Iron-based double-ligand metal organic framework material capable of preferentially adsorbing ethane as well as preparation method and application of iron-based double-ligand metal organic framework material
A metal organic framework, preferential adsorption technology, applied in separation methods, chemical instruments and methods, gas treatment and other directions, can solve the problems of easy structure collapse, poor ethane/ethylene adsorption selectivity, low ethane and ethylene adsorption capacity, etc. Efficient separation and good water vapor stability
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Embodiment 1
[0034] (1) Synthesis of iron clusters: 25.4262 g of anhydrous sodium acetate and 8.08 g of Fe(NO 3 ) 3 9H 2 O was dissolved in 50 mL water respectively to obtain sodium acetate solution and ferric nitrate solution; then the sodium acetate solution was dropped into the ferric nitrate solution drop by drop, and stirred for 12 h to form a suspension; then the suspension was filtered to obtain reddish-brown solid, and washed successively with 50 mL deionized water and 50 mL ethanol, and finally placed the product in a vacuum oven at 70 °C for 12 h at constant temperature to obtain iron clusters [Fe 3 (CH 3 COO) 6 ].
[0035] (2) Synthesis of iron-based double-ligand metal-organic framework materials: 60 mg terephthalic acid and 33 mg triethylenediamine were dissolved in 5 mL DMF to form a mixed solution; 10 1 mL of DMF solution in which 242 mg of iron clusters were dissolved was added dropwise to 1.525 mg of glacial acetic acid, and stirred for 30 min until the mixture was un...
Embodiment 2
[0037] (1) Synthesis of iron clusters: 25.4262 g of anhydrous sodium acetate and 8.08 g of Fe(NO 3 ) 3 9H 2 O was dissolved in 50 mL water respectively to obtain sodium acetate solution and ferric nitrate solution; then the sodium acetate solution was dropped into the ferric nitrate solution drop by drop, and stirred for 12 h to form a suspension; then the suspension was filtered to obtain reddish-brown solid, and washed successively with 50 mL deionized water and 50 mL ethanol, and finally placed the product in a vacuum oven at 70 °C for 12 h at constant temperature to obtain iron clusters [Fe 3 (CH 3 COO) 6 ].
[0038] (2) Synthesis of iron-based double-ligand MOFs: 53.375 mg of terephthalic acid and 27.45 mg of triethylenediamine were dissolved in 5 mL of DMF to form a mixed solution; 10 DMF solution in which 228.75 mg of iron clusters were dissolved was added dropwise to 1.525 mg of glacial acetic acid, and stirred for 30 min until the mixture was uniform; The progra...
Embodiment 3
[0040] (1) Synthesis of iron clusters: 25.4262 g of anhydrous sodium acetate and 8.08 g of Fe(NO 3 ) 3 9H 2 O was dissolved in 50 mL water respectively to obtain sodium acetate solution and ferric nitrate solution; then the sodium acetate solution was dropped into the ferric nitrate solution drop by drop, and stirred for 12 h to form a suspension; then the suspension was filtered to obtain reddish-brown solid, and washed successively with 50 mL deionized water and 50 mL ethanol, and finally placed the product in a vacuum oven at 70 °C for 12 h at constant temperature to obtain iron clusters [Fe 3 (CH 3 COO) 6 ].
[0041] (2) Synthesis of iron-based double-ligand metal-organic framework materials: 68.625 mg of terephthalic acid and 36.6 mg of triethylenediamine were dissolved in 5 mL of DMF to form a mixed solution; 10 DMF solution in which 251.625 mg of iron clusters were dissolved was added dropwise to 1.525 mg of glacial acetic acid, and stirred for 30 min until the mix...
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