Adsorption and regeneration characteristics of composite desiccants

{"title":"Adsorption and regeneration characteristics of composite desiccants","authors":"","doi":"10.52151/aet2021452.1535","DOIUrl":null,"url":null,"abstract":"Solar dryers are economical for crop drying and are environmental friendly. However, in tropical region due to high humidity of ambient air the efficiency of solar dryer gets reduced. Desiccants can be used for reducing the humidity of ambient air. In the present study, three desiccants viz. silica gel, bentonite clay and activated carbon were selected and tested for their use to improve efficiency of solar dryer. The composite desiccant mixture was prepared by mixing three selected desiccants in different ratios and was evaluated for adsorption and regeneration characteristics. The adsorption rate of different composite desiccants was calculated at 2 h interval. The regeneration rate of composite desiccants was studied at a temperature of 50°C and 55°C and the data were recorded at 1 h interval. The evaluation was done at three weightage levels of adsorption rate: regenerate: unit cost i.e. 50:30:20, 60:20:20 and 40:40:20. The maximum value of performance index at three weightage levels based on highest adsorption rate and regenerate rate and lowest unit cost was observed as 1.66, 1.5 and 1.81. The treatment T1 (Silica gel 100%) was found as better desiccant among the selected composite desiccant with average adsorption rate 1.49 %moisture per h followed by T5 (Silica gel 80%, Activated 20%) with 1.46% moisture per. The statistical analysis showed that the performance efficiencies of silica gel were observed highest 84.33%, 77.33%, and 91.7% at different weightages of adsorption rate, regeneration rate and cost of composite desiccant.","PeriodicalId":216128,"journal":{"name":"Agricultural Engineering Today","volume":"50 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2021-01-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Agricultural Engineering Today","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.52151/aet2021452.1535","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
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Abstract

Solar dryers are economical for crop drying and are environmental friendly. However, in tropical region due to high humidity of ambient air the efficiency of solar dryer gets reduced. Desiccants can be used for reducing the humidity of ambient air. In the present study, three desiccants viz. silica gel, bentonite clay and activated carbon were selected and tested for their use to improve efficiency of solar dryer. The composite desiccant mixture was prepared by mixing three selected desiccants in different ratios and was evaluated for adsorption and regeneration characteristics. The adsorption rate of different composite desiccants was calculated at 2 h interval. The regeneration rate of composite desiccants was studied at a temperature of 50°C and 55°C and the data were recorded at 1 h interval. The evaluation was done at three weightage levels of adsorption rate: regenerate: unit cost i.e. 50:30:20, 60:20:20 and 40:40:20. The maximum value of performance index at three weightage levels based on highest adsorption rate and regenerate rate and lowest unit cost was observed as 1.66, 1.5 and 1.81. The treatment T1 (Silica gel 100%) was found as better desiccant among the selected composite desiccant with average adsorption rate 1.49 %moisture per h followed by T5 (Silica gel 80%, Activated 20%) with 1.46% moisture per. The statistical analysis showed that the performance efficiencies of silica gel were observed highest 84.33%, 77.33%, and 91.7% at different weightages of adsorption rate, regeneration rate and cost of composite desiccant.
复合干燥剂的吸附与再生特性
太阳能干燥机既经济又环保。然而,在热带地区,由于环境空气湿度高,太阳能干燥机的效率降低。干燥剂可用于降低环境空气的湿度。本研究选取硅胶、膨润土和活性炭三种干燥剂进行试验,以提高太阳能干燥机的效率。将选定的三种干燥剂按不同比例混合制成复合干燥剂,并对其吸附和再生性能进行了评价。每隔2 h计算不同复合干燥剂的吸附率。研究复合干燥剂在50℃和55℃条件下的再生速率,每隔1 h记录数据。在吸附率的三个权重水平下进行评价:再生:单位成本,即50:30:20,60:20:20和40:40:20。以最高吸附率、再生率和最低单位成本为指标,3个权重水平下的性能指标最大值分别为1.66、1.5和1.81。选择的复合干燥剂中,处理T1(硅胶100%)的平均吸附率为1.49% / h,其次是处理T5(硅胶80%,活化20%),平均吸附率为1.46% / h。统计分析表明,在吸附率、再生率和复合干燥剂成本不同的权重下,硅胶的性能效率最高,分别为84.33%、77.33%和91.7%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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