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首页> 外文期刊>Journal of Applied Polymer Science >Comb-shaped copolymer as filtrate loss reducer for water-based drilling fluid
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Comb-shaped copolymer as filtrate loss reducer for water-based drilling fluid

机译:梳状共聚物作为水性钻井液的滤液减速剂

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摘要

A new comb-shaped copolymer was synthesized by free radical copolymerization of 2-acrylamide-2-methyl propane sulfonic acid, acrylamide, N-vinyl-2-pyrrolidone, and allyl polyoxyethylene ether (APEG) monomers. The copolymer was evaluated as a filtrate loss reducer in water-based drilling fluid at 180 degrees C environment, and found to work well without causing high viscosity effect. Composition of the copolymer was determined by Fourier transform infrared spectroscopy (FTIR), proton nuclear magnetic resonance spectroscopy, and gel permeation chromatography. FTIR, X-ray diffraction,, and environmental scanning electron microscopy characterizations were used to probe the filtrate loss mechanism of the comb-shaped copolymer. Thermogravimetry and differential scanning calorimetry results showed that thermal degradation of the copolymer is not obvious before 293.6 degrees C. The copolymer is found to be superior to its commercially available counterparts for controlling filtrate loss volume and maintaining a steady viscosity after 180 degrees C aging. Higher content of APEG in the copolymer helps maintain rheological properties of the drilling fluid after aging and reduces filtrate loss volume. The morphology of the copolymer in aqueous solution displays a comb-shaped 3D structure and shows clear adsorption onto clay particles. The working mechanism for copolymer is that anchoring groups bind the copolymer onto clay particles through different binding mechanisms, while colloidal suspension stability is achieved by steric hindrance and electrostatic repulsion, as well as through PEG segment intercalation into clay lamellae. The copolymer is able to cover and seal the microholes in the mud cake even at high temperature to reduce permeability. (C) 2017 Wiley Periodicals, Inc.
机译:通过2-丙烯酰胺-2-甲基丙烷磺酸,丙烯酰胺,N-乙烯基-2-吡咯烷酮和烯丙基聚氧乙烯醚(APEG)单体的自由基共聚合成了一种新的梳形共聚物。在180℃的环境下在水性钻井液中评价共聚物作为滤液损失减速器,并发现在不引起高粘度效应的情况下工作良好。通过傅立叶变换红外光谱(FTIR),质子核磁共振光谱和凝胶渗透色谱法测定共聚物的组成。 FTIR,X射线衍射,,和环境扫描电子显微镜表征用于探测梳形共聚物的滤液损失机理。热重算法和差示扫描量热法结果表明,在293.6℃之前,共聚物的热降解不明显。发现共聚物优于其市售对应物,用于控制滤液损失体积并在180摄氏度后保持稳定的粘度。共聚物中较高的APEG含量有助于在老化后保持钻井液的流变性质,并减少滤液损失体积。水溶液中共聚物的形态显示梳形3D结构,并显示出粘土颗粒上的清洁吸附。共聚物的工作机制是锚定基团通过不同的结合机制将共聚物与粘土颗粒结合,而胶体悬浮稳定性通过空间阻断和静电排斥,以及通过PEG段嵌入到粘土薄膜中实现。即使在高温下,共聚物也能够覆盖并密封微孔以降低渗透性。 (c)2017 Wiley期刊,Inc。

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