IP Library Granted Patent US 9,073,765
Granted Patent B2
US 9,073,765 · App. 13/884,996 · Granted Jul 7, 2015

Method to remove organic pollutants through coupling microwave degradation based on microporous mineral adsorption

Inventors: Hefa Cheng (Guangzhou, CN); Erdan Hu (Guangzhou, CN)
Assignee: Guangzhou Institute of Geochemistry, Chinese Academy of Sciences
C02F1/281C02F1/302C02F2101/30C02F2101/306C02F2101/345C02F2101/36C02F2303/16
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Quick Facts
Patent No.
US 9,073,765
App. No.
13/884,996
Granted
Jul 7, 2015
Kind
B2
Abstract

This invention discloses a kind of method to remove organic pollutants through coupling microwave degradation based on microporous mineral adsorption. It consists of the following major steps: Fill hydrophobic porous mineral adsorbent into the adsorption column to adsorb organic pollutants in the organic wastewater, and start up the microwave generator after the adsorbent reaches saturation so that the organic pollutants adsorbed inside the adsorption column can be degraded under microwave induction. With the alternative operation and regeneration of two adsorption columns, the organic wastewater can be treated continuously. In the invention, with the technologies of microwave-induced degradation through hydrophobic microporous mineral coupling adsorption, organic pollutants can be removed from water efficiently, and the degradation process and carrier can be circulated. The pollutants can be mineralized into non-toxic and harmless micromolecular substance completely.

Claims (12)

1. A method to remove organic pollutants from organic wastewater through coupling microwave degradation based on microporous mineral adsorption comprising:

1) Filling a first adsorption column of a first reactor and a second adsorption column of a second reactor with mineral-radical hydrophobic porous adsorbent, wherein the mineral-radical hydrophobic porous adsorbent is dealuminized HY zeolite, each of said first and second adsorption columns having a layer of microwave coil wrapping on the external surface thereof;

2) Starting up a water pump, drawing out the organic wastewater from a water container, pumping the organic wastewater through a filtering apparatus to remove insoluble substances from the organic wastewater pumping the filter wastewater through an intake of the first reactor and into the first adsorption column of the first reactor after going through a total control valve, a flow meter, and a changeover valve, and staying inside the first adsorption column in the first reactor for a period of time long enough so that the organic pollutants can reach adsorptive equilibrium with the mineral-radical hydrophobic porous adsorbent, and leading the treated wastewater from the outlet of the first reactor;

3) Testing the concentration of the organic pollutants in the water flowing out of the intake of the first reactor at intervals, actuating a changeover switch to switch the filtered wastewater flow to an intake of the second reactor when the concentration reaches a preset value, and adsorbing the organic pollutants with the second adsorption column inside the second reactor;

4) Starting up a microwave generator, connecting it to the layer of microwave coil on the first adsorption column, and adjusting the microwave emitting energy to an appropriate power level so that the organic pollutants on the mineral-radical hydrophobic porous adsorbent inside the first adsorption column can be degraded;

5) Shutting down the microwave generator and disconnecting it from the microwave coil on the first adsorption column when the organic pollutants inside the first adsorption column are degraded completely;

6) After the second adsorption column adsorbs the organic pollutants fully, switching the water flow back to the intake of the first reactor, re-starting up the microwave generator, connecting it to the layer of microwave coil on the second adsorption column, and adjusting the microwave emitting energy to an appropriate power level, degrading the organic pollutants on the mineral-radical hydrophobic porous adsorbent inside the second adsorption column by way of microwave induction, regenerating the second adsorption column, shutting down the microwave generator and disconnecting it from the layer of microwave coil on the second adsorption column; and

7) Repeating Steps 2) to 6) until the treatment of the organic wastewater inside the water container is completed.

2. The method of claim 1 , wherein the first adsorption column and the second adsorption column are made of a quartz material.

3. The method of claim 1 , wherein, in Step 1), the first adsorption column is set inside a cavity made of aluminum and the second adsorption column is set inside a cavity made of aluminum.

4. The method of claim 1 , wherein, in Step 2), a velocity at which the organic wastewater flows into the first reactor and the second reactor is controlled via the total control valve.

5. The method of claim 1 , wherein, in Step 3), the intervals last for a time period of one hour.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE THE COUNTRY FOR THE ASSIGNEE PREVIOUSLY RECORDED ON REEL 030401 FRAME 0083. ASSIGNOR(S) HEREBY CONFIRMS THE EXECUTED ASSIGNMENT HAS THE CORRECT COUNTRY. Recorded Jul 21, 2015
From: CHENG, HEFA; HU, ERDAN
To: GUANGZHOU INSTITUTE OF GEOCHEMISTY, CHINESE ACADEMY OF SCIENCES
Reel/Frame 036140/0067 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 13, 2013
From: CHENG, HEFA; HU, ERDAN
To: GUANGZHOU INSTITUTE OF GEOCHEMISTRY, CHINESE ACADEMY OF SCIENCES
Reel/Frame 030401/0083 →
Priority Claims (1)
CN 2012 1 0017345 · Jan 19, 2012 · national
Continuity (1)
Related Publication 20140027381A1 · Jan 30, 2014