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用于处理油田复合驱含聚合物含油污水的磁性超支化分子材料

Magnetic Hyperbranched Molecular Materials for Treatment of Oily Sewage Containing Polymer in Oilfield Compound Flooding.

作者信息

Qiao Sanyuan, Liu Qingwang, Fan Zhenzhong, Tong Qilei, Cai Li, Fu Yuanfeng

机构信息

Petroleum Engineering, Northeast Petroleum University, Daqing, China.

出版信息

Front Chem. 2022 May 18;10:865832. doi: 10.3389/fchem.2022.865832. eCollection 2022.

Abstract

With the continuous improvement in oilfield development and the application of tertiary oil recovery technology, the water content of oilfield-produced fluids has gradually increased, and a large number of oilfield sewage with complex components has also been produced after oil-water separation, and effective treatment is urgently needed. ASP flooding sewage contains alkali, various surfactants, polymers, microemulsion oil droplets, and solid impurities, which are difficult to be effectively treated by traditional water treatment agents and methods. In this study, aminopropyl triethoxysilane (APTES) was used to modify the nano-FeO coated with tetraethyl silicate (TEOS). The product was used as the ferromagnetic nano-core for the iterative reaction of Michael addition and ester amidation to synthesize a magnetic hyperbranched polyamide amine, and its performance in the treatment of ASP flooding wastewater was evaluated experimentally. For the preparation of APTES-modified FeO@SiO (FOSN) product, TEOS was coated over FeO in an ethanol aqueous solution environment and then APTES was added dropwise. The first-generation branched product (1-FSMN) was obtained by the reaction of FOSN and methyl acrylate graft product (FOSN-M) with ethylenediamine, and the highest yield was 93.7%. The highest yield of the second-generation branched product (2-FSMN) was 91.6%. In this study, a composite flooding wastewater sample from a block in the Bohai oilfield was taken. The suspended solids content was 143 mg/L, the oil content was 921.09 mg/L, the turbidity was 135 NTU, and the zeta potential was -47 mV. The third-generation hyperbranched polymer (3-FSMN) and its quaternary ammonium salt (3-FSMN-Q) performed best in the appropriate dosage range, with the highest oil removal rate of 97%, suspended solid removal rate of 90.3%, turbidity reduction rate of 86.6% and zeta potential reduction rate of 88%. For 3-FSMN and its quaternary ammonium salt, the gravity/magnetic PAC compound treatment experiment was carried out. In the settlement time of only 5 min, 3-FSMN/PAC and 3-FSMN-Q/PAC can achieve the maximum oil removal rate of 87.1% and suspended solids removal rate of 87.3% for polymer containing wastewater from ASP flooding, and 86.3 and 86.0% for 120 mg/L. Its treatment capacity was much better than that of common treatment agent combination (CPAM/PAC).

摘要

随着油田开发的不断深入以及三次采油技术的应用,油田产出液的含水率逐渐升高,油水分离后还产生了大量成分复杂的油田污水,急需进行有效处理。三元复合驱(ASP)污水中含有碱、各类表面活性剂、聚合物、微乳液油滴和固体杂质,传统的水处理剂和方法难以对其进行有效处理。本研究采用氨丙基三乙氧基硅烷(APTES)对硅酸四乙酯(TEOS)包覆的纳米FeO进行改性。将该产物用作迈克尔加成和酯酰胺化迭代反应的铁磁纳米核,合成了一种磁性超支化聚酰胺胺,并对其处理ASP驱油废水的性能进行了实验评估。对于APTES改性的FeO@SiO(FOSN)产物的制备,在乙醇水溶液环境中,将TEOS包覆在FeO上,然后滴加APTES。FOSN与丙烯酸甲酯接枝产物(FOSN-M)和乙二胺反应得到第一代支化产物(1-FSMN),最高产率为93.7%。第二代支化产物(2-FSMN)的最高产率为91.6%。本研究采集了渤海某油田区块的复合驱油废水样品。其悬浮物含量为143mg/L,含油量为921.09mg/L,浊度为135NTU,ζ电位为-47mV。第三代超支化聚合物(3-FSMN)及其季铵盐(3-FSMN-Q)在合适的投加量范围内表现最佳,最高除油率为97%,悬浮物去除率为90.3%,浊度降低率为86.6%,ζ电位降低率为88%。对于3-FSMN及其季铵盐,进行了重力/磁性聚合氯化铝(PAC)复合处理实验。在仅5min的沉降时间内,3-FSMN/PAC和3-FSMN-Q/PAC对ASP驱油含聚合物废水的最大除油率分别可达87.1%和悬浮物去除率87.3%,对120mg/L的废水,除油率分别为86.3%和86.0%。其处理能力远优于普通处理剂组合(阳离子聚丙烯酰胺/ PAC)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/349e/9157815/3de0674895ac/fchem-10-865832-g001.jpg

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