Sepiolite loaded metal phthalocyanine catalyst, and applications thereof in catalytic preparation of humic acid
A technology for supporting metals and metal phthalocyanines, applied in physical/chemical process catalysts, organic compound/hydride/coordination complex catalysts, chemical instruments and methods, etc., can solve the problem of large amount of oxidant and low yield of humic acid , long reaction time and other problems, to achieve the effect of high humic acid content, great application value and short reaction time
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Embodiment 1
[0017] Example 1 Preparation of sepiolite loaded nitrophthalocyanine iron
[0018] Methods as below:
[0019] (1) Immerse sepiolite in 6mol / L hydrochloric acid, the volume ratio of the two is 1:9, after soaking for 72, suction filter, wash, dry, grind to 80 mesh particles, and set aside.
[0020] (2) Take 10.0 g of the above-mentioned pretreated sepiolite, 200 mg of nitrophthalocyanine iron, and 10 mL of N, N-dimethylformamide (DMF), put them in a flask, stir for 20 h, filter with suction, wash with DMF, After drying in an oven at 100°C, the temperature was raised to 200°C and baked for 4 hours to obtain nitrophthalocyanine iron supported on sepiolite.
[0021] Utilize above-mentioned sepiolite-loaded metal phthalocyanine heterogeneous catalyst to catalyze the method for preparing humic acid by oxidizing weathered coal, as follows:
[0022] After the weathered coal is crushed and passed through an 80-mesh sieve, 10 g (accurate to 0.1 g) of the deashed coal sample and 0.08 g ...
Embodiment 2
[0024] Example 2 Preparation of sepiolite-supported alkoxy-substituted manganese phthalocyanine
[0025] Methods as below:
[0026] (1) Immerse sepiolite in 6mol / L hydrochloric acid, the volume ratio of the two is 1:9, after soaking for 72, suction filter, wash, dry, grind to 80 mesh particles, and set aside.
[0027] (2) Take 10.0 g of the above-mentioned pretreated sepiolite, 200 mg of alkoxy-substituted manganese phthalocyanine, and 40 mL of chloroform, put them in a flask, stir for 20 hours, filter with suction, wash with chloroform, and dry in an oven at 100 ° C. Raise the temperature to 200°C and bake for 4 hours to obtain manganese phthalocyanine supported on sepiolite.
[0028] Utilize above-mentioned sepiolite-loaded metal phthalocyanine heterogeneous catalyst to catalyze the method for preparing humic acid by oxidizing weathered coal, as follows:
[0029] After the weathered coal is crushed and passed through an 80-mesh sieve, 10 g (accurate to 0.1 g) of the deashe...
Embodiment 3
[0031] Example 3 Preparation of sepiolite-supported sulfonated cobalt phthalocyanine
[0032] Methods as below:
[0033] (1) Immerse sepiolite in 3mol / L nitric acid solution, the volume ratio of the two is 1:9, after soaking for 60°C, filter with suction, wash, dry, grind to 80 mesh particles, and set aside.
[0034] (2) Take 10.0 g of the above-mentioned pretreated sepiolite, 100 mg of sulfonated cobalt phthalocyanine, and 30 mL of water, put them in a flask, stir for 20 hours, filter with suction, wash with water, dry in an oven at 100 ° C, and heat up to Bake at 200°C for 4 hours to obtain sulfonated cobalt phthalocyanine supported on sepiolite.
[0035] Utilize above-mentioned sepiolite-loaded metal phthalocyanine heterogeneous catalyst to catalyze the method for preparing humic acid by oxidizing weathered coal, as follows:
[0036] After the weathered coal is crushed and passed through an 80-mesh sieve, 10 g of the deashed coal sample (accurate to 0.1 g) and 0.10 g of c...
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