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High Purity Silica Nanoparticles from Geothermal Waste Brine as Reinforcing Filler in Rubber Composite Material

机译:地热废盐中的高纯度二氧化硅纳米颗粒作为橡胶复合材料中的增强填料

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摘要

Extraction of high purity silica nanoparticles from geothermal waste brine was studied as potential reinforcement for rubber. Properties of both as-received geothermal silica (AGS) and upgraded geothermal silica nanoparticles (UGS) were compared to the commercially-acquired precipitated silica (CPS). By X-ray fluorescence spectroscopy, AGS was found to have 58.19% Si content that was upgraded to 99.46% Si content (UGS). CPS, AGS and UGS were confirmed to be amorphous by X-ray diffraction analysis. Aggregate particles around ~100-300 nm were determined for CPS and UGS while AGS has around ~350-500 nm through Particle Size Analysis (PSA). Electron micrographs show that primary particles are around ~28-34 nm and ~40-65 nm in size for CPS and WGS, respectively. These differences resulted in the different properties of rubber filled with the three types of silica fillers. Mainly, due to the differences in particle sizes, the compound bearing AGS showed lower Mooney viscosity at (6 MU difference), faster curing at (0.4 min difference) and lower tensile modulus (about 1 MPa difference). Use of UGS showed improvements in the resulting rubber properties with the different parameters being comparable in value to those of the reference compound. Utilization of AGS and UGS will be beneficial both to the rubber and power industries - the former for its low-cost nature and potential as reinforcing filler in rubber compounds and the latter by resolving waste-handling problem in geothermal setting.
机译:研究了从地热废盐水中提取高纯度二氧化硅纳米颗粒作为橡胶的潜在增强剂。将原样的地热二氧化硅(AGS)和升级的地热二氧化硅纳米粒子(UGS)的性能与商业上获得的沉淀二氧化硅(CPS)进行了比较。通过X射线荧光光谱法,发现AGS具有58.19%的Si含量,该含量提高到99.46%的Si含量(UGS)。通过X射线衍射分析确认CPS,AGS和UGS为非晶态。通过粒度分析(PSA)确定了CPS和UGS的聚集粒子约为100-300 nm,而AGS的聚集粒子约为350-500 nm。电子显微照片显示,对于CPS和WGS,初级粒子的尺寸分别约为〜28-34 nm和〜40-65 nm。这些差异导致填充了三种类型的二氧化硅填料的橡胶的性能不同。主要由于粒度的差异,带有AGS的化合物在(6 MU差异)下表现出较低的门尼粘度,在(0.4 min差异)下固化更快,而拉伸模量较低(约1 MPa)。使用UGS可以显示出所得橡胶性能的改善,不同的参数值可与参考胶料相比。 AGS和UGS的使用将对橡胶和电力工业都有好处-前者具有低成本的特性和作为橡胶混合物中增强填料的潜力,而后者则可以解决地热环境中的废物处理问题。

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  • 来源
    《Materials science forum》 |2017年第2017期|104-108|共5页
  • 作者单位

    Composite Materials Research Laboratory, Department of Mining, Metallurgical and Materials Engineering, College of Engineering, University of the Philippines Diliman, Quezon City;

    Composite Materials Research Laboratory, Department of Mining, Metallurgical and Materials Engineering, College of Engineering, University of the Philippines Diliman, Quezon City;

    Composite Materials Research Laboratory, Department of Mining, Metallurgical and Materials Engineering, College of Engineering, University of the Philippines Diliman, Quezon City;

    Composite Materials Research Laboratory, Department of Mining, Metallurgical and Materials Engineering, College of Engineering, University of the Philippines Diliman, Quezon City;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Silica nanoparticles; Geothermal Waste Brine; Filler; Rubber Compounding;

    机译:二氧化硅纳米粒子;地热废物盐水;填料;橡胶混炼;

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