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    • 8. 发明申请
    • DEVICE FOR ELECTROCINDER SMELTING OF INGOTS
    • WO2023080882A1
    • 2023-05-11
    • PCT/UA2021/000092
    • 2021-11-12
    • POPOV, Oleksandr VolodymyrovychPOPOV, Mykyta Oleksandrovych
    • POPOV, Oleksandr VolodymyrovychPOPOV, Mykyta Oleksandrovych
    • F27D11/08B22D23/10C22B9/18
    • The invention relates to the field of special electrometallurgy and can be used for obtaining of heterogeneous and homogeneous ingots by electrocinder smelting of consumable electrodes. The device for electrocinder smelting of ingots contains the consumable electrodes feeding mechanism, the former, the cooling manifold, the power supply at that the consumable electrodes feeding mechanism contains the electrode holder executed with the possibility of oscillation of the consumable electrodes in regard to the cross section of the smelting, the former contains the lodgment, the mould and the stood, at that the lodgment is made of the metal plate with the smelting window the overall dimensions of which are equal to the overall dimensions of the smelted ingot, and additional containers disposed before and after the smelting window, at that the tap holes are disposed behind the mentioned additional containers, and the side surfaces of the additional containers distal from the smelting window of the lodgment are executed at the preset angle α to the corresponding tap holes, the lodgment contains the guides for longitudinal movement of the lodgment in regard to the mould, at that the mould is made of the metal plate and contains the smelting window the perimeter of which is equal to the perimeter of the additional container of the lodgment, the stood is executed with the possibility of the vertical movement and disposed in the smelting window of the lodgment, the inclination mechanism on the frame of which the former is disposed executed with the possibility of longitudinal movement on the frame guides, at that the inclination mechanism frame contains the bearers and is executed with the possibility of inclination of the former and the mould in regard to the horizontal position at the angle a to one or another side, and on the frame bearers the facility is disposed which fixes the position of the mould in regard to the consumable electrodes. The technical solution allows to improve the quality of smelted ingots, expand technological capabilities of smelting, improve exploitation characteristics and safety of usage of the device.
    • 10. 发明申请
    • ELECTROLYTIC TREATMENT OF AQUEOUS SALT SOLUTIONS
    • 水溶性盐溶液的电解处理
    • WO1998012144A1
    • 1998-03-26
    • PCT/GB1997002518
    • 1997-09-18
    • WILLOWBANK TECHNOLOGIES LIMITEDPOPOV, Alexey YurievichPOPOV, Dmitriy Alekseyevich
    • WILLOWBANK TECHNOLOGIES LIMITED
    • C02F01/46
    • C02F1/4674C02F1/46104C02F1/763C02F2201/46115C02F2201/4618C02F2303/04
    • There is disclosed a method and apparatus for generating a sterilising solution through the electrolytic treatment of aqueous salt solutions. A relatively concentrated aqueous salt solution (A) is passed, under pressure, into the working chamber (3) of an electrolytic cell (4), which cell is divided into a working chamber (3) and an auxiliary chamber (7) by a permeable membrane (5). At the same time, a relatively dilute aqueous salt solution (B) is passed through the auxiliary chamber (7). A proportion of the relatively concentrated solution (A) is filtered through the membrane (5), mixes with the relatively dilute solution (B), and the mixture is collected from an output of the auxiliary chamber (7). Gases, such as chlorine, liberated in the working chamber during electrolysis, are dissolved in a water supply (C), and this water supply is partially or fully mixed with the output of the auxiliary chamber (7) so as to generate a sterilising solution. The method and apparatus disclosed serves to generate a sterilising solution with less expenditure of energy and raw materials than in the prior art.
    • 公开了通过电解处理盐水溶液来生成灭菌溶液的方法和装置。 相对浓缩的盐水溶液(A)在压力下通入电解池(4)的工作室(3),该电池通过一个电池单元被分成工作室(3)和辅助室(7) 渗透膜(5)。 同时,相对稀释的盐水溶液(B)通过辅助室(7)。 相对浓缩的溶液(A)的一部分通过膜(5)过滤,与相对稀释的溶液(B)混合,并从辅助室(7)的输出收集混合物。 在电解过程中在工作室中释放的气体(如氯)溶解在供水(C)中,并且该供水与辅助室(7)的输出部分或完全混合,从而产生消毒溶液 。 所公开的方法和装置用于产生比现有技术更少的能量和原料消耗的消毒溶液。