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The preparation of a high surface area metal oxide prepared by a matrix-assisted method for hot gas desulphurization

机译:用基体辅助方法制备高表面积金属氧化物的热气脱硫方法

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Metal oxide sorbents with high surface area for ultra hot gas cleanup were prepared by a matrix-assisted method. A granular type of activated carbon was used as a matrix in order to increase the surface area of the metal oxide. Zinc was loaded on the surface of activated carbon by an impregnation method. Metal oxide maintained in the form of a matrix structure was observed by scanning electron microscope (SEM). A Wurtzite structure of ZnO was also confirmed by XRD measurement of the prepared granular particles. Particle sizes of metal oxide were distributed in the range of 5-50 nm in transmission electron microscope (TEM) images. The surface area of the zinc oxide calcined at 500 deg C was around 56 m~2/g. The values of the particle size and the surface area were directly related to the temperatures of calcination. The curves of sulphidation rates for the zinc oxides with high surface areas were measured by a Cahn balance at several different calcination temperatures. It was found that a catalyst with a large surface area showed a high activity in the desulphurization. Not only sulphur content in a simulated coal gas was completely removed by the ZnO with high surface area but also COS formed by a secondary reaction was not detected in the sulphidation tests performed in a fixed-bed reactor system. It was believed that the high surface area ZnO prepared in this study is a suitable sorbent for the ultra hot gas cleaning from the experimental results.
机译:采用基质辅助法制备了用于超热气体净化的高表面积金属氧化物吸附剂。为了增加金属氧化物的表面积,将颗粒状的活性炭用作基质。通过浸渍法将锌负载在活性炭的表面上。通过扫描电子显微镜(SEM)观察到保持为基质结构形式的金属氧化物。 ZnO的纤锌矿结构也通过对制备的颗粒的XRD测量来确认。在透射电子显微镜(TEM)图像中,金属氧化物的粒径分布在5-50 nm的范围内。在500℃下煅烧的氧化锌的表面积为约56m 2 / g。粒径和表面积的值与煅烧温度直接相关。具有高表面积的氧化锌的硫化速率曲线通过Cahn天平在几种不同的煅烧温度下测量。发现具有大表面积的催化剂在脱硫中显示出高活性。在固定床反应器系统中进行的硫化试验中,不仅用高表面积的ZnO完全除去了模拟煤气中的硫含量,而且未检测到由次级反应形成的COS。据信,从实验结果来看,本研究中制备的高表面积ZnO是用于超热气体清洁的合适吸附剂。

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