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Utilizing Food Waste Product (Date Tree Seeds) to Enhance the Filtration Characteristics in Water-Based Drilling Fluid System: A Comparative Study

机译:利用食品废品(日期树籽)来增强水性钻井液系统中的过滤特性:比较研究

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摘要

Practically, to regulate filtration characteristics of drilling fluid, non-biodegradable materials used commonly have a high cost with side effects on personnel safety and the environment. Hence, eco-friendly additives are needed as an alternative to replace or at least support the commonly used filtration control agents. This experimental investigation examines the possibility of using date tree seeds' powder (DTSP), as a new eco-friendly fluid loss agent. Under surface and sub-surface conditions (fresh and aged conditions), experiments were executed utilizing low-temperature and low-pressure (LTLP) and high-temperature and high-pressure (HTHP) American Petroleum Institute (API) filter press to comprehend the influence of DTSP on the seepage loss characteristics. The findings were compared with a commonly utilized chemical additive to regulate filtration characteristics of drilling fluid (low viscosity sodium carboxymethyl cellulose (CMC-LV)). Two concentrations of DTSP and CMC-LV were added separately to a reference fluid (RF) to understand the effect of concentration variations on filtration properties. The findings revealed that both DTSP and CMC-LV significantly improved the filtrate and the filter cake when comparing them with the RF under fresh and aged conditions. The findings for fresh conditions also showed that LTLP filtration measurements for CMC-LV additives had almost similar performance as DTSP additives, while HTHP filtration measurements exhibited that the two concentrations of DTSP additives were marginally better than those of CMC-LV additives. For aged conditions, CMC-LV additives were relatively more efficient than DTSP additives for LTLP filtration control experiments. However, DTSP additives were more efficient in improving the filtration characteristics as compared to CMC-LV additives for HTHP filtration control experiments. These results are in aid of shifting the oil and gas industry from using conventional harmful additives to using unconventional eco-friendly additives. This also helps in transforming unwanted food wastes into valuable commercial products, which can revolutionize the domestic and international industries and create new job opportunities, hence minimizing the total cost of drilling fluid and the wastes disposed to the environment.
机译:实际上,为了调节钻井液的过滤特性,使用的非生物降解材料通常具有高成本,对人员安全和环境的副作用。因此,需要生态友好的添加剂作为替代或至少支持常用的过滤控制剂的替代方案。该实验研究检查了使用日期树种子粉末(DTSP)的可能性,作为一种新的环保流体损失剂。在表面和亚表面条件(新鲜和老化条件)下,利用低温和低压(LTLP)和高温和高压(HTHP)美国石油研究所(API)滤波器进行实验,以理解DTSP对渗流损耗特性的影响。将研究结果与常用的化学添加剂进行比较,以调节钻井液的过滤特性(低粘度羧甲基纤维素(CMC-LV))。将两种浓度的DTSP和CMC-LV分别加入参考流体(RF),以了解浓度变化对过滤性质的影响。结果表明,当在新鲜和老化条件下将其与RF进行比较时,DTSP和CMC-LV均显着改善滤液和滤饼。新条件的研究结果还表明,CMC-LV添加剂的LTLP过滤测量与DTSP添加剂具有几乎相似的性能,而HTHP过滤测量表明,两种浓度的DTSP添加剂比CMC-LV添加剂略微好得多。对于老化条件,CMC-LV添加剂比LTLP过滤对照实验的DTSP添加剂相对较高。然而,与用于HTHP过滤对照实验的CMC-LV添加剂相比,DTSP添加剂在改善过滤特性方面更有效。这些结果有助于将石油和天然气工业转移使用常规的有害添加剂来使用非传统的生态友好的添加剂。这也有助于将不需要的食物废物转化为有价值的商业产品,这可以彻底改变国内和国际行业并创造新的就业机会,从而最大限度地减少钻井液的总成本和所处理环境的废物。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2020年第12期|123201.1-123201.9|共9页
  • 作者单位

    Department of Geosciences and Geological and Petroleum Engineering Missouri University of Science and Technology 1201 N. State Street Rolla MO 65409;

    Department of Geosciences and Geological and Petroleum Engineering Missouri University of Science and Technology 1201 N. State Street Rolla MO 65409;

    Department of Geosciences and Geological and Petroleum Engineering Missouri University of Science and Technology 1201 N. State Street Rolla MO 65409;

    Department of Geosciences and Geological and Petroleum Engineering Missouri University of Science and Technology 1201 N. State Street Rolla MO 65409;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biodegradable wastes; environmentally friendly additive; drilling fluid; filtration properties; petroleum engineering;

    机译:可生物降解的废物;环保添加剂;钻井液;过滤性质;石油工程师;
  • 入库时间 2022-08-18 21:17:43

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