Boron Doped Diamond Technology Research

Boron Doped Diamond Technology: Research & Development

Boromond start research and development of boron doped diamond BDD technology since the thin film coating and surface technology cross research laboratory established technology accumulation precipitation breakthrough in China. After 10 years of research and development, and constant engineering updates on chemical vapour deposition process, Boromond become one of the major manufacturers of conductive sp3 bonded boron doped diamond (BDD) materials, mainly boron doped diamond grits, boron doped diamond microns, and then one of the major manufacturers & producers who can prepare commercially available large area boron doped diamond BDD electrode in the Greater China Area.

Development & Engineering

Collaborative Partnership with Universities

Boromond exemplifies a pioneering collaboration with the technology research and development team at Central South University. This partnership is laser-focused on the transformation of cutting-edge scientific discoveries into market-ready innovations, with a particular emphasis on the application of BDD (Boron-Doped Diamond) materials and BDD electrodes. Notably, the R&D brigade at Central South University has achieved a unique milestone in China, surmounting the complexities of large-scale BDD electrode production.

This groundbreaking initiative boasts a dedicated team exceeding 30 members, comprising a distinguished assembly of esteemed professors, accomplished doctors, and seasoned masters. Complementing this wealth of human capital is an arsenal of cutting-edge electrode production machinery, independently conceived and developed in China. Combined with a meticulously honed production methodology and cutting-edge core production techniques, the Boromond Project serves as a formidable pioneer in the domain of advanced material.

Boron Doped Diamond Technology: Scientific & Industrial Use

At Boromond, our mission is to push the boundaries of water treatment technology by harnessing the remarkable potential of Boron Doped Diamond (BDD) materials. We’re dedicated to designing and developing cutting-edge BDD electrode and wastewater treatment systems that utilize BDD materials to revolutionize the way industries address water purification challenges.

Chemical Vapor Deposition Process: Fabrication of Boron Doped Diamond Electrode

Schematic diagram of CVD deposition

Chemical Vapor Deposition (CVD) emerges as a pivotal process with diverse applications, representing a cutting-edge technique widely employed in various industries. This sophisticated method involves the deposition of thin films or coatings onto substrates through chemical reactions in the vapor phase.                    At its core, CVD relies on precursor gases that undergo chemical transformations when exposed to a heated substrate, leading to the formation of solid films. This technique is characterized by its versatility, enabling the deposition of materials with precise control over thickness, uniformity, and composition.                                        CVD technology plays a key role in creating protective coatings for a range of materials, from metals to ceramics, enhancing their durability and functionality. Despite its widespread adoption, challenges exist, such as the need for optimized process parameters and the careful selection of precursor materials. Navigating these intricacies is vital for harnessing the full potential of Chemical Vapor Deposition across diverse industrial landscapes.

Electrochemical Advanced Oxidation Processes Using Boron Doped Diamond Technology

BDD Electrolytic water schematic

Boromond team spent years to study and utilize advanced electrochemical advanced oxidation processes (EAOP) with boron doped diamond electrodes, EAOP is a promising advancement in wastewater treatment industry, EAOP conducted via BDD electrode was proven to be the most efficient treatment methods to eliminate refractory rollutants from real wastewater.                                                                                                  During this innovative electro-oxidation process, hydroxyl radicals were generated from the surfaces of bdd electrodes, OH radicals is one of the reactive oxidants which features second highest oxidation potential amongst all oxidants/oxidizing agents, and hydroxyl radicals “attack” almost all sorts of organic molecules given its non-selective oxidation natures, which means Hydroxyl radicals leads its way to mineralize all types of organic pollutants to CO2, water and substances.

Explore More Details About Electrolytic Treatment of Organic Wastewater Via EAOPs & Boron Doped Diamond Electrode

Development & Engineering Application of BDD Electrodes: Laboratory Up To Pilot Scale Treatment System

BDD electrodes are known for their efficacy in organic wastewater treatment procedure especially industrial effluents. Boromond specializes in engineering & development, manufacturing of electro oxidation treatment technology, we managed to put water treatment, process design/development and enhancement, electrolysis, technology evaluation together based on our deep understand of EAOPs and years of experiences with BDD technology. Unlocking the full potential of electro-oxidation in wastewater treatment by designing and commercializing electro treatment systems from components development of compact BDD electrolytic cell, modular electrochemical treatment test equipment up to pilot scale integrated treatment system.                  We brought the cost of BDD electrodes down via CVD process and upgrade the application of electrochemical water treatment technology from laboratory test to electro wastewater treatment system to treat toxic organic  s found in industrial effluents, what is more, we combine EAOPs with modular design, data analytics together.

Need More Information Now?

We offer free water profile and data analysis, send your water test results to Boromond technical support team to check it over.

Analyzing your water profile through engineering appraisal.
Conducting a treatability trial to outline the pilot project.
Recommended Water Treatment Equipment Accordingly
Employing optioneering techniques to pinpoint the most suitable solution.

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