首页> 外文会议>International Symposium Pioneering Studies of Young Scientists on Chemical Pollution and Environmental Changes >Removal of Odorous Vapors by Their Adsorption on Allophane and Its Molecular Orbital Mechanism Part I.Experimental Results
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Removal of Odorous Vapors by Their Adsorption on Allophane and Its Molecular Orbital Mechanism Part I.Experimental Results

机译:通过对苯胺烷的吸附和其分子轨道机制的吸附除去异味蒸气部分I.实验结果

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The results of the present study have shown that allophane samples have higher adsorption capacity for ammonia and formaldehyde compared to montmorillonite sample under equilibrium concentrations less than 50 ppm.Crystalline layer silicate materials such as montmorillonite and sepiolite have been used as adsorbents for various environmentally toxic gases.This suggests that allophane has higher sensitivity for ammonia at lower concentrations than crystalline layer silicates materials have.At these concentrations,ammonia and formaldehyde gases are thought as the critical concentration for fair strong odor in the environment.Therefore,allophane can be used as an effective adsorbent to remove odorous vapors from the environment.These applications seem to be promising in the further development of gas pollution control technology in environment protection.
机译:本研究的结果表明,与蒙脱石浓度的蒙脱石样品在小于50ppm的平衡浓度下,苯胺丁烷样品具有较高的吸附能力,与蒙脱石浓度下蒙脱石样品相比。硅酸盐硅酸盐材料如蒙脱石和海硫酸盐,已用作各种环保气体的吸附剂这表明,樟酮对较低浓度的氨浓度高于晶体层硅酸盐材料。这些浓度,氨和甲醛气体被认为是环境中公平强烈气味的临界浓度。因此,艾菲莱可以用作有效吸附剂,以消除环境中的无味蒸气。这些应用似乎在环境保护中进一步发展的煤气污染控制技术。

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