The Experts below are selected from a list of 9 Experts worldwide ranked by ideXlab platform

Brent H Shanks - One of the best experts on this subject based on the ideXlab platform.

  • influence of alkali and Alkaline Earth metal Salts on glucose conversion to 5 hydroxymethylfurfural in an aqueous system
    Catalysis Communications, 2013
    Co-Authors: Elliot Combs, Basak Cinlar, Yomaira J Pagantorres, James A Dumesic, Brent H Shanks
    Abstract:

    Abstract The aqueous phase acid-catalyzed reaction of glucose to 5-hydroxymethylfurfural (HMF) was performed with the addition of alkali and Alkaline Earth metal Salts. Previous studies investigated this reaction in a biphasic system using Salts to enhance the partitioning of HMF and suppress undesired products thereby increasing the overall selectivity. The results of this study suggest the presence of Alkaline Earth Salt/glucose interactions that affect glucose conversion and HMF yield. While sulfate Salts tended to lead to higher activity than chloride Salts, the further addition of HCl led to decreased conversion through a competitive anion effect.

Elliot Combs - One of the best experts on this subject based on the ideXlab platform.

  • influence of alkali and Alkaline Earth metal Salts on glucose conversion to 5 hydroxymethylfurfural in an aqueous system
    Catalysis Communications, 2013
    Co-Authors: Elliot Combs, Basak Cinlar, Yomaira J Pagantorres, James A Dumesic, Brent H Shanks
    Abstract:

    Abstract The aqueous phase acid-catalyzed reaction of glucose to 5-hydroxymethylfurfural (HMF) was performed with the addition of alkali and Alkaline Earth metal Salts. Previous studies investigated this reaction in a biphasic system using Salts to enhance the partitioning of HMF and suppress undesired products thereby increasing the overall selectivity. The results of this study suggest the presence of Alkaline Earth Salt/glucose interactions that affect glucose conversion and HMF yield. While sulfate Salts tended to lead to higher activity than chloride Salts, the further addition of HCl led to decreased conversion through a competitive anion effect.

Basak Cinlar - One of the best experts on this subject based on the ideXlab platform.

  • influence of alkali and Alkaline Earth metal Salts on glucose conversion to 5 hydroxymethylfurfural in an aqueous system
    Catalysis Communications, 2013
    Co-Authors: Elliot Combs, Basak Cinlar, Yomaira J Pagantorres, James A Dumesic, Brent H Shanks
    Abstract:

    Abstract The aqueous phase acid-catalyzed reaction of glucose to 5-hydroxymethylfurfural (HMF) was performed with the addition of alkali and Alkaline Earth metal Salts. Previous studies investigated this reaction in a biphasic system using Salts to enhance the partitioning of HMF and suppress undesired products thereby increasing the overall selectivity. The results of this study suggest the presence of Alkaline Earth Salt/glucose interactions that affect glucose conversion and HMF yield. While sulfate Salts tended to lead to higher activity than chloride Salts, the further addition of HCl led to decreased conversion through a competitive anion effect.

Yomaira J Pagantorres - One of the best experts on this subject based on the ideXlab platform.

  • influence of alkali and Alkaline Earth metal Salts on glucose conversion to 5 hydroxymethylfurfural in an aqueous system
    Catalysis Communications, 2013
    Co-Authors: Elliot Combs, Basak Cinlar, Yomaira J Pagantorres, James A Dumesic, Brent H Shanks
    Abstract:

    Abstract The aqueous phase acid-catalyzed reaction of glucose to 5-hydroxymethylfurfural (HMF) was performed with the addition of alkali and Alkaline Earth metal Salts. Previous studies investigated this reaction in a biphasic system using Salts to enhance the partitioning of HMF and suppress undesired products thereby increasing the overall selectivity. The results of this study suggest the presence of Alkaline Earth Salt/glucose interactions that affect glucose conversion and HMF yield. While sulfate Salts tended to lead to higher activity than chloride Salts, the further addition of HCl led to decreased conversion through a competitive anion effect.

James A Dumesic - One of the best experts on this subject based on the ideXlab platform.

  • influence of alkali and Alkaline Earth metal Salts on glucose conversion to 5 hydroxymethylfurfural in an aqueous system
    Catalysis Communications, 2013
    Co-Authors: Elliot Combs, Basak Cinlar, Yomaira J Pagantorres, James A Dumesic, Brent H Shanks
    Abstract:

    Abstract The aqueous phase acid-catalyzed reaction of glucose to 5-hydroxymethylfurfural (HMF) was performed with the addition of alkali and Alkaline Earth metal Salts. Previous studies investigated this reaction in a biphasic system using Salts to enhance the partitioning of HMF and suppress undesired products thereby increasing the overall selectivity. The results of this study suggest the presence of Alkaline Earth Salt/glucose interactions that affect glucose conversion and HMF yield. While sulfate Salts tended to lead to higher activity than chloride Salts, the further addition of HCl led to decreased conversion through a competitive anion effect.