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Laboratory Study of Environmentally Friendly Drilling Fluid Additives to be used a Thinner in Water-Based Muds

机译:在水性泥浆中使用稀释剂的环境友好钻井液添加剂的实验室研究

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The use of conventional chemical additives to control drilling mud specifications causes serious health, safety, and environmental side effects. To mitigate these lasting hazards, an economic multifunctional bioenhancers should be exploited as additives in place of the traditional materials to achieve the desired drilling mud properties. Using a bioenhancer is not only safer for the environment, but it poses no risk to drilling personnel and is more cost-efficient than conventional methods. In this work, two concentrations of is Palm Tree Leave Powder (PTLP) were added to the base mud and drilling fluid properties were measured. The pH test demonstrated PTLP’s ability to minimize alkalinity. At 1.5% (11 gm) PTLP, the pH was decreased by 21%, while 3% (22 gm) PTLP showed a reduction of 28%. A reduction in seepage loss (cc/30min) of 26% and 32% was also observed, respectively, when comparing it to the reference fluid. Simultaneous improvement of the mud cake was seen over the reference fluid, signifying PTLP could also substitute fluid loss control agents. The plastic viscosity (PV) of the reference fluid was insignificantly affected by the introduction 1.5% (11gm) PTLP. However, when the concentration of PTLP was increased to 3% (22 gm) a tangible increase in PV was seen due to the inefficient grinding of the palm tree leaves (PTL) and irregular dispersal of particle sizes. To mitigate this, a more effective form of grinding for PTL is needed as well as a sieve analysis to ensure equal distribution of particle sizes. The second component of viscosity, yield point (YP), was drastically reduced by 59% at both 1.5% (11 gm) and 3% (22 gm) as compared to the reference fluid. Additionally, initial and final gel strengths were significantly reduced at both concentrations. These results are an indicator that PTLP can be a viable option as a thinning material for water-based mud. Considering the previously stated results, PTLP can be a feasible replacement or at least supportive material for conventional pH reducers, filtration loss control agents, and viscosity thinners. This biodegradable drilling mud additive shows great potential and is a practical option to replace or at least support toxic chemicals traditionally used such as lignosulphonate, chrome-lignite, and Resinex. This work outlines a practical guide for reducing drilling fluid costs as well as the impact on drilling personnel and the environment.
机译:使用常规化学添加剂来控制钻井泥浆规格会导致严重的健康,安全和环境副作用。为了减轻这些持久的危险,经济多功能生物激发器应被利用为添加剂代替传统材料以实现所需的钻井泥浆性能。使用生物汉语不仅适合环境,而且对钻探人员没有风险,并且比传统方法更具成本效益。在这项工作中,将两种浓度为棕榈树留下粉末(PTLP)加入到基础泥浆中,并测量钻井液性质。 pH测试证明了PTLP最小化碱度的能力。在1.5%(11克)PTLP,pH值下降21%,而3%(22克)PTLP表现为28%。在将其与参考流体相比,还分别观察到26%和32%的渗流损失(CC / 30min)的降低。在参考流体上看到泥饼的同时改善,意味着PTLP也可以替代流体损失控制剂。参考流体的塑料粘度(PV)受引入1.5%(11gm)PTLP的影响很大。然而,当PTLP的浓度增加到3%(22克)时,由于棕榈树叶(PTL)的低效研磨和颗粒尺寸的不规则分散,因此可以看到PV的有形增加。为了缓解这一点,需要一种更有效的PTL研磨形式,以及筛分分析,以确保粒度的平等分布。与参考流体相比,粘度屈服点(yp)的第二组分在1.5%(11克)和3%(22克)下大幅下降59%。另外,初始和最终凝胶强度在两种浓度下显着降低。这些结果是PTLP可以是作为水性泥浆的稀释材料的可行选择。考虑到先前陈述的结果,PTLP可以是可行的替代物或至少用于常规pH减速剂,过滤丧失控制剂和粘度稀释剂的支持材料。这种可生物降解的钻井泥浆添加剂表现出极大的潜力,是替代或至少支持传统上使用的有毒化学品如木质素硫酸盐,铬酸盐和重构X的实际选择。这项工作概述了减少钻井液成本以及对钻井人员和环境的影响的实用指南。

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