Use of biomass for cracking residual carbon
A biomass and carbon residue technology, applied in the field of biomass pyrolysis residue carbon, can solve the problems of low utilization rate, environmental pollution, uneconomical and so on
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Embodiment 1
[0012] The dried charcoal material (biomass pyrolysis residual carbon and biomass pyrolysis residual tar were mixed and molded at a weight ratio of 0.5:1) was heated at a rate of 4°C / min under the protection of nitrogen with a flow rate of 10mL / min g charcoal When the temperature reaches 650°C, turn on the water with a water flow rate of 1mL / min·g carbon, pass the generated water vapor into the sample, and activate the reaction for 6 hours. Finally, under the protection of nitrogen, the temperature is lowered to room temperature, the product is taken out, dried to constant weight, and pulverized to obtain powdered activated carbon with an iodine adsorption value of more than 750 mg / g and a methylene blue value of more than 150 mg / g.
Embodiment 2
[0014] The dried charcoal material (biomass pyrolysis residual carbon and biomass pyrolysis residual tar were mixed and molded at a weight ratio of 1:1) was heated at a rate of 4°C / min under the protection of nitrogen with a flow rate of 15mL / min g charcoal When the temperature reaches 750°C, turn on the water with a water flow rate of 0.05mL / min·g carbon, pass the generated water vapor into the sample, and activate the reaction for 4 hours. Finally, under the protection of nitrogen, the temperature is lowered to room temperature, the product is taken out, dried to constant weight, and pulverized to obtain powdered activated carbon with an iodine adsorption value of more than 750 mg / g and a methylene blue value of more than 150 mg / g.
Embodiment 3
[0016] The dried charcoal material (biomass pyrolysis residual carbon and biomass pyrolysis residual tar are mixed and shaped at a weight ratio of 1.5:1) is heated at a rate of 4°C / min under the protection of nitrogen with a flow rate of 20mL / min g charcoal When the temperature reaches 800°C, turn on the water with a water flow rate of 0.05mL / min·g carbon, pass the generated water vapor into the sample, and activate the reaction for 3 hours. Finally, under the protection of nitrogen, the temperature is lowered to room temperature, the product is taken out, dried to constant weight, and pulverized to obtain powdered activated carbon with an iodine adsorption value of more than 750 mg / g and a methylene blue value of more than 150 mg / g.
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