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hydrogen
Hydrogen bond interaction influences the molecular orientation and conformation of these two-dimensional supramolecular architectures.
      
These results demonstrate the role of hydrogen bonds in molecular assembly formations and what is more, would be beneficial for understanding and fine tuning of the assembling of truxene-related opto-electronic materials.
      
The temperature was 973 K and the compositions of gases were methane, hydrogen and oxygen in the total pressure of 0.05 MPa.
      
To exemplify, some power polygeneration systems (methanol-power generation, hydrogen-power generation) are considered using coal as the basic fuel.
      
Hydrogen production from co-gasification of coal and biomass in supercritical water by continuous flow thermal-catalytic reactio
      
Converting abundant coal sources and green biomass energy into hydrogen effectively and without any pollution promotes environmental protection.
      
The influences of temperature, pressure and concentration on hydrogen production from co-gasification of coal and CMC in SCW under the given conditions (20-25 MPa, 650°C, 15-30 s) are discussed in detail.
      
The experimental results show that H2, CO2 and CH4 are the main gas products, and the molar fraction of hydrogen reaches in excess of 60%.
      
The higher pressure and higher CMC content facilitate hydrogen production; production is decreased remarkably given a longer residence time.
      
Molecular characterization and fermentative hydrogen production of a wild anaerobe in clostridium genus
      
With thinner membrane and higher sweep ratio, methane conversion rate increases with high reforming pressure, which will change the unfavorable condition of high pressure of HTGR methane reforming hydrogen production system into a favorable one.
      
Experimental research on catalysts and their catalytic mechanism for hydrogen production by gasification of peanut shell in supe
      
Gasification efficiency (GE), hydrogen gasification efficiency (GHE), carbon gasification efficiency (GCE), yield of hydrogen production
      
Degradation of 4-aminophenol by hydrogen peroxide oxidation using enzyme from Serratia marcescens as catalyst
      
This paper reports on the degradation of 4-aminophenol using hydrogen peroxide as oxidizer and the enzyme from Serratia marcescens AB 90027 as catalyst.
      
Electron was transferred between electrochemical process and biological process not only by hydrogen molecule but also by new produced active hydrogen atom.
      
High concentrations of molecular hydrogen (80-95%) in the presence of 5-20% CO2 facilitated the synthesis of hydrocarbons (alkanes) whose highest concentrations were produced at an H2/CO2 ratio of 9:1.
      
Chemical background of unacceptable, foul tones (oxidized, murine, acetate, hydrogen-sulfide, saprogenic, cabbage, hospital, mold, vulpine, etc.) is presented.
      
A highly sensitive method for tungsten detection in proteins based on the ability of this metal to catalyze the oxidation of rubeanic acid with hydrogen peroxide is described.
      
Kinetic Characterization of Extracellular Catalases fromPenicillium piceum F-648 and Its Hydrogen Peroxide-Adapted Variants
      
 

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