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Pre-rainwater treatment device

The pre-rainwater treatment device adopts imported ceramic filter material. In our filtration technology, porous ceramic filter material with no fixed shape is used. It is different from the commercially available spherical ceramic filter material, and the sintering temperature is higher. The specific surface area of the filter material is larger, the filtering effect and the dirt holding capacity are stronger, and the filter material itself does not escape any elements. In the filtration process, because the filter material contains different pore sizes and rough surfaces, in the accumulation process, the pore sizes and gaps of the filter pores on each micro-layer surface are different, so that the filter pores and gaps are not straight lines but curves, so that it has the function of deep filtration or container filtration. When flowing through the changed pores and gaps, impurities larger than the average diameter are blocked outside the pores.

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Product Description

The pre-rainwater treatment device adopts imported ceramic filter material. In our filtration technology, porous ceramic filter material with no fixed shape is used. It is different from the commercially available spherical ceramic filter material, and the sintering temperature is higher. The specific surface area of the filter material is larger, the filtering effect and the dirt holding capacity are stronger, and the filter material itself does not escape any elements.
In the filtration process, because the filter material contains different pore sizes and rough surfaces, in the accumulation process, the pore sizes and gaps of the filter pores on each micro-layer surface are different, so that the filter pores and gaps are not straight lines but curves, so that it has the function of deep filtration or container filtration. When flowing through the changed pores and gaps, impurities larger than the average diameter are blocked outside the pores.
Impurities smaller than the average pore diameter and gaps enter the pores. In each part, the sizes of the pores and gaps change, so that the flow rate of the medium changes accordingly. In addition, the irregular pores and gaps change, so that a part of impurities smaller than the pore diameter are intercepted and adsorbed by the side wall. The adsorbed impurities further increase the surface area and structural complexity of the filter material, so that finer impurities can be adsorbed, that is to say, the adsorption capacity and adsorption accuracy are related to the filtration material, charge, potential, flow rate, flow rate and difference. The whole process is based on the metastable state of various factors. The filtration with extremely low energy consumption is realized by controlling the metastable state. Only a water level difference of 0.1-1m is required, which is equivalent to 0.01-0.001Mpa, and the system can work. No power consumption, clean and environmentally friendly.
 
 
Specifications
HM-QZCL-ID700 × od160/id200/id300
HM-QZCL-ID1000 × od160/id200/id300/id400/id500

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