New Proposal in a Biorefinery Context: Recovery of Acetic and Formic Acids by Adsorption on Hydrotalcites

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New Proposal in a Biorefinery Context: Recovery of Acetic and Formic Acids  by Adsorption on Hydrotalcites
Catalysts, Free Full-Text
New Proposal in a Biorefinery Context: Recovery of Acetic and Formic Acids  by Adsorption on Hydrotalcites
Sustainable Chemistry, Free Full-Text
New Proposal in a Biorefinery Context: Recovery of Acetic and Formic Acids  by Adsorption on Hydrotalcites
Energies, Free Full-Text
New Proposal in a Biorefinery Context: Recovery of Acetic and Formic Acids  by Adsorption on Hydrotalcites
Hydrogenolysis Goes Bio: From Carbohydrates and Sugar Alcohols to
New Proposal in a Biorefinery Context: Recovery of Acetic and Formic Acids  by Adsorption on Hydrotalcites
Surface Area- and Structure-Dependent Effects of LDH for Highly
New Proposal in a Biorefinery Context: Recovery of Acetic and Formic Acids  by Adsorption on Hydrotalcites
Marcus FORTE, Professor (Associate), PhD
New Proposal in a Biorefinery Context: Recovery of Acetic and Formic Acids  by Adsorption on Hydrotalcites
Hierarchically porous bacterial cellulose nanofibrous membranes
New Proposal in a Biorefinery Context: Recovery of Acetic and Formic Acids  by Adsorption on Hydrotalcites
New Proposal in a Biorefinery Context: Recovery of Acetic and
New Proposal in a Biorefinery Context: Recovery of Acetic and Formic Acids  by Adsorption on Hydrotalcites
Hierarchically porous bacterial cellulose nanofibrous membranes
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