Ru-based Activated Carbon-MgO Mixed Catalyst for Depolymerization of Alginic Acid 


Vol. 28,  No. 3, pp. 232-237, Sep.  2022
10.7464/ksct.2022.28.3.232


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  Abstract

Biorefineries, in which renewable resources are utilized, are an eco-friendly alternative based on biomass feedstocks. Alginic acid, a major component of brown algae, which is a type of marine biomass, is widely used in various industries and can be converted into value-added chemicals such as sugars, sugar alcohols, furans, and organic acids via catalytic hydrothermal decomposition under certain conditions. In this study, ruthenium-supported activated carbon and magnesium oxide were mixed and applied to the depolymerization of alginic acid in a batch reactor. The addition of magnesium oxide as a basic promoter had a strong influence on product distribution. In this heterogeneous catalytic system, the separation and purification processes are also simplified. After the reaction, low molecular weight alcohols and organic acids with 5 or fewer carbons were produced. Specifically, under the optimal reaction conditions of 30 mL of 1 wt% alginic acid aqueous solution, 100 mg of ruthenium-supported activated carbon, 100 mg of magnesium oxide, 210 ℃ of reaction temperature, and 1 h of reaction time, total carbon yields of 29.8% for alcohols and 43.8% for a liquid product were obtained. Hence, it is suggested that this catalytic system results in the enhanced hydrogenolysis of alginic acid to value-added chemicals.

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  Cite this article

[IEEE Style]

Y. SD, K. HJ, P. JH, K. DH, "Ru-based Activated Carbon-MgO Mixed Catalyst for Depolymerization of Alginic Acid," Clean Technology, vol. 28, no. 3, pp. 232-237, 2022. DOI: 10.7464/ksct.2022.28.3.232.

[ACM Style]

Yang SD, Kim HJ, Park JH, and Kim DH. 2022. Ru-based Activated Carbon-MgO Mixed Catalyst for Depolymerization of Alginic Acid. Clean Technology, 28, 3, (2022), 232-237. DOI: 10.7464/ksct.2022.28.3.232.