前所未有的有效吸附剂来提供解决该问题的解决方案。采用减少体积(4cm 3)的色谱柱,进行了一系列关于优化基于二氧化硅基硫俘肽的色谱条件的实验。作为石油卟啉的来源,已经使用了从重油沥青质的DMF提取物上分离的硅胶柱上分离的甲酰卟啉的初级浓缩物。使用UV-Vis和MALDI-TOF质谱法用于钒酰卟啉分析和鉴定。我们在狭窄的水和酸含量等于与25等于25且相似的酸含量分别,分别,基于二氧化硅的硫俘脉能够保留大部分极性石油成分,其中卟啉除外第一个列。通过基于硫可素的方法进行钒基卟啉的制备级纯化,首次进行18.5mg优良的纯产物。考虑到我们的新型硫型技术的非常简单的制备和优异的净化性能,它可以极大地促进高纯度石油卟啉。

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