首页> 外文期刊>Journal of Chemical Engineering of Japan >Analysis of VOC Reversing Adsorption and Desorption Characteristics for Actual Effeciency Prediction for Ceramic Honeycomb Adsorbent
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Analysis of VOC Reversing Adsorption and Desorption Characteristics for Actual Effeciency Prediction for Ceramic Honeycomb Adsorbent

机译:用于陶瓷蜂窝状吸附剂实际效率预测的VOC反向吸附和解吸特性分析

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References(5) Cited-By(6) Ceramic paper sheets were formed into a honeycomb rotor with inorganic adhesive and it was calcined at about 500°C. The honeycomb adsorbent was impregnated with high-silica zeolite powder by a chemical reaction being dipped into a solution that contains zeolite powder and silica sol as an inorganic binder of the zeolite powder. After dried and finished, it was set in a SUS tube with insulation spacer and installed in testing equipment.VOC vapor, butylacetate, was generated and directed to the honeycomb adsorbent, laden in the feed air stream, to conduct the adsorption and desorption efficiency test of the honeycomb adsorbent for this VOC. The test was done in a cyclic manner by feeding the air stream to the honeycomb adsorbent (adsorption process), and reversing the direction of the stream which was heated up (desorption process), with sequential damper arrangement and with scheduled periodic time control.The result was compared with the one obtained by the conventional rotary test runs of the honeycomb adsorbent and was evaluated for a new trial of efficiency prediction method.
机译:参考文献(5)Cyd-By(6)将陶瓷纸片用无机粘合剂制成蜂窝状转子,并在约500℃下煅烧。通过将化学反应浸入到包含沸石粉末和作为该沸石粉末的无机粘合剂的硅溶胶的溶液中,从而使高硅沸石粉末浸渗到蜂窝状吸附剂中。干燥完成后,将其置于带绝缘垫片的SUS管中并安装在测试设备中,生成VOC蒸气乙酸丁酯,并将其引导到装在进料空气流中的蜂窝状吸附剂中,以进行吸附和解吸效率测试该VOC的蜂窝状吸附剂的数量。该测试以循环方式进行,方法是将气流供入蜂窝状吸附剂(吸附过程),并反转气流的方向(解吸过程),采用顺序阻尼器布置并按计划的定期时间控制。将结果与通过蜂窝吸附剂的常规旋转测试运行获得的结果进行比较,并进行评估,以进行效率预测方法的新尝试。

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