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What is the difference between ozone catalyst and ozone decomposition catalyst

Ozone catalyst and ozone decomposition catalyst are two different products. Their ingredients, processes and application fields are different. This article will give you a detailed introduction.

ozone catalyst

Ozone catalyst technology is an advanced oxidation process based on ozone. It combines the strong oxidation of ozone with the adsorption and catalytic properties of the catalyst to more effectively solve the problem of low ozone treatment efficiency, low ozone utilization, high operating costs, and incomplete degradation of organic matter. And other issues.

The ozone catalytic oxidation method of wastewater is a large-scale advanced oxidation technology, which is mainly achieved through direct oxidation and catalytic oxidation. Ozone can directly convert some of the large molecules, long-chain, and difficult-to-biodegrade organic matter remaining in the wastewater into carbon dioxide and water, and partially decompose it into small molecules that are easily biodegradable, destroying non-biodegradable substances, degrading the structure of organic matter, reducing toxicity, and increasing B /C ratio to ensure the treatment effect of subsequent biochemical methods. Traditional ozone oxidation technology is mainly based on direct oxidation, which has poor mass transfer effect, low ozone utilization rate, and high investment and operation costs.

Sensitive strontium ozone catalyst can increase the production of hydroxyl radicals by 100%-300%, greatly enhancing ozone oxidation ability.

ozone decomposition catalyst

An ozone decomposition catalyst is a granular chemical substance. It is based on the principle of a catalyst and is used to decompose harmful ozone into oxygen (O2) and oxygen molecules (O). When ozone molecules in the air pass through the catalyst, their oxygen atoms react with the active sites on the catalyst surface, decomposing O3 into O2 and O. This reaction converts harmful ozone into harmless oxygen, thereby achieving the purpose of decomposing ozone.

The ozone catalyst produced by MINSTRONG adopts a formula and process specially optimized for ozone catalytic reaction. It is prepared through liquid phase co-precipitation and is mixed and molded using aluminum oxide as a binder. It has the characteristics of high strength and low powder. The main active ingredients of the catalyst are In addition to catalyzing the oxidation of ozone, composite metal oxides also have the function of disinfection and sterilization. The catalyst will not breed bacteria and mold after long-term use.

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