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Boron doped CVD diamond BDD electrode for waster water treatment Conductive
BDD electrodes can effectively degrade various organic waste water,
such as organic waste water in the fields of medicine
/agrochemicals, petrochemicals, coking, smelting, printing and
dyeing,
papermaking, tanning, explosives, wine making, landfill leachate,
etc.
Size available: 1-200mm
No. | Product Name | Substrates | Specs | Unit |
1 | BDD Electrode | Silicon, single side coated | 5*5*0.55mm | Piece |
2 | BDD Electrode | Silicon, double side coated | 5*5*1.0mm 2 holes open | Piece |
3 | BDD Electrode | Silicon, double side coated | 5*5*1.0mm 4 holes open | Piece |
4 | BDD Electrode | Silicon, double side coated | 8*6*1 Slotting | Piece |
5 | BDD Electrode | Silicon, double side coated | 7*7*0.5mm | Piece |
6 | BDD Electrode | Silicon, single side coated | 10*10*0.625mm | Piece |
7 | BDD Electrode | Silicon, double side coated | 10*10*0.625mm | Piece |
8 | BDD Electrode | Silicon, double side coated | 10*10*0.5mm | Piece |
Under the same conditions, the efficiency and energy consumption of BDD electrodes in degrading organics are significantly better than other electrodes
Although using P b O 2 plates or P t nets as anodes can effectively generate ozone, they have disadvantages such as low durability, high price, and harmful effects to the environment. Boron-doped diamond (B D D) electrodes have also been reported to produce ozone without the use of any electrolyte. The applications of B D D in extreme electrochemistry, such as wastewater treatment and the synthesis of hydroxyl, have been well documented. Due to its excellent chemical and physical stability, B D D is used in ozone-generated anode materials.
CVD diamond BDD Application: