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公开(公告)号:US20130248375A1
公开(公告)日:2013-09-26
申请号:US13784618
申请日:2013-03-04
Applicant: MIOX Corporation
Inventor: Justin Sanchez , Craig Andrew Beckman , Thomas Edward Muilenberg
IPC: C25B15/08
CPC classification number: C25B15/08 , C02F1/006 , C02F1/4674 , C02F2201/4612 , C02F2201/46145 , C02F2209/05 , C02F2209/055 , C02F2209/40 , C02F2303/14 , C25B9/00
Abstract: Method and apparatus for adjusting the salinity and/or hardness of a process waste stream so that the stream may be electrolyzed to form an oxidant or disinfectant. Also an electrolytic cell having certain features such as widely spaced electrodes, flushing capabilities, and insulating dividers that can accommodate waste streams that have varying salinity, hardness, and dissolved solids content.
Abstract translation: 用于调节工艺废物流的盐度和/或硬度的方法和装置,使得流可以被电解以形成氧化剂或消毒剂。 还有一种具有某些特征的电解池,例如间隔很长的电极,冲洗能力和绝缘分隔器,其可适应具有不同盐度,硬度和溶解固体含量的废物流。
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公开(公告)号:US20160186357A1
公开(公告)日:2016-06-30
申请号:US15064385
申请日:2016-03-08
Applicant: MIOX Corporation
Inventor: William J. Stewart , Matthew R. Santillanes , Kevin Schwarz , Justin Sanchez , Geofrey C. Showalter , Kyle Lee
CPC classification number: C25F1/00 , C02F1/006 , C02F1/008 , C02F1/4674 , C02F2001/46119 , C02F2001/46128 , C02F2001/46185 , C02F2201/007 , C02F2201/4611 , C02F2201/4613 , C02F2201/46135 , C02F2201/4614 , C02F2201/46145 , C02F2201/4615 , C02F2201/4616 , C02F2209/02 , C02F2209/03 , C02F2209/05 , C02F2209/42 , C02F2303/22 , C25B1/14 , C25B1/26 , C25B9/063 , C25B9/18 , C25B15/02 , C25B15/08
Abstract: Method and apparatus for a low maintenance, high reliability on-site electrolytic generator incorporating automatic cell monitoring for contaminant film buildup, as well as automatically removing or cleaning the contaminant film. This method and apparatus preferably does not require human intervention to clean. For high current density cells, cleaning is preferably performed by reversing the polarity of the electrodes and applying a lower current density to the electrodes, preferably by adjusting the salinity or brine concentration of the electrolyte while keeping the voltage constant. Electrolyte flow preferably comprises water and brine flows which are preferably separately monitored and automatically adjusted. For bipolar cells, flow between modules arranged in parallel is preferably approximately equally distributed between modules and between intermediate electrodes within each module.
Abstract translation: 用于低维护,高可靠性的现场电解发生器的方法和装置,其包括用于污染物膜累积的自动细胞监测,以及自动去除或清洁污染物膜。 该方法和装置优选不需要人工干预来清洁。 对于高电流密度电池,优选通过使电极的极性反转并且向电极施加较低的电流密度来进行清洁,优选通过调节电解质的盐度或盐水浓度同时保持电压恒定。 电解质流优选地包括水和盐水流,其优选地被单独监测并自动调节。 对于双极电池,并联布置的模块之间的流动优选地近似均匀地分布在模块之间和每个模块内的中间电极之间。
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公开(公告)号:US20140124378A1
公开(公告)日:2014-05-08
申请号:US14154579
申请日:2014-01-14
Applicant: MIOX Corporation
Inventor: William J. Stewart , Matthew R. Santillanes , Kevin Schwarz , Justin Sanchez , Geofrey C. Showalter , Kyle Lee
CPC classification number: C25F1/00 , C02F1/006 , C02F1/008 , C02F1/4674 , C02F2001/46119 , C02F2001/46128 , C02F2001/46185 , C02F2201/007 , C02F2201/4611 , C02F2201/4613 , C02F2201/46135 , C02F2201/4614 , C02F2201/46145 , C02F2201/4615 , C02F2201/4616 , C02F2209/02 , C02F2209/03 , C02F2209/05 , C02F2209/42 , C02F2303/22 , C25B1/14 , C25B1/26 , C25B9/063 , C25B9/18 , C25B15/02 , C25B15/08
Abstract: Method and apparatus for a low maintenance, high reliability on-site electrolytic generator incorporating automatic cell monitoring for contaminant film buildup, as well as automatically removing or cleaning the contaminant film. This method and apparatus preferably does not require human intervention to clean. For high current density cells, cleaning is preferably performed by reversing the polarity of the electrodes and applying a lower current density to the electrodes, preferably by adjusting the salinity or brine concentration of the electrolyte while keeping the voltage constant. Electrolyte flow preferably comprises water and brine flows which are preferably separately monitored and automatically adjusted. For bipolar cells, flow between modules arranged in parallel is preferably approximately equally distributed between modules and between intermediate electrodes within each module.
Abstract translation: 用于低维护,高可靠性的现场电解发生器的方法和装置,其包括用于污染物膜累积的自动细胞监测,以及自动去除或清洁污染物膜。 该方法和装置优选不需要人工干预来清洁。 对于高电流密度电池,优选通过使电极的极性反转并且向电极施加较低的电流密度来进行清洁,优选通过调节电解质的盐度或盐水浓度同时保持电压恒定。 电解质流优选地包括水和盐水流,其优选地被单独监测并自动调节。 对于双极电池,并联布置的模块之间的流动优选地近似均匀地分布在模块之间和每个模块内的中间电极之间。
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公开(公告)号:US20140097093A1
公开(公告)日:2014-04-10
申请号:US14047934
申请日:2013-10-07
Applicant: MIOX CORPORATION
Inventor: Geofrey Showalter , Justin Sanchez
IPC: C25B15/02
CPC classification number: C25B15/02 , C25B9/04 , C25B9/063 , C25B9/18 , H02M3/155 , H02M7/217 , H02M2001/007
Abstract: Methods and apparatuses for electrolysis that does not require the use of a transformer to operate. The apparatus comprises one or more electrolytic cells which comprise the number of intermediate electrodes sufficient to enable the cell or cells to operate at the rectified line voltage without any need for voltage regulation, or near the rectified line voltage with only some voltage regulation, such as less than 20% of the rectified line voltage. Such regulation is achieved by using a buck or boost converter rather than a transformer, and can be varied to accommodate fluctuations in the line voltage and/or conductivity of the electrolyte, or varied to produce different chemistries in the same apparatus.
Abstract translation: 不需要使用变压器进行操作的电解方法和装置。 该装置包括一个或多个电解池,其包括足以使得电池或电池在整流的线路电压下工作而不需要电压调节的数量的中间电极,或者只有一些电压调节在整流的线路电压附近,例如 小于整流线路电压的20%。 这种调节通过使用降压或升压转换器而不是变压器实现,并且可以变化以适应电解液的线路电压和/或电导率的波动,或者在相同的装置中变化以产生不同的化学物质。
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