高校化学工程学报
高校化學工程學報
고교화학공정학보
JOURNAL OF CHEMICAL ENGINEERING OF CHINESE UNIVERSITIES
2012年
6期
1054-1059
,共6页
贺杨堃%杨继萍%付悍巍%王小芃
賀楊堃%楊繼萍%付悍巍%王小芃
하양곤%양계평%부한외%왕소봉
硅胶%复合配方%吸水性%吸水速率%干燥剂再生
硅膠%複閤配方%吸水性%吸水速率%榦燥劑再生
규효%복합배방%흡수성%흡수속솔%간조제재생
silica gel%composite formula%hydroscopic property%moisture absorption rate%desiccant regeneration
针对普通硅胶吸水率不高、单一组分改性硅胶再生温度相对较高的缺陷,运用氯化钙和氯化镁复合改性硅胶,制备新型干燥剂.通过测定复合硅胶的差示扫描量热曲线(DSC)和热重分析(TG)曲线,考察复合硅胶的吸水性能、再生性能和对水的脱附活化能的影响.研究表明:在室温饱和湿度下,用浓度均为0.25 mol?L?1的氯化钙和氯化镁复合改性硅胶的吸水量约为未改性硅胶相应值的2倍,吸湿速率提高3.5倍以上.复合干燥剂的再生温度比改性前低了10℃,脱附活化能数值小,再生6次后再生率依然高达92%左右,且基本不再变化.
針對普通硅膠吸水率不高、單一組分改性硅膠再生溫度相對較高的缺陷,運用氯化鈣和氯化鎂複閤改性硅膠,製備新型榦燥劑.通過測定複閤硅膠的差示掃描量熱麯線(DSC)和熱重分析(TG)麯線,攷察複閤硅膠的吸水性能、再生性能和對水的脫附活化能的影響.研究錶明:在室溫飽和濕度下,用濃度均為0.25 mol?L?1的氯化鈣和氯化鎂複閤改性硅膠的吸水量約為未改性硅膠相應值的2倍,吸濕速率提高3.5倍以上.複閤榦燥劑的再生溫度比改性前低瞭10℃,脫附活化能數值小,再生6次後再生率依然高達92%左右,且基本不再變化.
침대보통규효흡수솔불고、단일조분개성규효재생온도상대교고적결함,운용록화개화록화미복합개성규효,제비신형간조제.통과측정복합규효적차시소묘량열곡선(DSC)화열중분석(TG)곡선,고찰복합규효적흡수성능、재생성능화대수적탈부활화능적영향.연구표명:재실온포화습도하,용농도균위0.25 mol?L?1적록화개화록화미복합개성규효적흡수량약위미개성규효상응치적2배,흡습속솔제고3.5배이상.복합간조제적재생온도비개성전저료10℃,탈부활화능수치소,재생6차후재생솔의연고체92%좌우,차기본불재변화.
Since the water absorption ratio of ordinary silica gel is not high and the regeneration temperature of silica gel modified separately by magnesium chloride or calcium chloride only is relatively high, a new kind desiccant was prepared by modifying the silica gel with magnesium chloride and calcium chloride simultaneously. Using the solution with appropriate ratio of magnesium chloride and calcium chloride as the composite modifier could make the modified silica gel have high hydroscopic ability and lower regeneration temperature. The differential scanning calorimeter (DSC) and the thermogravimetric analysis (TG) were used to investigate the regeneration performance, hydroscopic properties and the corresponding activation energies of water desorption of the silica gel modified by the composite modifier. The results show that, at the saturated air humidity corresponding to room temperature and using solution composed of 0.25 mol?L?1 of calcium chloride and 0.25 mol?L?1 of magnesium chloride as modifier, the water absorption capacity of the modified silica gel enhances greatly, which is about 2 times higher than that of the unmodified silica gel. Besides, the water absorption rate of the modified silica gel is significantly improved by 3.5 times and more, and its regeneration temperature is about 10℃ lower. Moreover, after recycling for 6 times, the regeneration ratio of the modified silica gel is still as high as 92%, and which remains unchanged basically.