Supercritical water oxidation reactor and method for processing waste water
A technology of supercritical water oxidation and reactor, which is applied in the direction of oxidized water/sewage treatment, etc., to achieve stable operation, increase conversion rate, and save consumption
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Embodiment 1
[0032] Such as figure 1 As shown, the supercritical water oxidation reactor is composed of a reactor cylinder 3, an oxidant distribution coil 11 and an electric heating device 12; wherein the material of the reactor cylinder is 316L, the height is 6m, and the inner diameter is 0.6m; the reactor cylinder The lower part of 3 is provided with oxidant distribution coil 11, and the material is 316L. The bottom of the reactor cylinder 3 is provided with an electric heating device 12; the top of the reactor is provided with a pressure control valve 5, the bottom of the reactor is provided with an inorganic salt discharge valve 13, and the lower part of the reactor cylinder 3 is provided with an oxidant inlet connecting pipe 1 And the waste water inlet connection pipe 2, the upper part is provided with the clean water outlet connection pipe 6, wherein the oxidant inlet connection pipe 1 is connected with the oxidant distribution coil 11; the oxidant distribution coil 11 is provided w...
Embodiment 2
[0034]When starting, first inject a certain amount of ordinary clear water into the reactor with a high-pressure pump, then close the high-pressure pump, adjust the pressure control valve 5 to make the pressure (30MPa) in the reactor reach the process requirement, and use the heater 12 to heat. When the pressure reaches 30MPa and the temperature reaches 400°C, turn on the high-pressure liquid oxygen pump, pass the liquid oxygen through the connecting pipe 1, distribute it through the distribution coil 11, and then send it into the reactor from the small hole 9 on the tube 4, and turn on the waste water pump to inject waste water. The catalytic waste water with a COD value of 36000mg / L is added to 30MPa by the waste water pump, then enters the reactor through the connecting pipe 2 at a flow rate of 0.25t / h, and is heated to 400°C by the heater 12, and the liquid oxygen is supplied by the high-pressure liquid oxygen pump at 50kg / h The flow of h is distributed from the connecting...
Embodiment 3
[0036] When starting, first inject a certain amount of ordinary clean water into the reactor with the sludge pump, then close the sludge pump, adjust the pressure control valve 5 to make the reactor reach the pressure (30MPa) required by the process, and use the heater 12 to heat. When the pressure reaches 30MPa and the temperature reaches 400°C, turn on the hydrogen peroxide high-pressure pump, pass the hydrogen peroxide through the connecting pipe 1, distribute it through the distribution coil 11, and then send it into the reactor from the small hole 9 on the tube 4, and at the same time open the sludge and inject the sludge . The chemical sludge with a COD value of 80000mg / L is fed to 35MPa by the sludge pump, and then enters the reactor through the connecting pipe 2 at a flow rate of 0.5t / h, and is heated to 460°C by the heater 12. The flow rate per hour is distributed by the connecting pipe 1 through the distribution coil 11, and then enters the reactor from the small hol...
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