CN106830218A - 一种连续式生活用消毒保健水的制备装置 - Google Patents
一种连续式生活用消毒保健水的制备装置 Download PDFInfo
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- 230000000249 desinfective effect Effects 0.000 title claims abstract description 20
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- C—CHEMISTRY; METALLURGY
- C02—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
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- C25B—ELECTROLYTIC OR ELECTROPHORETIC PROCESSES FOR THE PRODUCTION OF COMPOUNDS OR NON-METALS; APPARATUS THEREFOR
- C25B1/00—Electrolytic production of inorganic compounds or non-metals
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- C—CHEMISTRY; METALLURGY
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- C—CHEMISTRY; METALLURGY
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- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
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- A01N—PRESERVATION OF BODIES OF HUMANS OR ANIMALS OR PLANTS OR PARTS THEREOF; BIOCIDES, e.g. AS DISINFECTANTS, AS PESTICIDES OR AS HERBICIDES; PEST REPELLANTS OR ATTRACTANTS; PLANT GROWTH REGULATORS
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- C01B—NON-METALLIC ELEMENTS; COMPOUNDS THEREOF; METALLOIDS OR COMPOUNDS THEREOF NOT COVERED BY SUBCLASS C01C
- C01B13/00—Oxygen; Ozone; Oxides or hydroxides in general
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Abstract
本发明涉及一种连续式生活用消毒保健水的制备装置,具体地讲,它通过连续对水进行处理,从而产生具有消毒保健作用的正离子H+,负离子OH‑、O‑、CI‑等,负氧离子能够有效抑制细菌(结合细菌降低其活性与细菌细胞膜误解氧化结合杀死细菌的),导致细菌死亡;其正负离子的中和生成物(如HOCL、O3、H2O2等)也具有很强的氧化还原能力,正离子与负离子在水中进行正负电荷中和的瞬间产生巨大的能量释放,从而使其周围的细菌结构的改变或能量的转换而致使细菌快速死亡,他们均能存在水中有效地杀灭水中的微生物、病毒和细菌,降解农药残留和重金属,将其用作清洗用水对果菜、餐具等便可实现的消毒和杀菌的目的。
Description
技术领域
本发明涉及一种连续式生活用消毒保健水的制备装置及其控制方法,具体地讲,它通过连续产生具有等离子消毒杀菌降解作用、羟基自由基的强氧化作用的生活用消毒保健水,将其用作清洗用水从而使使用者在清洗蔬菜、水果、餐具的同时对蔬菜、水果、餐具进行消毒、杀菌、降解农药残留的目的。
背景技术
随着国家食品安全战略和健康战略的逐步全面实施,人们对健康意识要求的逐步提高,对蔬菜、水果、餐具消毒、杀菌、降解农药残留越来越受到重视,为方便人们对蔬菜、水果、餐具的消毒、杀菌;为此,本申请发明了一种连续式生活用消毒保健水的制备装置,其主要功能和作用就是方便人们在清洗果蔬、餐具的同时对果蔬、餐具进行消毒、杀菌、降解农药残留的目的;该装置是一个完全全新的产品方案,且方案结构简单、使用方便、控制有效、安全可靠;其社会效应、民生效应、经济效应及其前景非常广阔。
发明内容
本申请提供了一种连续式生活用消毒保健水的制备装置,解决了人们对蔬菜、水果、餐具健康安全保障的迫切需求;本申请装置安装方便、使用便捷、资源利用率高、不占用厨房空间、消毒杀菌降解农药残留、保健等效果等显著效益,同时具备了更高的安全性和可靠性。
本申请的一种连续式生活用消毒保健水的制备装置,它包含有制备器K01、供水本体K02、驱动器K03等组成。
其中驱动器K03是一个能提供制备器正常工作所需电能的供电组合装置;通过输出特定参数的交、直流驱动电源用以驱动制备器K01工作。如附图1所示,该驱动器既可内置在供水本体K02上,也可整体外置以电源导线接入的方式向制备器K01提供驱动电源。但其特征是制备器K01须有驱动电源的输入才能开始工作,既本申请的装置只有在有驱动电源的输入情况下才能产生具有消毒、杀菌、降解农药残留的生活保健水,不论该驱动电源是内置、外置、或使用者自行选配驱动器,归根结底其均需配备合适的驱动器K03;其均属本申请的技术方案。
制备器K01是一个包含有若干正、负制备电极的电极机构。该制备器一般采用以钛合金为基材且表面涂覆有铂、铈、钆、铕、钕、钛、钌、铱等材料在经90℃-150℃烘干、350℃~700℃下烧结后制备的具有一定厚度的复合涂层的钛合金复合型材料为电极。该电极一般成对设置,既一个接正极驱动动信号,一个接负极驱动信号;通常该制备器正、负电极之间的间距为0.8mm-1.5mm之间,常见以1mm为主。本申请的制备器K01设置在与供水本体K02的内部或与供水本体K02相联接的供水本体K02外部。流经制备器K01的水由供水本体K02提供或引入。该技术方案由于其技术独立特的技术方式,通过该该装置所产生的生活用消毒保健水通常在完成制备后30秒至3分钟后便开始还原成原水;整个过程不留副产物;绿色环保纯天然,该技术即是与该整体解决方案的技术与产品完美结合的表现。
供水本体K02是一个包含有供水及控制系统和水电联动系统的部件,供水本体通常包含进水通道、出水通道、控水阀、出水管等;如附图4、附图5、附图6所示,本申请的供水本体包含有A进水通道0310、B进水通道0311、进水通道03102、进水通道03112、联接器0330、控水阀0350、控水阀0360、出水通道03201和03210、水电联动通道03202等等结构。
安装在供水本体K02上的联接器0330是一个包含有水电联动开关SW(以下简称开关SW)的特殊导电联接器,联接器0330的两端分别处于供水本体K02的内部和外部,如附图6和附图7所示,联接器0330在供水本体K02的内部端设有接线柱03302,该接线柱及其上面的导线跟制备器K01导通,从而实现驱动电源在供水本体内的输送导通;在供水本体K02的外部端设有接线柱03301,该接线柱及其上面的导线与驱动器K03相连接,从而实现将供水本体K02外部或供水本体K02水路外部的驱动器K03所提供驱动电源向供水本体K02内部(既供水本体K02水路内部)输送;进而实现驱动器K03的所产生输出特定参数的交、直流电源能转输到制备器K01上。开关SW设置在接线柱03302和接线柱03301之间,它可控制接通接线柱03302与接线柱03301之间的通断;进而实现对制备器K01的工作状态的控制;在本申请方案中,开关SW还是一个通过感应水压或水流而断开和闭合的感应开关。
如附图4、附图5、附图6所示,在供水本体K02的水路设置上,本申请方案具有常规进水,多路分水、多路供水、多用控水的特征。从自来水或其它水路经供水A进水通道0310和B进水通道0311(A、B通道通常为冷水进水通道和热水通道;通常单冷水时则只有一个进水通道)接入供水本体K02后进入控水阀0350、控水阀0360前;供水本体K02便将进水分成多路,如附图4所示,A进水通道0310便分水为通道03101和通道03102分别进入对应控水阀(如附图6、附图2所示,控水阀分别为控水阀0360和控水阀0350);B进水通道0311便分水为通道03111和通道03112分别进入对应控水阀(如附图6、附图2所示,控水阀分别为控水阀0360和控水阀0350);进而实现多路分水的目的。而控水阀0360和0350均能控制和实现各自水路的导通和关闭。
A、B水路各自经控水阀控水(如附图6、附图2所示,控水阀分别为控水阀0360和控水阀0350)后,分别从通道03201、通道03210进入供水本体K02;然后在供水本体K02的引导下,流经制备器K01后,从出水口0201流出供使用者使用。从而实现了本申请的多路供水的目的。
如附图6、附图7、附图3所示,本申请方案的A、B水路各自经控水阀控水时,至少有一个水路在经控水阀控水后向供水本体K02供水的同时,还会分出一个水电联动通道03202,如附图6所示该控水阀为控水阀0350,即控水阀0350能实现通道03201和水电联动通道03202彼此同步且又独立的供水功能模式;当通道03201有水流出时,水电联动通道03202同时也会有水流出;由于联接器0330中的开关SW还是一个通过感应水压或水流而实现闭合和断开的感应开关,故将水电联动通道03202专门用于驱动开关SW则可以实现多用控水的水电联动控制;既当该水路导通时,多用控水的设计方案便可实现用水来控制开关SW的闭合而实现控制驱动器K03供电电路的导通目的;当该水路无导通时,开关SW自动断开而实现控制驱动器K03供电电路的断开目的。既实现了用该水路的水来控制开关SW的断开和闭合,进而实现了控制制备器K01的工作与水路进入同步的目的;从而确保了电极不会在无水的状态下工作,有效保护了电路和节省了能源。同时在多路供水及同步且独立的水电联动通道03202的联合控制下,只有包含有水电联动通道03202的水路导通时,开关SW才会在水压或水流的作用下闭合;而不包含有水电联动通道03202的水路导通时(如本申请中附图4所示的通道03210),开关SW是不会受到水压或水流的影响的,故开关SW不会闭合,因而此时从供水本体和制备器K01流出的水均是普通的不具有消毒、杀菌、降解农药残留作用的平常水;从而确保了对使用者原有的用水需求和习惯的尊重。故本申请的连续式生活用消毒保健水的制备装置使用者可以自主选择其出水类型。
含有钛合金基材复合型电极的制备器K01在驱动器K03、控水阀、开关SW的共同控制和驱动下,通过电离电解正在通过其中的自来水或其它合适水源;从而使通过制备器K01的水获得大量的正离子及负离子,由于电离电解水过程中产生的正离子主要有H+等,产生的负离子主要有OH-、O-、CI-等,负氧离子能够有效抑制细菌(结合细菌降低其活性与细菌细胞膜误解氧化结合杀死细菌的),导致细菌死亡;其正负离子的中和生成物(如HOCL、O3、H2O2等)也具有很强的氧化还原能力,正离子与负离子在水中进行正负电荷中和的瞬间产生巨大的能量释放,从而使其周围的细菌结构的改变或能量的转换而致使细菌快速死亡,他们均能存在水中有效地杀灭水中的微生物、病毒和细菌,降解农药残留和重金属,将其用作清洗用水对果菜、餐具等便可实现的消毒和杀菌的目的。有效为餐桌安全提供最后的保障,为大健康保驾护航。因而本制备器K01是直接对水本身进行电离电解,而非将电离电解的其它物质混入水中;由于其技术特征因素,通过该该装置所产生的生活用消毒保健水通常在30秒至3分钟后便开始还原成原水;而在此时间内该生活用消毒保健水足以通过其氧化还原能力所杀灭水中的微生物、病毒和细菌,降解瓜果蔬菜中的农药残留和重金属残留,附着在人体上的病毒细菌等;而多余出的生活用消毒保健水又能在短时间内还原成原水,故整个过程不留副产物;绿色环保纯天然。
如图3所示,本申请的方案通过在在制备器K01的供电回路中串联一个开关SW的方式,由于开关SW是一个能感应水电联动通道03202的水压或水流变化而实现闭合和断开的开关,本申请从而实现了对制备器K01的水电联动控制的目的,且该方案结构简单、使用方便、控制有效、安全可靠;既有的其它控制方式是不可能与之比肩的。
附图说明
附图1:整体示意图
附图2:正面示意图
附图3:控制原理图
附图4:分水和多路供水示意图
附图5:多用控水示意图
附图6:多用控水示意图
附图7:开关联接器示意图
Claims (9)
1.一种连续式生活用消毒保健水的制备装置,它主要由制备器K01、供水体体K02组成,其特征在于:
a.制备器K01设置在供水体体K02的内部或与供水本体K02相联接的供水本体K02外部;
b.制备器K01须在有驱动电源的输入下能开始工作;
c.流经制备器K01的水由供水本体K02提供或引入;
d.制备器K01是直接对水进行电离电解,而非将电离电解的其它物质混入水中。
2.根据权利要求1所述的一种连续式生活用消毒保健水的制备装置,其特征在于本装置均需配备驱动器K03。
3.根据权利要求1所述的一种连续式生活用消毒保健水的制备装置,其特征在于供水本体K02上至少设置有一个能实现水电联动通道03202功能的控水阀。
4.根据权利要求1所述的一种连续式生活用消毒保健水的制备装置,其特征在于本装置中设置的开关SW安装在水电联动通道03202中。
5.根据权利要求1所述的一种连续式生活用消毒保健水的制备装置,其特征在于制备器K01是一个包含有若干正、负制备电极的电极机构。
6.根据权利要求1所述的一种连续式生活用消毒保健水的制备装置,其特征在于供水本体具有多路供水和多用控水的功能。
7.根据权利要求1所述的一种连续式生活用消毒保健水的制备装置,其特征在于供水体体K02上设置有联接器0330,该联接器实现将供水本体K02水路外部的电源向供水本体K02内部输送。
8.一种连续式生活用消毒保健水的制备装置的控制方法,其特征在于在制备器K01的供电回路中串联有一个开关SW。
9.根据权利要求8所述的一种连续式生活用消毒保健水的制备装置,其特征在于在制备器K01的供电回路中串联有的开关SW为水电联动开关,该开关通过感应水压或水流变化而实现闭合或断开。
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CN106745549A (zh) | 2017-05-31 |
CN106745550A (zh) | 2017-05-31 |
CN106830217A (zh) | 2017-06-13 |
CN105621542A (zh) | 2016-06-01 |
CN107032456A (zh) | 2017-08-11 |
CN106698608A (zh) | 2017-05-24 |
CN106830219A (zh) | 2017-06-13 |
CN107055708A (zh) | 2017-08-18 |
CN106115863A (zh) | 2016-11-16 |
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CN107021548A (zh) | 2017-08-08 |
CN106830220A (zh) | 2017-06-13 |
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