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Effect of bio-based flow improver on the microscopic and low-temperature flow properties of waxy crude oil

机译:生物基流动改进对糯原油微观和低温流动性能的影响

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Wax formation creates flow assurance problems in the production and transportation of waxy crude oil. Flow improvers are added to waxy crude in order to reduce handling cost. Bio-based flow improvers derived from cheap renewable resources are attractive as cost-effective, eco-friendly alternatives to the conventional additives. Natural cashew nut shell liquid extracted from waste biomass (Anacardium occidentale?shells) was derivatized and applied as flow improver for waxy crude oil. Effect of the additive on wax formation in crude oil was studied by cross-polarized microscopy, while the change in oil flow properties was evaluated using a rotational coaxial cylinder viscometer. Micrographs of the waxy crude were processed and analyzed with image J software. The microscopic properties of the wax crystals were characterized using Feret diameter, crystal area, aspect ratio, circularity, solidity and boundary fractal dimension. The pour point of doped crude oil was depressed by ??18?°C and the wax area fraction reduced by 40% due to wax inhibitive effect of the additive. The presence of the additive resulted in evolution of smaller, rounder and more regular wax crystals with smoother and more even surfaces indicated by reduction in the Feret diameter, aspect ratio and boundary fractal dimension of wax crystals in doped oil, and an increase in crystal circularity and solidity. The shear stress and viscosity of doped oil were reduced by 86.8% and 85.0%, respectively. The flow improvement effect of the CNSL derivative is linked to its effect on morphology and microstructure of wax crystals in the crude oil.
机译:蜡形成在蜡质原油的生产和运输中产生了流动保证问题。流动改进剂被添加到蜡质原油中,以减少处理成本。来自廉价可再生资源的生物的流程改进剂是常规添加剂的具有成本效益,生态友好的替代品具有吸引力。从废物生物量提取的天然腰果壳液体(AnaCardium Occidentale?壳)衍生化并用作蜡质原油的流动改进剂。通过交叉偏振显微镜研究了添加剂对原油中蜡形成的影响,同时使用旋转同轴气缸粘度计评估油流动性能的变化。用Image J软件处理和分析蜡质原油的显微照片。使用火炉直径,晶体面积,纵横比,圆形度,稳定度和边界分形尺寸表征蜡晶的微观性质。由于添加剂的蜡抑制效果,浸润的原油的倾吐点被抑制了18℃,并且蜡面积分数减少了40%。添加剂的存在导致较小,圆角和更常规的蜡晶体的进化,其具有更平滑的诸如掺杂油中的蜡晶体的蜡晶的纵横直径,纵横比和边界分形尺寸表示的更平滑和更均匀的表面,以及晶体圆形的增加和坚固。掺杂油的剪切应力和粘度分别降低了86.8%和85.0%。 CNSL衍生物的流动改善效果与其对原油中蜡晶体形态和微观结构的影响。

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