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Modified Starch as a Filter Controller in Water-Based Drilling Fluids

机译:改性淀粉作为水基钻井液中的过滤器控制器

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摘要

Herein, the effectiveness of an itaconic acid (IA) graft copolymer on native corn starch (NCS) as a filter control agent in fresh water-based drilling fluids (WBDFs) was evaluated. The copolymer (S-g-IA_APS) was synthesized by conventional radical dispersion polymerization using the redox initiation system (NH4)2S2O8/NaHSO3. The modification of the starches was verified by volumetry, Fourier transform infrared spectroscopy (FTIR), thermogravimetric analysis (TGA), and scanning electron microscopy (SEM). Then, three WBDFs were formulated in which only the added polymer (NCS, S-g-IA_APS, and a commercial starch (CPS)) was varied to control the fluid losses. The physico-chemical, rheological, and filtering properties of the formulated systems were evaluated in terms of density (ρ), pH, plastic viscosity (µp), apparent viscosity (µa), yield point (Yp), gel strength (Rg), and filtrated volume (VAPI). In order to evaluate the resistance to temperature and contaminants of the WBDFs, they were subjected to high pressure and high temperature filtering (VHPHT). The filter control agents were also subjected to aging and contamination with cement and salt. The S-g-IA_APS addition improved the filtering behavior at a high pressure and temperature by 38%.
机译:这里,评估淡水酸(NCS)在天然玉米淀粉(NCS)上作为淡水基钻井液(WBDF)中的过滤器控制剂的衣康酸(IA)接枝共聚物的有效性。通过使用氧化还原引发系统(NH 4)2S2O8 / NaHSO 3,通过常规自由基分散聚合来合成共聚物(S-G-IA_APs)。通过体积,傅里叶变换红外光谱(FTIR),热重分析(TGA)和扫描电子显微镜(SEM)验证淀粉的修饰。然后,制定了三种WBDF,其中仅改变添加的聚合物(NCS,S-G-IA_AP和商业淀粉(CPS))以控制流体损失。在密度(ρ),pH值,塑料粘度(μp),表观粘度(μA),屈服点(yp),凝胶强度(Rg)方面评估配制系统的物理化学,流变学和过滤性能。和过滤的体积(VAPI)。为了评估WBDFS的温度和污染物的耐受性,对它们进行高压和高温过滤(VHFH)。过滤器对照剂也经过衰老和水泥和盐的污染。 S-G-IA_APS添加在高压和温度下提高过滤行为38%。

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