نتایج جستجو برای: ZSM-12

تعداد نتایج: 582456  

1998
Mark J. Rice Arup K. Chakraborty Alexis T. Bell

The interactions of water with H-ZSM-5, Cu-ZSM-5, and Co-ZSM-5 have been investigated by density functional theory (DFT). Calculations were also performed to determine the thermodynamics of metal removal from the zeolite. For all three forms of ZSM-5, water adsorbs by direct interaction of the O atom with the cation and hydrogen bonding of one of the two H atoms with an oxygen atom in the zeoli...

Journal: :Catalysts 2022

The purpose of this work is to develop a low-cost and high-performance catalyst for the selective catalytic hydrogenation acetylene ethylene. Non-precious metals Cu Ni were selected as active ingredients study. Using ZSM-12 carrier, Cu-Ni bimetallic catalysts CuNix/ZSM-12 (x = 5, 7, 9, 11) with different Ni/Cu ratios prepared by incipient wetness impregnation method. total loading 2 wt%. Under ...

Journal: :The Journal of Physical Chemistry C 2015

2013
Manhoe Kim Shuli Yan Steven O. Salley Simon Ng M. Kim K. Y. S. Ng S. Yan S. O. Salley

In order to elucidate the effect of sodium on the activity of ZSM-5 supported metal oxides catalysts (ZnO-Al2O3/ZSM-5 and SnO-Al2O3/ZSM-5) for the transesterification of soybean oil with methanol, ZSM-5 supported metal oxides were prepared with and without sodium hydroxide by impregnation. The metal compositions of the ZSM-5 supported metal oxide catalysts and the metal concentrations dissolved...

Journal: :Journal of the Air & Waste Management Association 2005
Yu-Chih Lin Hsunling Bai Chung-Liang Chang

This study examines the performance of a new adsorbent, hexagonal nanostructured zeolite particles (HNZP) for acetone adsorption and compares the results with that of commercial mobil synthetic zeolite-5 (ZSM-5) type zeolite. The HNZP is a pure siliceous adsorbent with different values of pore diameter and surface area being adjustable by the manufacturing condition. The results indicate that a...

2014
Ting Ma Hiroyuki Imai Xiaohong Li

The conversion of syngas (CO + H2) to gasoline-ranged hydrocarbons was carried out using a hybrid catalyst consisting of metal-loaded ZSM-5 coupled with Cu-ZnO in a near-critical n-hexane solvent. Methanol was synthesized from syngas over Cu-ZnO; subsequently, was converted to hydrocarbons through the formation of dimethyl ether (DME) over the metal-loaded ZSM-5. When 0.5 wt% Pd/ZSM-5 and 5 wt%...

2016
Jing Han Guiyuan Jiang Shanlei Han Jia Liu Yaoyuan Zhang Yeming Liu Ruipu Wang Zhen Zhao Chunming Xu Yajun Wang Aijun Duan Jian Liu Yuechang Wei

In this study, the dehydrogenation component of Ga2O3 was introduced into ZSM-5 nanocrystals to prepare Ga2O3/ZSM-5 hollow fiber-based bifunctional catalysts. The physicochemical features of as-prepared catalysts were characterized by means of XRD, BET, SEM, STEM, NH3-TPD, etc., and their performances for the catalytic conversion of n-butane to produce light olefins and aromatics were investiga...

2018
Rolf Beerthuis Liang Huang N Raveendran Shiju Gadi Rothenberg Wei Shen Hualong Xu

Catalytic biomass conversion is often hindered by coking. Carbon compounds cover active surface and plug pores, causing catalyst deactivation. Material design at the nanoscale allows tailoring of the catalytic activity and stability. Here, we report a simple synthesis of nanosized ZSM-5 materials by using a silicalite-1 seeding suspension. ZSM-5 crystals were grown from a deionized silica sourc...

2005
Gongshin Qi Ralph T. Yang

We have reported previously the excellent performance of Fe-exchanged ZSM-5 for selective catalytic reduction (SCR) of NO with ammonia at high temperatures (300–400 C). In this work, we found that the reaction temperature could be decreased to 200– 300 C when a small amount of noble metal (Pt, Rh, or Pd) was added to the Fe-ZSM-5. The SCR activity follows the order Pt/FeZSM-5 > Rh/Fe-ZSM-5 > Pd...

Journal: :Chemical communications 2003
Mingcan Xu Wei Wang Michael Hunger

H/D exchange observed between bridging hydroxyl groups in acidic zeolite ZSM-5 and adsorbed acetone (acetone-d6/H-ZSM-5 and 13C-2-acetone/D-ZSM-5) indicates a concerted catalytic function of Brønsted acid sites and neighbouring framework oxygen atoms acting as Lewis base sites.

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