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C20H26O4 is an organic compound with a molecular formula indicating it contains 20 carbon atoms, 26 hydrogen atoms, and 4 oxygen atoms. C20H26O4 likely belongs to a class of organic molecules known as diterpenes, which are a type of terpene with a molecular weight around 300. Diterpenes are a diverse group of natural products that can be found in various plants and are known for their wide range of biological activities, including anti-inflammatory, anticancer, and antimicrobial properties. The specific compound C20H26O4 could be a derivative or a specific isomer within this class, and its exact structure and properties would depend on the arrangement of these atoms and the functional groups present.

5658-56-0

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5658-56-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 5658-56-0 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 5,6,5 and 8 respectively; the second part has 2 digits, 5 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 5658-56:
(6*5)+(5*6)+(4*5)+(3*8)+(2*5)+(1*6)=120
120 % 10 = 0
So 5658-56-0 is a valid CAS Registry Number.

5658-56-0Downstream Products

5658-56-0Relevant academic research and scientific papers

Photocatalytic Upgrading of Lignin Oil to Diesel Precursors and Hydrogen

Dou, Zhaolin,Wang, Min,Zhang, Zhe,Zhou, Hongru

, p. 16399 - 16403 (2021)

Producing renewable biofuels from biomass is a promising way to meet future energy demand. Here, we demonstrated a lignin to diesel route via dimerization of the lignin oil followed by hydrodeoxygenation. The lignin oil undergoes C?C bond dehydrogenative coupling over Au/CdS photocatalyst under visible light irradiation, co-generating diesel precursors and hydrogen. The Au nanoparticles loaded on CdS can effectively restrain the recombination of photogenerated electrons and holes, thus improving the efficiency of the dimerization reaction. About 2.4 mmol gcatal?1 h?1 dimers and 1.6 mmol gcatal?1 h?1 H2 were generated over Au/CdS, which is about 12 and 6.5 times over CdS, respectively. The diesel precursors are finally converted into C16–C18 cycloalkanes or aromatics via hydrodeoxygenation reaction using Pd/C or porous CoMoS catalyst, respectively. The conversion of pine sawdust to diesel was performed to demonstrate the feasibility of the lignin-to-diesel route.

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