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Experimental investigation of environmentally friendly drilling fluid additives (mandarin peels powder) to substitute the conventional chemicals used in water-based drilling fluid

机译:环境型钻井液添加剂(普通话皮粉)代替水性钻井液中使用的常规化学品的实验研究

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The non-biodegradable additives used in controlling drilling fluid properties cause harm to the environment and personal safety. Thus, there is a need for alternative drilling fluid additives to reduce the amount of non-biodegradable waste disposed to the environment. This work investigates the potential of using mandarin peels powder (MPP), a food waste product, as a new environmentally friendly drilling fluid additive. A complete set of tests were conducted to recognize the impact of MPP on the drilling fluid properties. The results of MPP were compared to low viscosity polyanionic cellulose (PAC-LV), commonly used chemical additive for the drilling fluid. The results showed that MPP reduced the alkalinity by 20–32% and modified the rheological properties (plastic viscosity, yield point, and gel strength) of the drilling fluid. The fluid loss decreased by 44–68% at concentrations of MPP as less as 1–4%, and filter cake was enhanced as well when comparing to the reference mud. In addition, MPP had a negligible to minor impact on mud weight, and this effect was resulted due to foaming issues. Other properties such as salinity, calcium content, and resistivity were negligibly affected by MPP. This makes MPP an effective material to be used as pH reducer, a viscosity modifier, and an excellent fluid loss agent. This work also provides a practical guide for minimizing the cost of the drilling fluid through economic, environmental, and safety considerations, by comparing MPP with PAC-LV.
机译:用于控制钻井液性质的非生物降解添加剂导致环境和人身安全造成危害。因此,需要替代的钻井液添加剂,以减少设置在环境中的非生物降解废物的量。这项工作调查了使用普通话皮粉(MPP),食品废物作为一种新的环保钻井液添加剂的潜力。进行一组完整的测试,以识别MPP对钻井液性质的影响。将MPP的结果与低粘度粘度纤维素(PAC-LV)进行比较,常用的钻井液中的化学添加剂。结果表明,MPP将碱度降低20-32%并改性钻井液的流变性(塑料粘度,屈服点和凝胶强度)。在MPP的浓度下,流体损失降低了44-68%,小于1-4%,并且与参考泥浆相比,滤饼也得到增强。此外,MPP对泥浆重量的轻微影响忽略不计,因此由于发泡问题导致这种效果导致了这种效果。其他特性如盐度,钙含量和电阻率受到MPP的影响。这使得MPP是用作pH减速器的有效材料,粘度改性剂和优异的流体损失剂。这项工作还提供了一种实用的指南,可以通过将MPP与PAC-LV进行比较来最大限度地减少经济,环境和安全考虑因素。

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