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A New Approach of Synthesis of Al_2O_3 Nanofluid

机译:Al_2O_3纳米流体合成的新方法

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The purpose of this paper is to research and develop a new nanofluid synthesis system that uses plasma arc as heat source to fabricate nanofluid having high suspension stability. This system uses high temperature produced by plasma arc system to cause transient vaporization to metal, which is then followed by the induction of vaporized metallic gas into the collection piping by the induction system. At the same time, it mixes thoroughly with the pre-condensed deionized water, and the mixture is then underwent a rapid cooling process. Because of low temperature, the metallic gas condenses into nanoparticles, which is finally stored in the collection tank in the form of nanofluid. This paper discusses the influence of working current towards the fabricated Al_2O_3 nanoparticle. Also, based on the Al_2O_3nanofluid having different pH values, it analyzes into the suspension stability of its Zeta potential value. Furthermore, it investigates into the absorption properties of Al_2O_3 nanofluid towards UV/Vis. Besides, as known from the experimental result of the fuel calorific test, when the weight concentration of the Al_2O_3 nanofluids that is produced by a better fabrication is 3%, it explores into its good combustion efficiency towards 92 unleaded gas.
机译:本文的目的是研究和开发一种新的以等离子弧为热源的纳米流体合成系统,以制备具有高悬浮稳定性的纳米流体。该系统利用等离子弧系统产生的高温引起金属的瞬时气化,然后由感应系统将气化的金属气体感应到收集管道中。同时,它与预浓缩的去离子水充分混合,然后对混合物进行快速冷却。由于温度低,金属气体冷凝成纳米颗粒,最终以纳米流体的形式存储在收集槽中。本文讨论了工作电流对制备的Al_2O_3纳米粒子的影响。另外,基于具有不同pH值的Al_2O_3纳米流体,分析了其Zeta电位值的悬浮稳定性。此外,它研究了Al_2O_3纳米流体对UV / Vis的吸收特性。此外,如从燃料热测试的实验结果所知,当通过更好的制造方法生产的Al_2O_3纳米流体的重量浓度为3%时,它探索了其对92种无铅气体的良好燃烧效率。

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