In this report, we evaluate the metal–organic framework CuBTC as a real-world adsorbent for protection against three toxic hydride gases: ammonia, arsine, and hydrogen sulfide. We develop a scalable room-temperature synthesis of high-surface-area CuBTC using a benign ethanol–water solvent system. We test the capacity of CuBTC for the hydride gases under microbreakthrough and real-world packed-bed conditions at both low and high humidity conditions. Under microbreakthrough conditions, CuBTC outperforms a broad-spectrum carbon (BSC) adsorbent for uptake of ammonia and arsine, with approximately equivalent uptake of hydrogen sulfide. Under packed-bed conditions, CuBTC outperforms the BSC for ammonia uptake but offers little protection against ...
The detection of the toxic H2S gas is of great practical, environmental and industrial interest. Thi...
The construction of colorimetric sensing materials with high selectivity, low detection limits, and ...
Metal–organic frameworks (MOFs) have been postulated for years as industrially achievable materials ...
Ammonia (NH3) emissions during agricultural production can cause serious consequences on animal and ...
The quest for advanced designer adsorbents for air filtration and monitoring hazardous trace gases h...
Introduction: Hydrogen sulfide is one of the most important impurities in natural gas. Due to the fa...
Ammonia serves as an essential feedstock in several large industries, including fertilizer and explo...
Recyclable materials for simultaneous detection and uptake of ammonia (NH3 ) are of great interest d...
Metal Organic Frameworks (MOFs) are a class of porous materials with highly desirable properties tha...
Ammonia (NH3) has large gravimetric and volumetric H2 densities and has advantages as hydrogen and e...
The research presented in this thesis aims to determine the effectiveness of the uptake of toxic gas...
Fast and selective detection of NH3 at parts‐per‐billion (ppb) concentrations with inexpensive and l...
The separation of gas molecules with similar physicochemical properties is of high importance but pr...
During the generation of biogas, various contaminant gases occur beside the desired methane. Hydroge...
Ammonia is a naturally-occurring gas, present throughout the atmosphere at sub-ppb concentrations. A...
The detection of the toxic H2S gas is of great practical, environmental and industrial interest. Thi...
The construction of colorimetric sensing materials with high selectivity, low detection limits, and ...
Metal–organic frameworks (MOFs) have been postulated for years as industrially achievable materials ...
Ammonia (NH3) emissions during agricultural production can cause serious consequences on animal and ...
The quest for advanced designer adsorbents for air filtration and monitoring hazardous trace gases h...
Introduction: Hydrogen sulfide is one of the most important impurities in natural gas. Due to the fa...
Ammonia serves as an essential feedstock in several large industries, including fertilizer and explo...
Recyclable materials for simultaneous detection and uptake of ammonia (NH3 ) are of great interest d...
Metal Organic Frameworks (MOFs) are a class of porous materials with highly desirable properties tha...
Ammonia (NH3) has large gravimetric and volumetric H2 densities and has advantages as hydrogen and e...
The research presented in this thesis aims to determine the effectiveness of the uptake of toxic gas...
Fast and selective detection of NH3 at parts‐per‐billion (ppb) concentrations with inexpensive and l...
The separation of gas molecules with similar physicochemical properties is of high importance but pr...
During the generation of biogas, various contaminant gases occur beside the desired methane. Hydroge...
Ammonia is a naturally-occurring gas, present throughout the atmosphere at sub-ppb concentrations. A...
The detection of the toxic H2S gas is of great practical, environmental and industrial interest. Thi...
The construction of colorimetric sensing materials with high selectivity, low detection limits, and ...
Metal–organic frameworks (MOFs) have been postulated for years as industrially achievable materials ...