化学与生物工程
化學與生物工程
화학여생물공정
CHEMISTRY & BIOENGINEERING
2014年
10期
39-42
,共4页
杨甜甜%高春光%高鹏飞%赵永祥
楊甜甜%高春光%高鵬飛%趙永祥
양첨첨%고춘광%고붕비%조영상
多级孔分子筛%SAPO-5%硅含量%表征
多級孔分子篩%SAPO-5%硅含量%錶徵
다급공분자사%SAPO-5%규함량%표정
hierarchical molecular sieves%SAPO-5%silicon content%characterization
以N-甲基二环己基胺(MCHA)为结构导向剂、正硅酸乙酯(TEOS)为硅源、氢氧化铝为铝源、85%的磷酸为磷源,采用水热法制备了不同硅含量的多级孔 SAPO-5分子筛。采用 X-射线粉末衍射(XRD)、氮气物理吸附、傅立叶变换红外光谱(FTIR)和氨程序升温脱附(NH3-TPD)等方法分别对样品的晶体结构、比表面积、骨架结构和酸性等进行表征。结果表明:随着硅含量的增加,多级孔 SAPO-5分子筛的结晶度降低;孔径无明显变化,孔容增大;当硅含量为0.33时,样品不再具有 AFI结构;总酸量随着硅含量的增加先升高后降低,当硅含量为0.20时,总酸量最大。
以N-甲基二環己基胺(MCHA)為結構導嚮劑、正硅痠乙酯(TEOS)為硅源、氫氧化鋁為鋁源、85%的燐痠為燐源,採用水熱法製備瞭不同硅含量的多級孔 SAPO-5分子篩。採用 X-射線粉末衍射(XRD)、氮氣物理吸附、傅立葉變換紅外光譜(FTIR)和氨程序升溫脫附(NH3-TPD)等方法分彆對樣品的晶體結構、比錶麵積、骨架結構和痠性等進行錶徵。結果錶明:隨著硅含量的增加,多級孔 SAPO-5分子篩的結晶度降低;孔徑無明顯變化,孔容增大;噹硅含量為0.33時,樣品不再具有 AFI結構;總痠量隨著硅含量的增加先升高後降低,噹硅含量為0.20時,總痠量最大。
이N-갑기이배기기알(MCHA)위결구도향제、정규산을지(TEOS)위규원、경양화려위려원、85%적린산위린원,채용수열법제비료불동규함량적다급공 SAPO-5분자사。채용 X-사선분말연사(XRD)、담기물리흡부、부립협변환홍외광보(FTIR)화안정서승온탈부(NH3-TPD)등방법분별대양품적정체결구、비표면적、골가결구화산성등진행표정。결과표명:수착규함량적증가,다급공 SAPO-5분자사적결정도강저;공경무명현변화,공용증대;당규함량위0.33시,양품불재구유 AFI결구;총산량수착규함량적증가선승고후강저,당규함량위0.20시,총산량최대。
A series of hierarchical SAPO-5 molecular sieves with different silicon contents were prepared by hydrothermal synthesis using N,N-dicyclohexylmethylamine as structure directing agent,tetraethoxysilane (TEOS)as silica source,hydrated aluminum hydroxide as alumina source,phosphoric acid (85%)as phosphor-us source.The crystal structure,specific surface area,skeleton structure and acidity of SAPO-5 molecular sieves were characterized by XRD,N2-physical adsorption,FTIR and NH3-TPD,respectively.Results showed that, with the increase of silicon content,the crystallinity of hierarchical SAPO-5 molecular sieves was decreased;there was no significant alteration of the pore diameter with the silicon content increased,but the pore volume was increased;when the silicon content was 0.33,the sample was not AFI structure;the total acid amount in-creased at first and then decreased,the total acid amount reached the top value when the silicon content was 0.20.