Method for preparing sludge carbon by virtue of microwave-assisted hydrothermal carbonization
A hydrothermal carbonization and microwave-assisted technology, applied in the direction of pyrolysis treatment of sludge, sludge treatment through temperature control, etc., to achieve the effects of easy popularization and application, wide range of sources, and low production cost
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Embodiment 1
[0026] Feed the domestic sludge with a moisture content of 80wt% into the hydrothermal reactor, seal it, and carry out hydrothermal carbonization reaction by microwave-assisted heating. The microwave power is 200W, the pressure inside the reactor is 2.3atm, and the hydrothermal temperature is 200℃. The time was 120 min to obtain a hydrothermal carbonization solution; centrifugation at 3000 rpm for solid-liquid separation, the solid product was washed three times with water, and dried in an oven at 40 °C to obtain sludge charcoal.
[0027] The yield of sludge charcoal is 67%, the content of organic matter is 28.97%, its available phosphorus and available nitrogen have increased by 33.26% and 36.23% respectively compared with the original sludge, and it also contains a lot of carbon and nutrients. The heavy metals were measured, and the contents of Cd and Cu in the leach solution were reduced by 88.59% and 92.21% respectively compared with the original sludge.
Embodiment 2
[0029] Feed domestic sludge with a moisture content of 85wt% into a hydrothermal reactor, seal it, and microwave-assisted heating for hydrothermal carbonization reaction. The microwave power is 400W, the pressure inside the reactor is 2.2atm, and the hydrothermal temperature is controlled at 250°C. The reaction time was 90 min to obtain hydrothermal carbonization liquid; the solid-liquid separation was carried out by centrifugation at 3500 rpm, the solid product was washed three times with water, and dried in an oven at 50 °C to obtain sludge charcoal.
[0030] The yield of sludge charcoal was 61.5%, the content of organic matter was 24.69%, and the available phosphorus and available nitrogen increased by 33.26% and 35.55% respectively compared with the original sludge. The heavy metals were measured, and the contents of Cd and Cu in the drench solution were reduced by 83.12% and 95.16% respectively compared with the original sludge.
Embodiment 3
[0032] The domestic sludge with a moisture content of 80 wt% was sent into the hydrothermal reactor, sealed, and microwave-assisted heating was carried out for hydrothermal carbonization reaction. The microwave power was 600W, the pressure inside the reactor was 3 atm, and the hydrothermal temperature was 300°C. The reaction time was 90 min to obtain a hydrothermal carbonization solution; centrifugation at 3000 rpm for solid-liquid separation, the solid product was washed three times with water, and dried in an oven at 40°C to obtain sludge charcoal.
[0033] The yield of sludge charcoal was 55.14%, and the organic matter content was 20.47%. Compared with the original sludge, its available phosphorus and available nitrogen increased by 32.62% and 36.79%, respectively, and it also contained a large amount of carbon and nutrients. The heavy metals were measured, and the contents of Cd and Cu in the leach solution were reduced by 94.11% and 98.28% respectively compared with the or...
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