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SELECTIVE ADSORBENTS FOR IMPROVED REMOVAL OF MALODOROUS COMPOUNDS

机译:选择性去除恶臭化合物的选择性吸附剂

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We characterised different silica gels to obtain parameters, which are requiered for the selection of a suitable material for the elimination of odorous compounds form exhaust air streams. The data will also be required to describe the separation process mathematically. The silanisation conditions were optimised for 3-aminopropylsilanes, The influence of the silanisation condition on the stability of the adsorbents against water and ethanol were determined. The result of our work is a synthesis pathway to a variety of surface modified adsorbents. We determined the adsorption profile of modified silica gels, which happens to concur with the time dependency of adsorption. The adsorption profiles of XWP-based materials are promising for some kinds of odour problems, but the adsorption rate is not sufficiently high. The adsorption profile of untreated Kieselgel 60 is equalised the adsorption rate is high. For the modified adsorbents these changes are very small but need to be taken into account. For the application of selective adsorbents in odour control, further investigations are required. First of all, researches with a laboratory scale packed-bed adsorber will be conducted. The results will be evaluated and modelled.
机译:我们对不同的硅胶进行了表征,以获取参数,这些参数用于选择合适的材料以消除废气流中的有味化合物。还需要数据以数学方式描述分离过程。针对3-氨基丙基硅烷优化了硅烷化条件,确定了硅烷化条件对吸附剂对水和乙醇稳定性的影响。我们工作的结果是通向各种表面改性吸附剂的合成途径。我们确定了改性硅胶的吸附曲线,该曲线恰好与吸附的时间相关。 XWP基材料的吸附特性有望解决某些气味问题,但吸附速率不够高。未处理的Kieselgel 60的吸附曲线相等,吸附速率高。对于改性的吸附剂,这些变化很小,但是需要考虑在内。为了将选择性吸附剂应用于气味控制中,需要进一步的研究。首先,将进行实验室规模的填充床吸附器的研究。结果将被评估和建模。

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