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Cartridge for purification of water by electroactive adsorber material (Zeta potential)

An adsorption material and electroactive technology, applied in the direction of adsorption of water/sewage treatment, membrane filter, water pollutants, etc., can solve problems such as high pollution risk and large pollution risk

Inactive Publication Date: 2018-09-28
GRUNBECK WASSERAUFBEREITUNG
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

There is a particularly high risk of contamination if the activated carbon in the activated carbon filter is not continuously flowed through by the raw water, since a moist environment is formed on the surface of the activated carbon, which provides ideal conditions for the growth of germs
For these reasons, activated carbon-based adsorption filters, although extremely suitable for removing trace substances, microhazardous substances and endocrine disruptors from water, nevertheless carry a high risk of contamination

Method used

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  • Cartridge for purification of water by electroactive adsorber material (Zeta potential)
  • Cartridge for purification of water by electroactive adsorber material (Zeta potential)
  • Cartridge for purification of water by electroactive adsorber material (Zeta potential)

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Embodiment Construction

[0024] figure 1 Schematically shows a sorption device which can be used in the device according to the invention for cleaning water. The adsorption device comprises a first layer 1 and a second layer 2 . The layers each consist of an electroactive adsorption material having an electromotive force (zeta potential) in an aqueous environment. Owing to the electromotive force of the electroactive adsorption material of the first layer 1 and the second layer 2 , generally charged microorganisms contained in the water, such as viruses and bacteria, accumulate on the adsorption material due to electrosorption. Microorganisms contained in water are generally negatively charged. Therefore, it is particularly advantageous that an electropositive adsorbent material is suitable for forming the adsorbent material of the first layer 1 and the second layer 2, which electropositive adsorbent material is in an aqueous environment and especially at a pH of typically 6.5 to 9 Drinking water i...

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PUM

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Abstract

An apparatus for purification of water comprises a housing (4) having an untreated water feed (5) and a cartridge (10) inserted in the housing (4) which comprises: - a first ply (1) made of an electroactive adsorber material having an electrokinetic potential (zeta potential) in an aqueous environment at which microorganisms, in particular viruses and bacteria, present in the water accumulate by electroadsorption, - a second ply (2) made of an electroactive adsorber material, having an electrokinetic potential (zeta potential) in an aqueous environment, at which microorganisms, in particular viruses and bacteria, present in the water accumulate by electroadsorption, - and a third ply (3) arranged between the first ply (1) and the second ply (2) which contains an adsorbent at the surface ofwhich particles or dissolved substances present in the water accumulate by physical and / or chemical adsorption, - wherein the plies (1, 2, 3) are each configured as a hollow cylinder and are arrangedconcentrically with respect to one another with the first ply (1) radially outermost and wherein arranged between the inside of the housing (4) and the radially outermost first ply (1) is an annularchannel (8) in communication with the untreated water feed (5) for distribution of the untreated water in the cartridge (10). This apparatus allows simultaneous purification and disinfection / sterilization of water and both inorganic or organic impurities, for example trace substances and endocrine disruptors and also microorganisms, can be removed from the water.

Description

technical field [0001] The invention relates to a device for cleaning water. Background technique [0002] For cleaning or purifying water, especially drinking water, various filters are known from the prior art. By means of the water filter, for example, turbidity, microorganisms and undesired substances dissolved in the water can be removed, or at least their concentration can be reduced. Here, there is a difference between water filters which either remove particles contained in the water from the water mechanically, for example by screening techniques, or use chemical-physical Substances in the water. e.g. mesh filters or permeable filters with permeable filter membranes of preset pore size, e.g. micro-, ultra- or nano-filters, reverse osmosis modules or filters with particle filter media, e.g. gravel filtration filter, stone filter or sand filter, are all water filters that mechanically remove particles from the water. Particles with a particle size in the range of ...

Claims

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Application Information

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IPC IPC(8): C02F1/28B01J20/08B01J20/16C02F101/30C02F101/36
CPCB01J20/06B01J20/08B01J20/10B01J20/103B01J20/18B01J20/20B01J20/28007B01J20/28052B01J20/3204B01J20/3236B01J2220/42B01J2220/46B01J2220/62B01D2239/0442B01D2239/065B01D2239/0695C02F1/004C02F1/288C02F2101/305C02F2101/306C02F2101/363C02F2101/366C02F2201/003C02F2201/006C02F2303/04
Inventor 拉尔夫·索克尼克沃尔夫冈·库格尔曼
Owner GRUNBECK WASSERAUFBEREITUNG
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