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Introduction to the selection and use of iron carbon fillers

Release time:2024-09-24

Iron carbon filler is an efficient and environmentally friendly material, sintered at 1300 degrees Celsius, with an iron content of up to 78%. This type of filler exhibits many advantages during use, such as no hardening or passivation, and can continue to function stably. In the field of environmental protection, iron carbon fillers are widely used in wastewater treatment. They can efficiently remove COD (chemical oxygen demand) from wastewater, significantly reduce chromaticity, and improve the biodegradability of wastewater, creating favorable conditions for subsequent biological treatment.
Iron carbon filler high-temperature sintering filler
Regarding the identification of iron carbon fillers, firstly, the iron content of iron carbon fillers is as high as 78%, which is an important identification feature. Secondly, our iron carbon filler is sintered at a high temperature of 1300 degrees, and this unique production process ensures the stability and efficiency of the filler.
As for the usage method, iron carbon fillers exhibit many advantages during the use process. It will not harden or passivate, ensuring long-term stable treatment effect. In the field of environmental protection, iron carbon fillers can efficiently remove COD (chemical oxygen demand) from wastewater, reduce chromaticity, and significantly improve the biodegradability of wastewater. These characteristics have made iron carbon fillers widely used in wastewater treatment in industries such as printing and dyeing, pharmaceuticals, etc.
Iron carbon filler
In order to fully utilize the effect of iron carbon fillers, it is recommended that you pay attention to controlling appropriate reaction conditions such as pH value, temperature, etc. during use, and regularly check the status of the fillers to ensure the normal operation of the treatment system.
The key factors affecting the treatment effect of iron carbon fillers mainly include the following aspects:
PH value: The acidity or alkalinity of wastewater directly affects the efficiency of microelectrolysis reactions in iron carbon fillers. Usually, within an appropriate pH range, iron carbon fillers can achieve the best treatment effect. Therefore, when using iron carbon fillers to treat wastewater, it is necessary to adjust and control the pH value of the wastewater.
Temperature: Temperature is an important factor affecting the rate of chemical reactions. For iron carbon fillers, appropriate temperature can accelerate microelectrolysis reactions and improve processing efficiency. However, excessively high temperatures may cause scaling or passivation on the surface of the packing, reducing the effectiveness of the treatment.
Reaction time: The length of reaction time directly affects the degree of sufficient contact and reaction between iron carbon fillers and pollutants in wastewater. A too short reaction time may not guarantee sufficient removal of pollutants, while a too long reaction time may increase treatment costs.
Iron carbon microelectrolysis reactor
Wastewater composition: The types, concentrations, and properties of pollutants in wastewater can affect the treatment efficiency of iron carbon fillers. For example, certain pollutants may react chemically with iron carbon fillers to form insoluble precipitates, thereby improving removal efficiency; And other pollutants may inhibit microelectrolysis reactions and reduce treatment efficiency.
Packing dosage: The amount of packing directly affects the treatment effect. Insufficient dosage may lead to incomplete processing, while excessive dosage may increase processing costs and cause waste.
Mixing intensity: Proper mixing can enhance the contact and mixing between wastewater and fillers, improve reaction rate and treatment efficiency. However, excessive stirring may damage the structure of the filler and affect its service life.

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