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超声处理和供氢剂对残余油特性影响的实验研究。

Experimental studies on the effect of ultrasonic treatment and hydrogen donors on residual oil characteristics.

机构信息

School of Mechatronics Engineering, Harbin Institute of Technology, Harbin 150001, China.

China University of Petroleum (Beijing), Beijing 102249, China; CNOOC EnerTech-Drilling & Production Co., Tianjin 300452, China.

出版信息

Ultrason Sonochem. 2020 Dec;69:105266. doi: 10.1016/j.ultsonch.2020.105266. Epub 2020 Jul 21.

Abstract

Residual oil, the residue after the distillation of crude oil, imposes deleterious effects on refinery due to its high viscosity and asphaltene content. In this context, ultrasonic technology has been widely applied in refining processes given its high efficiency and minimal environmental impacts. To guide the selection of operation parameters, in this work, we probed the effect of treatment duration, power, and hydrogen donor on the characteristics of residual oil under ultrasonic treatments. Underlying mechanisms of ultrasonic treatments, in the absence and presence of hydrogen donors, were verified through systematically analyzing viscosity, component conversion, molecular weight, hydrogen distribution, and functional groups of residual oil. While viscosity reductions under low-power density treatment are caused by colloidal system disaggregation, high-power density treatment can bring in both chemical bond cleavage and colloidal system disaggregation. In addition, adding hydrogen donor can effectively prevent radical recombination, and thus increases the yield of saturate. These results provide fundamental understandings on the effects of ultrasonic treatments.

摘要

残余油是原油蒸馏后的残留物,由于其高粘度和沥青质含量,对炼油厂造成有害影响。在这种情况下,由于超声技术具有高效率和最小的环境影响,因此已在精炼过程中得到了广泛应用。为了指导操作参数的选择,在这项工作中,我们研究了处理时间、功率和供氢剂对超声处理下残余油特性的影响。通过系统分析残余油的粘度、组分转化、分子量、氢分布和官能团,验证了在不存在和存在供氢剂的情况下超声处理的潜在机制。在低功率密度处理下,粘度的降低是由于胶体体系的解聚引起的,而在高功率密度处理下,则可以同时发生化学键的断裂和胶体体系的解聚。此外,添加供氢剂可以有效地阻止自由基的重组,从而增加饱和物的产率。这些结果为超声处理的效果提供了基本的理解。

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