Yan Feng, Huang Ziming, Li Qifu, Xu Shengbin, Nie Chaofei, Xia Xue, Yang Fei
PipeChina Research Institute of Science and Technology, Tianjin 300450, PR China.
College of Pipeline and Civil Engineering, China University of Petroleum, Qingdao, Shandong 266580, PR China.
ACS Omega. 2024 Jul 1;9(28):30873-30883. doi: 10.1021/acsomega.4c03728. eCollection 2024 Jul 16.
Polymer/inorganic nanocomposite pour point depressant (PPD) is a research hotspot in the field of waxy crude oil pipelining. However, the inorganic nanoparticles need to be organically modified to improve their organic compatibility, and the inorganic nanoparticles are harmful to crude oil refining. In this work, organic PSMS with an average size of 1.4 μm was first synthesized by dispersion polymerization. Then, a new type of EVA/PSMS composite PPD was prepared by melt blending. The effects of the PSMS, EVA PPD, and composite PPD on the pour point, rheological properties, and wax precipitating properties of a specific waxy crude oil were investigated. It was found that adding 50-200 ppm of PSMS alone slightly improves the crude oil rheology through a spatial hindrance effect, while adding 20 ppm of EVA PPD greatly improves the crude oil rheology by modifying the wax crystal morphology. Compared with EVA PPD, adding 20 ppm composite PPD improves the crude oil rheology further, and the rheological improving ability first enhances and then weakens with increasing the PSMS content in the composite PPD (0-10 wt %). At the PSMS content in the composite PPD 5 wt %, the EVA/PSMS 5% composite PPD makes the wax crystal aggregates more compact, thus showing the strongest rheological improving ability. The EVA molecules could adsorb on the PSMS and form the composite particles, which further regulate the wax crystal morphology and then improve the crude oil rheology further.
聚合物/无机纳米复合降凝剂(PPD)是含蜡原油管道输送领域的研究热点。然而,无机纳米粒子需要进行有机改性以提高其与有机物的相容性,并且无机纳米粒子对原油炼制有害。在本工作中,首先通过分散聚合合成了平均粒径为1.4μm的有机PSMS。然后,通过熔融共混制备了一种新型的EVA/PSMS复合PPD。研究了PSMS、EVA PPD和复合PPD对某特定含蜡原油的凝点、流变性能和析蜡性能的影响。结果发现,单独添加50 - 200 ppm的PSMS通过空间位阻效应略微改善了原油的流变性能,而添加20 ppm的EVA PPD通过改变蜡晶形态极大地改善了原油流变性能。与EVA PPD相比,添加20 ppm的复合PPD能进一步改善原油流变性能,且流变性能改善能力随着复合PPD中PSMS含量(0 - 10 wt%)的增加先增强后减弱。在复合PPD中PSMS含量为5 wt%时,EVA/PSMS 5%复合PPD使蜡晶聚集体更加致密,从而表现出最强的流变性能改善能力。EVA分子能够吸附在PSMS上形成复合粒子,进而进一步调控蜡晶形态,从而进一步改善原油流变性能。