Fenton catalyst
Other Products
Technical Principle
The mechanism of heterogeneous Fenton catalysts involves the diffusion of organic compounds from the bulk solution to the active sites on the catalyst surface, where they are adsorbed. Subsequently, under the catalytic action of the catalyst components, a free radical chain reaction is initiated to oxidize and degrade the organic compounds. The degradation products then desorb from the catalyst surface and diffuse back into the bulk solution. However, regardless of the specific mode of action of the catalyst, the surface of the catalyst in a heterogeneous system generally undergoes a complex iron cycle process to maintain the smooth progress of the overall catalytic oxidation reaction. The active species responsible for oxidation are generated during this process.
Product Overview
The LFD series heterogeneous Fenton catalyst produced by our company is a high-quality catalyst specifically developed to address issues such as the narrow pH range applicability and high sludge production of traditional Fenton technology. This catalyst uses a porous composite material as the carrier and incorporates various noble metals, rare earth metal oxides, and transition metal oxides as catalytic components. It is meticulously manufactured through processes such as carrier doping, extrusion molding, mixed impregnation, and high-temperature calcination. This enhances the production of hydroxyl radicals, avoids the generation of iron sludge, reduces secondary pollution, and features high catalytic activity and a long service life.
Key Innovations of the Product
(1) This product uses a porous composite material as the catalyst carrier, which provides high mechanical strength and incorporates multiple non-leaching catalytic components to enhance the catalytic activity and stability of the catalyst. High-temperature sintering technology ensures high utilization and strong adhesion of active components while effectively reducing the loss rate of catalytic fillers, preventing secondary pollution, and extending the service life.
(2) Through extensive testing and engineering applications, this product selects the carrier and active components of the catalytic fillers to ensure the sustained and efficient catalytic effect of the Fenton-like reaction.
(3) By selecting suitable carriers and catalytic components, this product improves the catalytic activity of the catalyst and its adaptability to the pH of the reaction wastewater, broadening the pH range of the reaction.
(4) This product replaces the addition of ferrous ions in traditional Fenton processes, avoiding the generation of large amounts of iron sludge, preventing secondary pollution, and significantly addressing the shortcomings of traditional Fenton technology.
| Industry Category | Environment |
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| Stock: | 1000 |
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| Origin: | China / Shandong / Weifangshi |