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首页> 外文期刊>The Korean journal of chemical engineering >Desulfurization Using Zno Nanostructure Prepared By Matrix Assisted Method
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Desulfurization Using Zno Nanostructure Prepared By Matrix Assisted Method

机译:基质辅助法制备的Zno纳米结构进行脱硫

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A ZnO nanostructure having a high surface area was developed for use as a desulfurization sorbent. The ZnO nanostructure was prepared by using zinc acetate and activated carbon by the matrix-assisted method. Activated carbon was the matrix in the matrix-assisted method and zinc acetate was the precursor. The desulfurization tests of the ZnO nanostructure were carried out in a packed bed desulfurization system in the temperature range of 300-500 ℃. The ZnO nanostructures before and after the sulfidation process were characterized by BET, XRD and SEM The formulated ZnO nanostructure consisted of ZnO nanoparticles with a size of 10-20 nm and its surface area was very high. Therefore, the sulfur capture efficiency of the ZnO nanostructure was 3 times higher than that of commercial ZnO. However, a reduction of some of the ZnO occurred because of the reducibility of the coal-derived gas, and the surface area of the ZnO nanostructure was slightly reduced due to the sintering of ZnO. It was also confirmed that the silica and alumina containing activated carbon used as the matrix prevent the thermal sintering of ZnO in the sulfidation process at high temperature.
机译:具有高表面积的ZnO纳米结构被开发用作脱硫吸附剂。 ZnO纳米结构是通过乙酸锌和活性炭通过基质辅助方法制备的。在基质辅助方法中,活性炭为基质,乙酸锌为前体。 ZnO纳米结构的脱硫试验是在300-500℃的填充床脱硫系统中进行的。用BET,XRD和SEM对硫化前后的ZnO纳米结构进行了表征。所配制的ZnO纳米结构由尺寸为10-20 nm的ZnO纳米颗粒组成,表面积非常高。因此,ZnO纳米结构的硫捕获效率是商业ZnO的3倍。然而,由于源自煤的气体的还原性,发生了一些ZnO的还原,并且由于ZnO的烧结,ZnO纳米结构的表面积略微减小。还证实了用作基体的含有活性炭的二氧化硅和氧化铝阻止了高温硫化过程中ZnO的热烧结。

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