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首页> 外文期刊>Chemicke Zvesti >Hydrovisbreaking of vacuum residue from Russian Export Blend: influence of brown coal, light cycle oil, or naphtha addition
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Hydrovisbreaking of vacuum residue from Russian Export Blend: influence of brown coal, light cycle oil, or naphtha addition

机译:俄罗斯出口混合物中减压渣油的加氢裂化:褐煤,轻循环油或石脑油添加的影响

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摘要

Demand for high-value petroleum products is increasing and crude oils and their distillation products are becoming heavier. The thermal cracking of a vacuum residue (VR) from REB (Russian Export Blend) crude oil was carried out in an autoclave. LCO (light cycle oil), naphtha, and brown coal (BC) were added with the aim of studying their effect on the final products composition. The elemental analysis (%C, %N, %H, %S) was performed and dynamic viscosity, density, GC of gases ("Refinery Gas Analysis"), solubility in hexane and toluene, and simulated distillation were examined in raw materials, gaseous, and liquid products. As anticipated, due to its high aromatics content, the addition of LCO proved the best option, obtaining the highest yield of lighter liquids. The naphtha addition resulted in a slight increment of heavier products in the gaseous phase and higher yields to solids. The literature does not contain any extensive studies of the addition of BC to VR in the hydrovisbreaking process. The addition of BC resulted in an increment in the yield of the gaseous product and assumed the highest relative total consumption of hydrogen during the reaction. (C) 2015 Institute of Chemistry, Slovak Academy of Sciences
机译:对高价值石油产品的需求正在增加,原油及其蒸馏产品变得越来越重。来自REB(俄罗斯出口共混物)原油的减压渣油(VR)的热裂解在高压釜中进行。添加LCO(轻循环油),石脑油和褐煤(BC)的目的是研究它们对最终产品组成的影响。进行了元素分析(%C,%N,%H,%S),并检查了原料中的动态粘度,密度,气体GC(“精炼气体分析”),在己烷和甲苯中的溶解度以及模拟蒸馏,气态和液态产品。正如预期的那样,由于其芳族化合物含量高,LCO的添加被证明是最佳选择,轻质液体的收率最高。石脑油的添加导致气相中较重产物的少量增加和固体的较高产率。文献没有对在减水裂化过程中将VR添加BC进行任何广泛的研究。 BC的加入导致气态产物产率的增加,并假定反应期间氢的相对总消耗量最高。 (C)2015年,斯洛伐克科学院化学研究所

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