高校化学工程学报
高校化學工程學報
고교화학공정학보
JOURNAL OF CHEMICAL ENGINEERING OF CHINESE UNIVERSITIES
2010年
1期
167-170
,共4页
添加剂聚乙二醇%分子量%堇青石蜂窝陶瓷载体%涂层%性能.
添加劑聚乙二醇%分子量%堇青石蜂窩陶瓷載體%塗層%性能.
첨가제취을이순%분자량%근청석봉와도자재체%도층%성능.
additive PEG%molecular weight%cordierite ceramic honeycomb%washcoat%properties
以拟薄水铝石为原料,硝酸为胶溶剂,添加聚乙二醇(PEG)制备铝溶胶,并对堇青石蜂窝陶瓷载体进行γ-Al_2O_3涂层.考察了不同分子量(400,6000和20000)聚乙二醇的添加对溶胶黏度,粒径分布以及涂覆涂层负载量和重现性的影响;利用BET 法测定了溶胶中添加不同分子量的聚乙二醇后,涂层比表面积的变化;超声波振荡检测了堇青石蜂窝陶瓷载体涂层的结合牢固性;由SEM照片观察涂层的表面形貌.结果表明,聚乙二醇的添加,增大了溶胶的黏度,提高了载体涂层的负载量、比表面积和结合牢固度.添加剂聚乙二醇分子量的不同对溶胶和载体涂层性能的影响也不同,聚乙二醇20000的添加使溶胶黏度和涂层负载量的增加程度更明显,而添加聚乙二醇400制备溶胶的粒径小,分布范围窄,涂覆涂层均匀、牢固且比表面积大.
以擬薄水鋁石為原料,硝痠為膠溶劑,添加聚乙二醇(PEG)製備鋁溶膠,併對堇青石蜂窩陶瓷載體進行γ-Al_2O_3塗層.攷察瞭不同分子量(400,6000和20000)聚乙二醇的添加對溶膠黏度,粒徑分佈以及塗覆塗層負載量和重現性的影響;利用BET 法測定瞭溶膠中添加不同分子量的聚乙二醇後,塗層比錶麵積的變化;超聲波振盪檢測瞭堇青石蜂窩陶瓷載體塗層的結閤牢固性;由SEM照片觀察塗層的錶麵形貌.結果錶明,聚乙二醇的添加,增大瞭溶膠的黏度,提高瞭載體塗層的負載量、比錶麵積和結閤牢固度.添加劑聚乙二醇分子量的不同對溶膠和載體塗層性能的影響也不同,聚乙二醇20000的添加使溶膠黏度和塗層負載量的增加程度更明顯,而添加聚乙二醇400製備溶膠的粒徑小,分佈範圍窄,塗覆塗層均勻、牢固且比錶麵積大.
이의박수려석위원료,초산위효용제,첨가취을이순(PEG)제비려용효,병대근청석봉와도자재체진행γ-Al_2O_3도층.고찰료불동분자량(400,6000화20000)취을이순적첨가대용효점도,립경분포이급도복도층부재량화중현성적영향;이용BET 법측정료용효중첨가불동분자량적취을이순후,도층비표면적적변화;초성파진탕검측료근청석봉와도자재체도층적결합뢰고성;유SEM조편관찰도층적표면형모.결과표명,취을이순적첨가,증대료용효적점도,제고료재체도층적부재량、비표면적화결합뢰고도.첨가제취을이순분자량적불동대용효화재체도층성능적영향야불동,취을이순20000적첨가사용효점도화도층부재량적증가정도경명현,이첨가취을이순400제비용효적립경소,분포범위착,도복도층균균、뢰고차비표면적대.
AlOOH sol was prepared with pseudo-bohemite as raw material, polyethylene glycol (PEG) as additive and HNO_3 as dispergator; the prepared sol was used to coat γ-Al_2O_3 on cordierite ceramic honeycomb substrate. The effects of additive PEG with different molecular weights (400, 6000, 20000) on the properties of the prepared sol and washcoat, such as the sol viscosity and size distribution, the loading percentage of washcoat and the reproducibility, were investigated. The change of specific surface area of washcoat caused by the addition of additive PEG with different molecular weights was measured by BET. The adhesion of washcoat on cordierite ceramic honeycomb was detected by the ultrasonic vibration method. The SEM photographs were employed to observe the surface morphology of the washcoat. The results show that the addition of PEG can increase the viscosity of sol, and improve the loading percentage, specific surface area and adhesion of the washcoat. The PEG with different molecular weights has different influences on the properties of sol and washcoat. The effect of PEG 20000 on increasing the viscosity of sol and the loading percentage of washcoat is much more prominent. The addition of PEG 400 results in the smaller size and narrow size distribution of the sol prepared; the washcoat prepared with this sol is uniform, fast and having bigger specific surface area.