Summary: Zeolite-based catalytic membrane reactors have been successfully applied in overcoming the thermodynamic limitations of CO2 hydrogenations and dry reforming of methane (DRM) reactions. This review summarizes the zeolites as membrane reactor components regarding the permeance, permselectivity, durability, conversion, selectivity, and stability by referring to the synergy of catalyst and membrane. Also, five operation parameters (temperature, pressure, feed ratio, sweeping gas flow rate, and gas hourly space velocity) are introduced regarding their impacts on the performance of membrane reactor. Besides, synthesis methods and conditions for zeolite membranes are critically illustrated in the category. Moreover, representative surface...
To deal with the increasing demand of renewable fuels, more efficient processes for the production o...
The permeation of a mixture containing H2, CO2 and water through a zeolite membrane was studied unde...
Zeolite and other inorganic molecular sieve membranes have shown potential for separations based on ...
Conversion of CO2 into methanol by catalytic hydrogenation has been recognised as one of the most pr...
\u3cp\u3eTraces of CO in hydrogen rich gas streams poison the anode of proton exchange membrane fuel...
This chapter details the synthesis and applications of zeolite membranes (gas separation and zeolite...
The greenhouse effect and the limited fossil oil resources have increased the demand of renewable fu...
We successfully demonstrated the effect of a membrane reactor for methanol synthesis to improve one-...
The greenhouse effect and the limited fossil oil resources have increased the demand for renewable f...
Literature on zeolite membranes in catalytic reactions is reviewed and categorized according to memb...
Membranes are considered one of the most promising technologies for CO2 separation from industrially...
In this theoretical work the CO2 conversion into methanol in both a traditional reactor (TR) and a m...
The aim of the project was to develop a novel procedure to prepare zeolite core-shell nanostructured...
Zeolites are commonly used as adsorbents and catalysts in the industry due to their well-defined por...
To deal with the increasing demand of renewable fuels, more efficient processes for the production o...
The permeation of a mixture containing H2, CO2 and water through a zeolite membrane was studied unde...
Zeolite and other inorganic molecular sieve membranes have shown potential for separations based on ...
Conversion of CO2 into methanol by catalytic hydrogenation has been recognised as one of the most pr...
\u3cp\u3eTraces of CO in hydrogen rich gas streams poison the anode of proton exchange membrane fuel...
This chapter details the synthesis and applications of zeolite membranes (gas separation and zeolite...
The greenhouse effect and the limited fossil oil resources have increased the demand of renewable fu...
We successfully demonstrated the effect of a membrane reactor for methanol synthesis to improve one-...
The greenhouse effect and the limited fossil oil resources have increased the demand for renewable f...
Literature on zeolite membranes in catalytic reactions is reviewed and categorized according to memb...
Membranes are considered one of the most promising technologies for CO2 separation from industrially...
In this theoretical work the CO2 conversion into methanol in both a traditional reactor (TR) and a m...
The aim of the project was to develop a novel procedure to prepare zeolite core-shell nanostructured...
Zeolites are commonly used as adsorbents and catalysts in the industry due to their well-defined por...
To deal with the increasing demand of renewable fuels, more efficient processes for the production o...
The permeation of a mixture containing H2, CO2 and water through a zeolite membrane was studied unde...
Zeolite and other inorganic molecular sieve membranes have shown potential for separations based on ...