Method for oxidative degradation of lignin into aromatic monomers through molybdenum catalysis
A technology of oxidative degradation and lignin, applied in the field of comprehensive utilization of biomass conversion to organic chemicals, can solve the problems of low yield of target aromatic monomers and harsh operating conditions, and achieve mild operating conditions, high yield, and degradation system. simple effect
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Embodiment 1
[0014] Add 1.0g poplar sawdust, 0.5g oxymolybdenum acetylacetonate, and 30mL methanol into a 100mL reactor, oxygenate to 1.0MPa, and keep the temperature at 180°C for 6h. Cool to room temperature, use GC-MS and compare with standard substances to qualitatively analyze the product, and use external standard method for quantitative analysis; the ratio of the quality of each product obtained to the quality of lignin in the initial feed is its yield.
[0015] The aromatic monomers in the product mainly include p-hydroxybenzaldehyde, p-hydroxybenzoic acid, methyl p-hydroxybenzoate, vanillin, vanillone, vanillic acid, methyl vanillate, syringaldehyde, syringic acid, and methyl syringate. The yield of the total aromatic small molecule compounds is 68wt%.
Embodiment 2
[0017] Add 1.0g of beech sawdust, 0.5g of molybdenum trioxide, and 30mL of ethanol into a 100mL reactor, oxygenate to 1.0MPa, and keep the temperature at 150°C for 5h. Cool to room temperature, adopt embodiment 1 method to carry out qualitative and quantitative analysis to reaction solution.
[0018] The aromatic small molecules in the product mainly include p-hydroxybenzaldehyde, p-hydroxybenzoic acid, ethyl p-hydroxybenzoate, vanillin, vanillone, vanillic acid, ethyl vanillate, syringaldehyde, syringic acid, and ethyl syringate. The yield of the total aromatic small molecule compounds is 62wt%.
Embodiment 3
[0020] Add 1.0g of sulfonate lignin, 0.2g of sodium molybdate, and 30mL of ethylene glycol into a 100mL reaction kettle, oxygenate to 1.0MPa, and keep the temperature at 120°C for 10h. Cool to room temperature, adopt embodiment 1 method to carry out qualitative and quantitative analysis to reaction solution.
[0021] The aromatic small molecules in the product mainly include p-hydroxybenzaldehyde, p-hydroxybenzoic acid, ethyl p-hydroxybenzoate, vanillin, vanillone, vanillic acid, ethyl vanillate, syringaldehyde, syringic acid, and ethyl syringate. The yield of the total aromatic small molecule compounds is 60wt%.
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