采用硝酸铜溶液和NaY分子筛溶液离子交换制备了CuY催化剂,通过加入氨水提高交换溶液的pH值以及高温焙烧活化,显著提高了该催化剂对甲醇氧化羰基化合成碳酸二甲酯的催化活性,与固相离子交换、沉积和浸渍法制备的催化剂相比,虽然铜的负载...采用硝酸铜溶液和NaY分子筛溶液离子交换制备了CuY催化剂,通过加入氨水提高交换溶液的pH值以及高温焙烧活化,显著提高了该催化剂对甲醇氧化羰基化合成碳酸二甲酯的催化活性,与固相离子交换、沉积和浸渍法制备的催化剂相比,虽然铜的负载量较低,但催化活性较高.通过元素分析、XRD、H2-TPR、XPS和Auger电子能谱(Auger electron spectroscopy,AES)等手段对CuY催化剂微观结构的表征结果表明,在Cu(NO3)2离子交换溶液中加入氨水,可促进Cu2+离子交换的进行,提高CuY催化剂的Cu交换量,并且交换的Cu2+主要位于分子筛的超笼中.在惰性气氛中焙烧活化CuY催化剂,Cu2+自还原为Cu+,氨促进了自还原过程的进行,显著提高了催化剂的活性.焙烧活化温度越高,越有利于超笼中Cu2+→Cu+的自还原过程,使超笼中Cu+的含量增加,CuY催化活性增加.进一步的研究结果表明,Y分子筛超笼中的Cu+是主要的催化活性中心.展开更多
NaY and ion exchanged NaNH4Y zeolite with NH4NO3 were used as the support to prepare CuY cata‐lysts by a high temperature anhydrous interaction between the support and copper (II) acety‐lacetonate Cu(acac)2. The...NaY and ion exchanged NaNH4Y zeolite with NH4NO3 were used as the support to prepare CuY cata‐lysts by a high temperature anhydrous interaction between the support and copper (II) acety‐lacetonate Cu(acac)2. The catalysts were used for the oxidative carbonylation of methanol to dime‐thyl carbonate (DMC) at atmospheric pressure. The textural and acidic properties of NaNH4Y zeolite and the CuY catalysts were investigated by X‐ray diffraction, scanning electron microscopy, N2 ad‐sorption‐desorption, temperature programmed reduction of H2, X‐ray photoelectron spectroscopy and temperature programmed desorption of NH3. With increasing NH4NO3 concentration, the NH4+exchange degree increased while the crystallinity of the zeolite remained intact. Crystalline CuO was formed when the NH4+exchange degree of NaNH4Y was low, and the corresponding CuY catalyst showed low catalytic activity. With increasing of the NH4+exchange degree of NaNH4Y, the content of surface bound Cu+active centers increased and the catalytic activity of the corresponding CuY catalyst also increased. The surface bound Cu+content reached its maximum when the NH4+ex‐change degree of NaNH4Y reached towards saturation. The CuY exhibited optimal catalytic activity with 267.3 mg/(g·h) space time yield of DMC, 6.9%conversion of methanol, 68.5%selectivity of DMC.展开更多
以2,5-二羧酸-3,4-乙撑二氧噻吩为原料,首次采用CuY型分子筛作催化剂应用于3,4-乙撑二氧噻吩合成,反应温度有了明显降低,合成条件更温和,产品收率更高。通过实验探讨了催化剂、温度、溶剂等因素对反应的影响。结果表明:当采用CuY型分子...以2,5-二羧酸-3,4-乙撑二氧噻吩为原料,首次采用CuY型分子筛作催化剂应用于3,4-乙撑二氧噻吩合成,反应温度有了明显降低,合成条件更温和,产品收率更高。通过实验探讨了催化剂、温度、溶剂等因素对反应的影响。结果表明:当采用CuY型分子筛为催化剂、二甲基亚砜为溶剂、反应温度为135℃时,收率最高。产品结构经1 H NMR、13C NMR、IR和元素分析进行了表征。展开更多
文摘采用硝酸铜溶液和NaY分子筛溶液离子交换制备了CuY催化剂,通过加入氨水提高交换溶液的pH值以及高温焙烧活化,显著提高了该催化剂对甲醇氧化羰基化合成碳酸二甲酯的催化活性,与固相离子交换、沉积和浸渍法制备的催化剂相比,虽然铜的负载量较低,但催化活性较高.通过元素分析、XRD、H2-TPR、XPS和Auger电子能谱(Auger electron spectroscopy,AES)等手段对CuY催化剂微观结构的表征结果表明,在Cu(NO3)2离子交换溶液中加入氨水,可促进Cu2+离子交换的进行,提高CuY催化剂的Cu交换量,并且交换的Cu2+主要位于分子筛的超笼中.在惰性气氛中焙烧活化CuY催化剂,Cu2+自还原为Cu+,氨促进了自还原过程的进行,显著提高了催化剂的活性.焙烧活化温度越高,越有利于超笼中Cu2+→Cu+的自还原过程,使超笼中Cu+的含量增加,CuY催化活性增加.进一步的研究结果表明,Y分子筛超笼中的Cu+是主要的催化活性中心.
基金supported by the National Natural Science Foundation of China (21276169)~~
文摘NaY and ion exchanged NaNH4Y zeolite with NH4NO3 were used as the support to prepare CuY cata‐lysts by a high temperature anhydrous interaction between the support and copper (II) acety‐lacetonate Cu(acac)2. The catalysts were used for the oxidative carbonylation of methanol to dime‐thyl carbonate (DMC) at atmospheric pressure. The textural and acidic properties of NaNH4Y zeolite and the CuY catalysts were investigated by X‐ray diffraction, scanning electron microscopy, N2 ad‐sorption‐desorption, temperature programmed reduction of H2, X‐ray photoelectron spectroscopy and temperature programmed desorption of NH3. With increasing NH4NO3 concentration, the NH4+exchange degree increased while the crystallinity of the zeolite remained intact. Crystalline CuO was formed when the NH4+exchange degree of NaNH4Y was low, and the corresponding CuY catalyst showed low catalytic activity. With increasing of the NH4+exchange degree of NaNH4Y, the content of surface bound Cu+active centers increased and the catalytic activity of the corresponding CuY catalyst also increased. The surface bound Cu+content reached its maximum when the NH4+ex‐change degree of NaNH4Y reached towards saturation. The CuY exhibited optimal catalytic activity with 267.3 mg/(g·h) space time yield of DMC, 6.9%conversion of methanol, 68.5%selectivity of DMC.
文摘以2,5-二羧酸-3,4-乙撑二氧噻吩为原料,首次采用CuY型分子筛作催化剂应用于3,4-乙撑二氧噻吩合成,反应温度有了明显降低,合成条件更温和,产品收率更高。通过实验探讨了催化剂、温度、溶剂等因素对反应的影响。结果表明:当采用CuY型分子筛为催化剂、二甲基亚砜为溶剂、反应温度为135℃时,收率最高。产品结构经1 H NMR、13C NMR、IR和元素分析进行了表征。