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boron doped diamond electrodes for garbage permeate treatment
boron doped diamond electrodes for garbage permeate treatment
boron doped diamond electrodes for garbage permeate treatment
boron doped diamond electrodes for garbage permeate treatment
boron doped diamond electrodes for garbage permeate treatment
boron doped diamond electrodes for garbage permeate treatment
boron doped diamond electrodes for garbage permeate treatment
boron doped diamond electrodes for garbage permeate treatment

boron doped diamond electrodes for garbage permeate treatment

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≥3 Pieces
US $400
≥10 Pieces
US $350
≥50 Pieces
US $320
≥100 Pieces
US $300
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Quick Details

Model Number:
Boron-Doped Diamond Electrodes 005
Use:
Electrochemical Oxidation and Cleavage of Peptides
Product name:
boron doped diamond electrodes for garbage permeate treatment
Material:
synthetic diamond
Application:
water treatment
Usage:
Water purifier
Keywords:
boron doped diamond electrode
Size:
Customization
Feature:
effectively degrade various organic waste water
Shape:
Square Rectangle
BDD concetration:
3000~5000 PPM
Function:
Producing Fresh Water

Quick Details

Type:
blasting media
Place of Origin:
China
Brand Name:
Somebetter
Model Number:
Boron-Doped Diamond Electrodes 005
Use:
Electrochemical Oxidation and Cleavage of Peptides
Product name:
boron doped diamond electrodes for garbage permeate treatment
Material:
synthetic diamond
Application:
water treatment
Usage:
Water purifier
Keywords:
boron doped diamond electrode
Size:
Customization
Feature:
effectively degrade various organic waste water
Shape:
Square Rectangle
BDD concetration:
3000~5000 PPM
Function:
Producing Fresh Water

boron doped diamond electrodes for garbage permeate treatment

BDD electrode for diamond electrode water purification

Boron-doped diamond (BDD) is a new type of diamond formed by adding boron in the process of diamond growth. Electrodes made of boron-containing diamond are also called BDD electrodes or boron-doped diamond electrodes. BDD electrodes are usually made into thin films by chemical vapor deposition (CVD).

The BDD electrode uses boron-doped diamond film as the electrode anode, and titanium or other materials as the cathode for electrolysis. The special sp3 bond structure of boron-doped diamond film and its electrical conductivity give the diamond film electrode excellent electrochemical characteristics, extremely high oxygen evolution potential and widest electrochemical window, lower background current, and better physical and chemical stability and low adsorption characteristics. It is an ideal anode material for electrochemical oxidation treatment of hard-to-biodegrade organic wastewater.

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.

Advangtages

Under the same conditions, the efficiency and energy consumption of BDD electrodes in degrading organics are significantly better than other electrodes.

Application areas:

  1. Making electrode materials for sewage treatment, so it is widely used in the environmental protection industry;
  2. Making electrode materials for electronic manufacturing and deep processing,
  3. Used as a diamond tool to increase the tool’s sharpness and improve the cutting and grinding efficiency
Specifications
Tolerance of Thickness: ±25um
Flatness: <4um/cm
Thermal conductivity three types : 1300W/mK; 1500W/mK;1800 W/mK (more than 9 times compard to Silicone 139 W/mK)
Density: 3.5g/cm3
Young's modulus: 1000-1100Gpa
Growth side surface finish: <100 nm Ra
Nucleation side surface finish: <30 nm Ra

Pharmaceutical intermediate case (Small test-1L)
The water sample mainly contains organic solvents such as pyridine and morpholine; the water volume is about 30t/day; the current treatment processes include: graphite electrode electrolysis, iron-carbon micro-electrolysis, air flotation, biochemistry, etc.; wastewater degradation is difficult and difficult to meet the standard.
Degradation requirements: COD < 500mg/L, ammonia nitrogen < 50mg/L; after degradation, it will be discharged into the sewage system of the industrial park

Influencing factors and scope of application of BDD electrodes

According to the previous degradation and analysis of various types of water quality, it is
found that the following types of wastewater can be pre-treated or directly degraded to
achieve the target :
1. Suitable for all kinds of wastewater with strong acid PH=0----strong alkali PH=14 (except fluoride ion)
2. High-salinity wastewater The higher the salt content, the higher the electrical conductivity and the lower the
energy consumption for degradation
3. High-concentration + high-salt wastewater (concentrate after membrane, concentrate after MVR)
4. Highly toxic wastewater containing CN-, NAN3, etc.
5. High ammonia nitrogen + high salt wastewater
6. Various types of water defined as hazardous waste
7. The improvement of the national discharge standard/the unstable end-product water, the final stabilization
treatment and the standard treatment
Purpose: Based on the unique advantages of BDD, it can be used as a key link in the entire environmental
protection process, and combined with evaporation, membrane filtration, biochemical, and other
electrochemical processes, and finally achieve long-term and stable emission standards in a stable, efficient
and cost-effective way .
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