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The route of liquid precursor to ZnO nanoparticles in premixed combustion spray pyrolysis

机译:预混合燃烧喷雾热解的液体前体对ZnO纳米颗粒的途径

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Zinc oxide nanoparticles had been successfully synthesized by premixed combustion spray pyrolysis. Zinc acetate was dissolved in distilled water was selected as a liquid precursor. Zinc nitrate was also used for comparison the effect of precursor type on the generated particles morphology and the crystallinity. The premixed combustion reaction used liquefied petroleum gas (LPG) mainly consisting of butane and propane as a fuel and compressed air used as an oxidizer. The liquid precursor was atomized using a custom two fluid nozzle to generate droplets. Then, the droplets were sprayed by the flow of air as a carrier gas into the premixed combustion reactor. The zinc precursor was decomposed to zinc oxide due to the high temperature as a result of combustion reaction inside the reactor resulting in nanoparticles formation. The particle size decreased with the increase of the fuel flow rate. In addition, it can be found that at the same flow rate of fuel, the particle size of zinc oxide synthesized using zinc nitrate is larger than that of the use of zinc acetate as a precursor.
机译:通过预混合的燃烧喷雾热解成功地合成了氧化锌纳米颗粒。将乙酸锌溶于蒸馏水中,选择为液体前体。氮酸锌也用于比较前体类型对产生的颗粒形态和结晶度的影响。预混合的燃烧反应用液化石油气(LPG)主要由丁烷和丙烷作为燃料和用作氧化剂的压缩空气组成。使用定制的两个流体喷嘴雾化液体前体,以产生液滴。然后,通过空气流作为载气将液滴喷射到预混合的燃烧反应器中。由于在反应器内部的燃烧反应导致纳米颗粒形成,锌前体由于高温而被分解为氧化锌。导致纳米颗粒形成。随着燃料流速的增加,粒度降低。另外,可以发现,在相同的燃料流速下,使用硝酸锌合成的氧化锌的粒度大于乙酸锌作为前体的氧化锌。

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