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首页> 外文期刊>Materials science forum >Development of Sodium Hydroxide-Activated Metakaolin with Nanocarbon Materials as Synthetic Ceramic Proppants
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Development of Sodium Hydroxide-Activated Metakaolin with Nanocarbon Materials as Synthetic Ceramic Proppants

机译:纳米碳材料作为合成陶瓷支撑剂的氢氧化钠活化偏高岭土的研制

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摘要

The use of proppants in hydraulic fracturing has significantly grown worldwide in recent years. Discoveries of large unconventional reservoirs in the north of Brazil have collaborated to give it the 10supth/sup position among countries with the world's largest shale reserves. Nowadays, studies on nanomaterials that are used as additives in proppants are the focus of North America's companies and universities in order to develop either proppants that can suffer mechanical and chemical changes inside the reservoir or that enable their traceability and direction. This paper presents a study on synthesis and characterization of metakaolin’s based ceramic proppants incorporating different types of nanocarbon materials. The method adopted was based on use of high intensive mixing of raw material (metakaolin) granulated with alkaline water solution of dispersed carbon nanomaterials. The SEM analysis testify the carbon nanomaterials dispersion on proppant bulk structure. Mechanical tests (crush resistance or K-value) indicated that metakaolin based proppants reached similar characteristics of white sand natural proppants.
机译:近年来,在全球范围内,水力压裂中支撑剂的使用已大大增加。巴西北部大型非常规油藏的发现已经合作,使其在全球页岩储量最大的国家中排名第十。如今,有关在支撑剂中用作添加剂的纳米材料的研究已成为北美公司和大学的重点,目的是开发可能在储层内部发生机械和化学变化或使其可追溯和可定向的支撑剂。本文提出了一种合成和表征偏高岭土基陶瓷支撑剂的合成方法,该支撑剂结合了不同类型的纳米碳材料。所采用的方法是基于使用分散碳纳米材料的碱性水溶液制粒的原料(偏高岭土)的高强度混合。 SEM分析证明了碳纳米材料在支撑剂本体结构上的分散性。力学性能(抗压强度或K值)表明,偏高岭土基支撑剂的性能与白砂天然支撑剂相似。

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