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公开(公告)号:US20050013774A1
公开(公告)日:2005-01-20
申请号:US10490537
申请日:2002-09-27
申请人: Jihad Dakka , Machteld Mertens , Daria Lissy
发明人: Jihad Dakka , Machteld Mertens , Daria Lissy
CPC分类号: B01J29/7026 , B01J20/18 , B01J2229/26 , B01J2229/42 , C01B39/48
摘要: MFS structure type zeolite manufacture is facilitated by using a second organic molecule in addition to the usual hexaethylpentane diammonium salt.
摘要翻译: 除了通常的六乙基戊烷二铵盐之外,通过使用第二有机分子来促进MFS结构型沸石的制备。
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公开(公告)号:US20060122053A1
公开(公告)日:2006-06-08
申请号:US11258440
申请日:2005-10-25
申请人: Jean Beeckman , Glenn Sweeten , Daria Lissy , David Stern , Stephen McCarthy , Dominick Mazzone , Christine Elia
发明人: Jean Beeckman , Glenn Sweeten , Daria Lissy , David Stern , Stephen McCarthy , Dominick Mazzone , Christine Elia
IPC分类号: B01J29/06
CPC分类号: B01J29/40 , B01J2229/42
摘要: The present invention describes a method to increase the activity of a catalyst by first performing an ion exchange step with a potassium ion, followed by performing an ion-exchange step with an ammonium ion. Specifically, the present invention describes a method to increase the acidity of a zeolite by incorporating a potassium salt ion-exchange prior to an ammonium salt ion-exchange step. Even more specifically, the present invention is drawn to a method of increasing the activity of a zeolite by employing more than one potassium ion exchanges followed by at least one ammonium ion exchange. The present invention also describes a method to reduce the amount of sodium normally found in commercially produced zeolite by employing any of these methods. The present invention is also drawn to the catalysts produced by any of these methods.
摘要翻译: 本发明描述了通过首先用钾离子进行离子交换步骤,然后用铵离子进行离子交换步骤来提高催化剂活性的方法。 具体地,本发明描述了通过在铵盐离子交换步骤之前引入钾盐离子交换来提高沸石的酸度的方法。 更具体地说,本发明涉及通过使用多于一种的钾离子交换,然后进行至少一种铵离子交换来提高沸石的活性的方法。 本发明还描述了一种通过使用任何这些方法来减少通常在商业生产的沸石中发现的钠的量的方法。 本发明还涉及通过任何这些方法制备的催化剂。
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公开(公告)号:US20060293176A1
公开(公告)日:2006-12-28
申请号:US11453154
申请日:2006-06-14
申请人: Yun-Feng Chang , Daria Lissy
发明人: Yun-Feng Chang , Daria Lissy
IPC分类号: B01J27/00 , B01J29/04 , B01J27/182
CPC分类号: B01J29/005 , B01J29/04 , B01J29/85 , B01J2219/00747 , B01J2219/00756 , B01J2229/10 , C01B37/00 , C01B37/08 , C01B39/00 , C01B39/54
摘要: A method for determining an amount of flocculant effective to recover a molecular sieve crystalline product that comprises the steps of (a) preparing a molecular sieve crystalline product mixture; (b) separating the molecular sieve crystalline product mixture into a plurality of samples; (c) mixing at least two of the plurality of samples with a quantity of flocculant to produce a plurality of flocculated samples, wherein at least two of the plurality of flocculated samples have a different ratio of flocculant to molecular sieve crystalline product mixture; (d) measuring the viscosity or zeta potential of at least two of the plurality of flocculated samples having a different ratio of flocculant to molecular sieve crystalline product mixture; (e) establishing a relationship between the quantity of flocculant and the viscosity or zeta potential measurements; and (f) determining from the relationship the amount of flocculant effective to recover the molecular sieve crystalline product.
摘要翻译: 一种用于测定有效回收分子筛结晶产物的絮凝剂的量的方法,其包括以下步骤:(a)制备分子筛结晶产物混合物; (b)将分子筛结晶产物混合物分离成多个样品; (c)将多个样品中的至少两个与一定量的絮凝剂混合以产生多个絮凝样品,其中所述多个絮凝样品中的至少两个具有不同的絮凝剂与分子筛结晶产品混合物的比例; (d)测量具有不同比例的絮凝剂与分子筛结晶产品混合物的多个絮凝样品中的至少两个的粘度或ζ电位; (e)建立絮凝剂的数量与粘度或ζ电位测量之间的关系; 和(f)从关系中确定有效回收分子筛结晶产物的絮凝剂的量。
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4.
公开(公告)号:US20070149836A1
公开(公告)日:2007-06-28
申请号:US11315469
申请日:2005-12-22
申请人: Yun-feng Chang , Daria Lissy
发明人: Yun-feng Chang , Daria Lissy
IPC分类号: C07C1/00
CPC分类号: B01J37/03 , B01J29/00 , B01J29/005 , B01J29/70 , B01J29/85 , B01J2229/42 , C01B39/02 , C01B39/026 , C10G3/49 , C10G3/62 , C10G2300/1022 , C10G2400/20
摘要: A method for recovering molecular sieve crystals from a synthesis mixture that comprises adding at least one flocculant having a certain molecular weight and a certain charge density that contribute to the acceleration of the settling rate of the molecular sieve crystals and compositions made from the method.
摘要翻译: 从合成混合物中回收分子筛晶体的方法,该方法包括加入至少一种具有一定分子量和一定电荷密度的絮凝剂,其有助于加速分子筛晶体的沉降速率和由该方法制备的组合物。
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