Hydrated ferric oxide loaded nano-composite semi-coke and preparation method thereof
A technology of hydrated iron oxide and iron oxide nanometers, which is applied in chemical instruments and methods, other chemical processes, water/sewage treatment, etc., and can solve the problem of unsatisfactory deep phosphorus removal effect of hydrated iron oxide
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Embodiment 1
[0023] A method for preparing hydrated iron oxide nanocomposite semi-coke, comprising the following steps:
[0024] (1) Take 5g of biomass pyrolysis semi-coke with good pore distribution and stable skeleton into a three-neck flask, add 10ml of ethanol and 100ml of water, stir for 30min, and repeat suction filtration and washing 3 times to obtain sample 1.
[0025] (2) Transfer the sample 1 obtained in step (1) into a three-necked flask, add 20ml of ethanol, 10ml of concentrated hydrochloric acid with a concentration of 37%, and 170ml of 1mol / L FeCl 3 solution, stirred for 12 hours, repeated suction filtration and washing 3 times to obtain sample 2;
[0026] (3) Transfer the sample 2 obtained in step (2) into a 250ml beaker, add 200ml of water, add 0.1M NaOH dropwise while stirring until the pH is 12, filter with suction, wash, and then put it in a vacuum oven at 60°C and -0.05KPa for 72h. The nanocomposite semi-coke 1 loaded with hydrated iron oxide was obtained.
Embodiment 2
[0028] A method for preparing hydrated iron oxide nanocomposite semi-coke, comprising the following steps:
[0029] (1) Take 2g of biomass pyrolysis semi-coke with good pore distribution and stable skeleton into a three-necked flask, add 5ml of ethanol and 50ml of water, stir for 20min, and repeat suction filtration and washing 3 times to obtain sample 1.
[0030] (2) Transfer the sample 1 obtained in step (1) into a three-necked flask, add 15ml of ethanol, 15ml of concentrated hydrochloric acid with a concentration of 37%, and 150ml of 1mol / L FeCl 3 solution, stirred for 10 h, repeated suction filtration and washing 3 times to obtain sample 2;
[0031] (3) Transfer the sample 2 obtained in step (2) into a 250ml beaker, add 150ml of water, add 0.1M NaOH dropwise while stirring, until the pH is 11, filter with suction, wash, and then put it in a vacuum oven at 60°C and -0.05KPa for 72h. The nanocomposite semi-coke 2 loaded with hydrated iron oxide was obtained.
Embodiment 3
[0033] A method for preparing hydrated iron oxide nanocomposite semi-coke, comprising the following steps:
[0034] (1) Take 10g of biomass pyrolysis semi-coke with good pore distribution and stable skeleton into a three-necked flask, add 15ml of ethanol and 150ml of water, stir for 40min, repeat suction filtration and washing 3 times, and obtain sample 1.
[0035] (2) Transfer the sample 1 obtained in step (1) into a three-necked flask, add 25ml of ethanol, 25ml of concentrated hydrochloric acid with a concentration of 37%, and 250ml of 1mol / LFeCl 3 solution, stirred for 14 hours, and repeated suction filtration and washing 3 times to obtain sample 2;
[0036] (3) Transfer the sample 2 obtained in step (2) into a 250ml beaker, add 250ml of water, add 0.1M NaOH dropwise while stirring until the pH is 13, filter with suction, wash, and then put it in a vacuum oven at 60°C and -0.05KPa for 72h. The nanocomposite semi-coke 3 loaded with hydrated iron oxide was obtained.
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