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Development of metakaolin and geopolymer proppants with nanocarbon materials

机译:纳米碳材料的甲状腺素和地质聚合物支撑剂的研制

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摘要

From the first hydraulic fracturing in the 40's until nowadays, the techniques of each process step have evolved significantly. This study presents a new approach on the development of metakaolin (MK) and geopolymer based proppant with and without nanocarbon materials such as multi-walled carbon nanotubes and graphene oxide. For manufacturing the microspheres, the chosen method was intensive mixing of raw material with dispersed nanocarbons followed by sintering metakaolin and curing the geopolymer using an alkaline medium (NaOH). Compression mechanical tests, bulk density, turbidity, and K&S method analysis were made following API RP 19C standard. The sample containing 4.3 M NaOH to produce alkali-activated metakaolin sintered at 1300 °C for 2 h presented higher mechanical resistance generating 2.4% of fines at 3 K (3000 psi). The geopolymer samples showed higher crushing strength and lower bulk density when compared to the MK samples without heat treatment. Furthermore, reduced graphene was produced and incoiporated into activated MK. Morphology and presence of carbon nanostructures on the proppants were evaluated by scanning electron microscopy. Crushing test reached 3 K enabling it to be used as a ceramic synthetic proppant containing carbon nanomaterials.
机译:从40年代的第一种液压压裂到现在,每个过程步骤的技术显着发展。本研究提出了一种新方法,涉及甲状腺素(MK)和基于地质聚合物的支撑剂的新方法,含有纳米碳材料如多壁碳纳米管和石墨烯氧化物。为了制造微球,所选择的方法是用分散的纳米碳的原料混合,然后使用碱性介质(NaOH)烧结甲状腺素并固化地质聚合物。通过API RP标准进行压缩机械测试,堆积密度,浊度和K&S方法分析。含有4.3M NaOH的样品在1300℃下烧结的碱性活性的MetaKaolin 2小时呈现出较高的机械阻力,产生2.4%的3k(3000 psi)的细粒。与没有热处理的MK样品相比,地质聚合物样品显示出较高的破碎强度和更低的堆积密度。此外,将还原石墨烯生成并嵌入活化的MK中。通过扫描电子显微镜评估支撑剂上的碳纳米结构的形态和存在。破碎试验达到3 k,使其能够用作含有碳纳米材料的陶瓷合成支撑剂。

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  • 来源
    《Ceramic》 |2019年第1期|共7页
  • 作者单位

    Universidade de Sao Paulo Escola Politecnica Departamento de Engenharia Metaliirgica e de Materials 5508-010 S. Paulo SP Brazil;

    Universidade de Sao Paulo Escola Politecnica Departamento de Engenharia Metaliirgica e de Materials 5508-010 S. Paulo SP Brazil;

    Universidade de Sao Paulo Escola Politecnica Departamento de Engenharia de Minas e de Petroleo 5508-010 S. Paulo SP Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 硅酸盐工业;
  • 关键词

    metakaolin; ceramic proppants; geopolymer; reduced graphene; nanomaterials; nanotechnology;

    机译:Metakaolin;陶瓷支撑剂;地缘聚合物;减少石墨烯;纳米材料;纳米技术;

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