摘要:
A drop-in cell for the electrolytic purification of water, for example bathwater or service water, with an electrolysis cell that can carry a flow of water, is built into an oblong, e.g., cylindrical, electrically insulating sheath or jacket, and has two contact electrodes mutually positioned a distance apart from each other. A float is situated at least at the one end region of the jacket.
摘要:
In a method and a device for determining the concentration of one or more oxidizing agents in an aqueous solution flowing in a main stream, a partial flow of the aqueous solution is diverted to a bypass, wherein the difference between the potential of the aqueous solution before and after at least partial and/or selective breakdown of any oxidizing agents is measured. The bypass is for diverting and returning the partial flow of the aqueous solution, and has at least one elimination unit through which the aqueous solution flows for at least partial and/or selective breakdown of the oxidizing agent(s), and two measuring electrodes for determining the difference between the potentials of the aqueous solution before and after it passes through the elimination unit.
摘要:
The invention relates to a drop-in cell for disinfection of water from bathing pools, particularly whirlpools, with an electrolytic cell (10) which can be flowed through by water and has two contact electrodes (1, 2), which are positioned in parallel and spaced apart from each other, and preferably at least one bipolar diamond particle electrode (3), which is arranged between the contact electrodes (1, 2) at a distance from them.The electrodes (1, 2, 3) are joined together by spacers (4) located between them to form an elongate, approximately cuboidal electrode pack, which is embedded in a casing (6) of plastic or synthetic resin while leaving an inflow and an outflow free. The user/customer is therefore provided with a drop-in cell which can be positioned in the circuit of the pool water or in the whirlpool and can be “installed” or, as and when required, removed and/or replaced without any problem by the user/customer himself.
摘要:
The invention relates to bathing water on the basis of tap water, which is suitable for treatment by means of electrolysis. The bathing water contains at least one of the alkali metal ions Na+, K+ or Li30 in a content of 100 mg/l up to the saturation limit and the chloride (Cl−) content of which is that of the underlying tap water.
摘要:
A disinfection device for performing disinfection cycles of water from at least one water circuit of an apparatus, in particular a hypothermia device. The disinfection device includes at least one disinfection circuit for passing through the water from the water circuit having at least one electrolysis cell designed as a flow-through cell for the in situ generation of oxidizing agents. The water circuit is connected to the disinfection circuit to form a common circuit. Electronics control the disinfection cycles. Power is supplied to the components of the provided disinfection circuits.
摘要:
The invention concerns a method for extracting valuable materials from organic compounds contained in waste or chemical elements contained therein.The method comprises the following steps carried out in succession: a) mixing the waste (1) with a base so that a liquid medium is formed, b) heating the medium in a reactor (3) to a temperature of 100° C. to 140° C. in order to hydrolyse the organic compounds contained in the medium, and withdrawing (c) the vapour which is formed, b1) transferring (c) the vapour from the reactor (3) to a washing tower (4), b2) adding sulphuric acid or phosphoric acid (c′) to the vapour in order to form ammonium sulphate(s) or ammonium phosphate(s), wherein a solution is obtained in the bottom of the washing tower (4) and the vapour is withdrawn from the head of the washing tower (4), b3) transferring (e) the solution obtained in step b2) to an electrochemical cell (6) with a cathode chamber and an anode chamber and electrolysing the solution, whereupon in the anode chamber, sulphuric acid or phosphoric acid is obtained for step b2), b4) recycling (c′) the sulphuric acid or phosphoric acid obtained from the anode chamber to the washing tower and withdrawing (f) valuable materials formed in the cathode chamber, in particular an ammoniacal solution, c) transferring (d) the liquid medium remaining in the reactor (3) in step b) to a separating device (5) in order to separate any solid inorganic phase which is contained in the liquid medium.