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首页> 外文期刊>Fresenius environmental bulletin >EXPERIMENTAL STUDY ON THE EFFECT OF DRILLING FLUID ADDITIVES ON DISPERSION PROPERTIES OF TYPICAL NANOMATERIALS
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EXPERIMENTAL STUDY ON THE EFFECT OF DRILLING FLUID ADDITIVES ON DISPERSION PROPERTIES OF TYPICAL NANOMATERIALS

机译:钻井液添加剂对典型纳米材料分散性能影响的实验研究

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摘要

Main additives for drilling fluids: inhibitors, fluid loss additives, lubricants, tackifiers, viscosity reducers, etc. Due to the different components and mechanism of action, micro-nano materials should be investigated before and after the system is added to the system. The premise of the micro-nano-block - ing agent in the stability of the particle size in the system is that it does not react with the additive in the system. In this paper, four kinds of additives, such as inhibitor, fluid loss additive, tackifier and viscosity reducer, are studied. The effect of nanoblocking material particle size, such as nano-calcium carbonate, silica and emulsified paraffin was analyzed. Through laboratory experiments, it is shown that the addition of drilling fluid additives to the drilling fluid will affect the particle size of the nanomaterial, thus affecting its dispersion performance. Different doses and different types of additives have different effects on the particle size distribution of the nano-blocking agent due to their different structures. Analysis of the experimental data shows that when the additive has little effect on the particle size of the nano-blocking agent, the influence on the sedimentation stability is small, and the nano-material does not have a large amount of aggregation and sedimentation. This provides technical support for the selection of treatment solutions for drilling fluid systems used in shale nanoscale plugging.
机译:钻井液的主要添加剂:抑制剂,失水添加剂,润滑剂,增粘剂,降粘剂等。由于组分和作用机理的不同,在将系统添加至系统之前和之后都应研究微纳材料。微纳米阻滞剂在系统中保持颗粒大小的前提是它不会与系统中的添加剂发生反应。本文研究了四种添加剂,如抑制剂,失水添加剂,增粘剂和降粘剂。分析了纳米级阻隔材料粒径(如纳米碳酸钙,二氧化硅和乳化石蜡)的影响。通过实验室实验表明,向钻井液中添加钻井液添加剂将影响纳米材料的粒径,从而影响其分散性能。不同剂量和不同类型的添加剂由于其不同的结构而对纳米封闭剂的粒度分布具有不同的影响。对实验数据的分析表明,当添加剂对纳米封闭剂的粒径影响很小时,对沉降稳定性的影响很小,并且纳米材料没有大量的聚集和沉降。这为选择用于页岩纳米级堵漏的钻井液系统的处理解决方案提供了技术支持。

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