CN107098508A - 直饮水分质给水设备及其供水方法 - Google Patents
直饮水分质给水设备及其供水方法 Download PDFInfo
- Publication number
- CN107098508A CN107098508A CN201710487143.3A CN201710487143A CN107098508A CN 107098508 A CN107098508 A CN 107098508A CN 201710487143 A CN201710487143 A CN 201710487143A CN 107098508 A CN107098508 A CN 107098508A
- Authority
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- China
- Prior art keywords
- water
- direct drinking
- prime
- water quality
- pump
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
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- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances data:image/svg+xml;base64,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 data:image/svg+xml;base64,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 O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 title claims abstract description 466
- 230000035622 drinking Effects 0.000 title claims abstract description 83
- 235000021271 drinking Nutrition 0.000 title claims abstract description 83
- 230000004634 feeding behavior Effects 0.000 title claims abstract description 83
- 238000001914 filtration Methods 0.000 claims abstract description 50
- 239000012528 membrane Substances 0.000 claims abstract description 23
- 238000001223 reverse osmosis Methods 0.000 claims abstract description 18
- OKTJSMMVPCPJKN-UHFFFAOYSA-N carbon Chemical compound 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- 241000700605 Viruses Species 0.000 description 1
- CVTZKFWZDBJAHE-UHFFFAOYSA-N [N].N Chemical compound 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[N].N CVTZKFWZDBJAHE-UHFFFAOYSA-N 0.000 description 1
- 235000012206 bottled water Nutrition 0.000 description 1
- 239000000460 chlorine Substances 0.000 description 1
- 229910052801 chlorine Inorganic materials 0.000 description 1
- ZAMOUSCENKQFHK-UHFFFAOYSA-N chlorine atom Chemical compound 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- C02—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
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- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F1/00—Treatment of water, waste water, or sewage
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- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F1/00—Treatment of water, waste water, or sewage
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- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
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- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
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- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
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Abstract
本发明公开了一种直饮水分质给水设备及其供水方法。直饮水分质给水设备,包括直饮水处理模块和水质监测模块;直饮水处理模块包括依次连接构成过滤水路的预过滤组件、第一水泵、反渗透膜组件和净水箱,预过滤组件包括连接在过滤水路上的多介质过滤器、活性炭过滤器和软水器,软水器上连接有盐箱;水质监测模块包括监控器、封闭水罐和第一水质传感器,封闭水罐连接在反渗透膜组件和净水箱之间,第一水质传感器设置在封闭水罐中,第一水质传感器与监控器连接。实现提高直饮水分质给水设备的水质参数检测精度和检测范围,以提高用户体验性。
Description
直饮水分质给水设备及其供水方法
技术领域
[0001] 本发明涉及给水设备技术领域,尤其涉及一种直饮水分质给水设备及其供水方 法。
背景技术
[0002] 目前,随着人们生活水平的提高,直饮水的需求大量增加,直饮水供水技术随之不 断的发展。直饮水供水设备通常包括供水模块、过滤组件和滤膜组件等器件组成,外部水源 输送的原水进入到供水模块后,由供水模块将原水输送到过滤组件和滤膜组件中进行处 理,以获得直饮水。中国专利号CN2012201564775公开了一种无负压直饮水制备及供水装 置,上述专利公开的技术方案中在净水罐的出水口和连接用户端的输出管道上连接有水质 综合在线测控装置,但是,在实际使用过程中,在管道上设置的水质传感器的数量受限,导 致检测的参数有限,并且,从净水罐中输出的水也容易受外界因素的影响导致水质产生变 化而影响检测准确性。如何设计一种检测精度高、检测范围广以提高用户体验性的直饮水 供水设备是本发明所要解决的技术问题。
发明内容
[0003] 本发明所要解决的技术问题是:提供一种直饮水分质给水设备及其供水方法,实 现提高直饮水分质给水设备的水质参数检测精度和检测范围,以提高用户体验性。
[0004] 本发明提供的技术方案是,一种直饮水分质给水设备,包括直饮水处理模块和水 质监测模块;所述直饮水处理模块包括依次连接构成过滤水路的预过滤组件、第一水泵、反 渗透膜组件和净水箱,所述预过滤组件包括连接在所述过滤水路上的多介质过滤器、活性 炭过滤器和软水器,所述软水器上连接有盐箱;所述水质监测模块包括监控器、封闭水罐和 第一水质传感器,所述封闭水罐连接在所述反渗透膜组件和所述净水箱之间,所述第一水 质传感器设置在所述封闭水罐中,所述第一水质传感器与所述监控器连接。
[0005] 进一步的,所述直饮水分质给水设备还包括连接在一起的原水箱和加压泵,所述 加压泵与所述预过滤组件连接。
[0006] 进一步的,所述直饮水分质给水设备还包括无负压供水模块,所述无负压供水模 块包括依次连接构成主水路的主进水管、主供水栗和主出水管,所述主出水管用于向所述 预过滤组件和用户用水端供水。
[0007] 进一步的,所述水质监测模块包括连接在所述主水路中的第二水质传感器,所述 主出水管的进水口和所述第一水泵的出水口之间还连接有第一旁通管,所述第一旁通管上 设置有第一电控阀。
[0008] 进一步的,所述主进水管的出水口和所述第一水栗的进水口之间还连接有第二旁 通管,所述第二旁通管上设置有第二电控阀。
[0009] 进一步的,所述水质监测模块还包括连接在所述多介质过滤器的出水口、和/或所 述活性炭过滤器的出水口、和/或所述软水器的出水口上的第三水质传感器。
[0010] 进一步的,所述净水箱的出水口连接有第二水栗,所述第二水泵和所述净水箱之 间的管路上并联有紫外杀菌器。
[0011] 本发明还提供一种上述直饮水分质给水设备的供水方法,包括水质调节供水模 式; 所述水质调节供水模式:当第二水质传感器检测的水质不达标时,无负压供水模块中 主出水管输出的水先经过预过滤组件进行过滤处理后,再通过第一水泵加压后经由第一旁 通管输送至主出水管。
[0012] 进一步的,所述水质调节供水模式,具体为: 当第二水质传感器检测的水杂质超标时,主出水管输出的水经过多介质过滤器过滤处 理; 和/或,当第二水质传感器检测的水有异味异色时,主出水管输出的水经过活性炭过滤 器过滤处理; 和/或,当第二水质传感器检测的水的硬度含量超标时,主出水管输出的水经过软水器 过滤处理。
[0013] 进一步的,所述供水方法还包括节能供水模式,所述节能供水模式,当用户端总用 水量低于设定值时,主供水栗停止运转,主进水管引入的水经由第二旁通管输送至第一水 泵,再通过第一水泵加压后经由第一旁通管输送至主出水管。
[0014] 与现有技术相比,本发明的优点和积极效果是:本发明提供的直饮水分质给水设 备及其供水方法,通过在反渗透膜组件和净水箱之间设置封闭水罐,并将水质监测模块中 的第一水质传感器放置在封闭水罐中检测直饮水的水质参数,由于反渗透膜组件输出的直 饮水直接进入到封闭水罐中,确保被检测的直饮水不受外界因素的干扰,提局检测的精确 性,同时,反渗透膜组件输出直饮水的过程中,封闭水罐获得稳定的水流量,可以满足实时 监测直饮水的出水质量更有利于提高检测的准确性;而独立设置的封闭水罐来安装第一水 质传感器,能够根据需要将不同种类的传感器安装在封闭水罐,从而可以检测更多种水质 的参数,扩宽检测范围,实现提高了直饮水分质给水设备的水质参数检测精度和检测范围, 以提高用户体验性。
附图说明
[0015] 为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现 有技术描述中所需要使用的附图作一简单地介绍,显而易见地,下面描述中的附图是本发 明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根 据这些附图获得其他的附图。
[0016] 图1为本发明直饮水分质给水设备实施例的管路布置原理图一。
[0017] 图2为本发明直饮水分质给水设备实施例的管路布置原理图二。
具体实施方式
[0018] 为使本发明实施例的目的、技术方案和优点更加清楚,下面将结合本发明实施例 中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是 本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员 在没有作出创造性5?动前提下所获得的所有其他实施例,都属于本发明保护的范围。
[0019]如图1所示,本实施例直饮水分质给水设备,包括直饮水处理模块200和水质监测 模块;所述直饮水处理模块200包括依次连接构成过滤水路的预过滤组件21、第一水栗22、 反渗透膜组件23和净水箱25,所述预过滤组件21包括连接在所述过滤水路上的多介质过滤 器211、活性炭过滤器212和软水器213,所述软水器213上连接有盐箱;所述水质监测模块包 括监控器(未图示)、封闭水罐501和第一水质传感器502,所述封闭水罐501连接在所述反渗 透膜组件23和所述净水箱25之间,所述第一水质传感器502设置在所述封闭水罐501中,所 述第一水质传感器502与所述监控器连接。
[0020]具体而言,本实施例直饮水分质给水设备在采用独立的封闭水罐501连接在反渗 透膜组件23和所述净水箱25之间,反渗透膜组件23输出的直饮水流经封闭水罐501后进入 到净水箱25中,封闭水罐501中流动的直饮水不会受外界因素的干扰,而第一水质传感器 502设置在所述封闭水罐501中能够准确的检测直饮水的相关参数指标,从而提高检测的精 确性;相比于现有技术中在净水箱25或在净水箱25的出水管路中设置传感器,净水箱25中 的水以及出水管路中的水极容易被外界因素影响而导致水质变化,而封闭水罐501中的水 直接来自反渗透膜组件23的出水口,并且,在直饮水供用过程中,反渗透膜组件23输出的直 饮水能保证封闭水罐501中的水流流量,使得第一水质传感器502实时动态的检测直饮水的 水质参数,并且,利用监控器能够将相关检测到的水质参数显示给用户,从而使得用户能直 观的看到相关信息,真正意义上实现在线有效监测水质。
[0021] 其中,第一水质传感器502可以为PH/0RP传感器、电导率传感器、浊度传感器、溶解 氧传感器、余氯传感器、C0D传感装置、盐度传感器、氨氮传感器等传感器,本实施例对第一 水质传感器502的具体表现实体不做限制。
[0022]本实施例直饮水分质给水设备在实际使用时,需要有对应的供水源提供原水,如 图1所示,供水源100包括连接在一起的原水箱11和加压泵12,所述加压栗12与所述预过滤 组件21连接。具体的,原水箱11中盛放有待处理的水,原水箱11中的水通过加压泵12输送至 预过滤组件21中,在经过保安过滤器24和反渗透组件23处理获得直饮水。
[0023]同样的,如图2所示,供水源可以采用无负压供水模块100,所述无负压供水模块 100包括依次连接构成主水路的主进水管11、主供水泵12和主出水管13,所述主出水管13用 于向所述预过滤组件21和用户端供水管1000(即用户用水端)供水。具体的,常规的小区需 要配备无负压供水模块100进行生活用水的供给,本实施例直饮水分质给水设备中的无负 压供水模块1〇〇除了满足用户生活用水供用外,还用于向直饮水处理模块200共用水源。优 选的,所述水质监测模块包括连接在所述主水路中的第二水质传感器101,所述主出水管13 的进水口和所述第一水泵22的出水口之间还连接有第一旁通管301,所述第一旁通管301上 设置有第一电控阀(未标记)。具体的,本实施例直饮水分质给水设备通过无负压供水模块 100与市政管网连接,实现向小区内的住户供水,其中,所述主出水管13输出的水可以与居 民小区中用户端供水管1〇〇〇连接,实现供给居民生活用水,同时利用小区的无负压供水模 块100进行直饮水供用,主出水管13输出的水还输送供给直饮水处理模块200,主出水管13 输出的水进入到预过滤组件21中处理后,再通过第一水栗22加压后经由反渗透膜组件23的 反渗透处理获得直饮水,直饮水处理模块200输出的直饮水可以连接小区中用户端直饮水 管2000,以实现向用户供给直饮水。本实施例直饮水分质给水设备共用一套无负压供水模 块100即可满足小区常规生活用水和直饮水的供给,有效的降低了安装和使用成本。更重要 的是,通过在主出水管13的进水口和第一水泵22的出水口之间设置第一旁通管301,当市政 管网输送的水质下降时,用户生活用水的水质也将下降,此时,第二水质传感器101将监测 到主水路中的水质下降,第一电控阀打开,主出水管13输出的部分水将经过预过滤组件21 处理,经处理后的水质将有效的改善并经由第一旁通管301输送至主出水管13的进水口,这 样,便可以使得处理后的优质水与从市政管网输入的水混合,实现调节水质的功能,最终使 得用户获得的生活用水达到标准,提高用户的用水质量。而对于第二水质传感器101可以根 据需要采用能够检测水质杂质、异味异色、硬度功能的传感器,而第二水质传感器101的安 装位置可以设置在主进水管11的出水口、主供水泵12进出水口,或主出水管13的进出水口 处,从而实现动态实时监测水质。
[0024] 其中,为了使得用户生活用水与直饮水处理模块200能够共用无负压供水模块 100,首先,无负压供水模块100中主供水泵12产生的水压需要足够大,以满足常规小区生活 用水的水压要求,而对于无负压供水模块100输入到直饮水处理模块200中的水,所述预过 滤组件21与所述主出水管13之间还设置有第二减压阀210,具体的,第二减压阀210能够有 效的对进入到直饮水处理模块200的水压进行降压处理,以避免用户生活用水供水水压过 大而对直饮水处理模块200中的相关部件造成损坏,优选的,在所述第一旁通管301上还设 置有第一减压阀310。另外,所述主进水管11和所述主供水栗12之间还设置有稳流补偿器 14。而为了提高直饮水的质量,预过滤组件21和所述第一水泵22之间还设置有保安过滤器 24。同时,所述净水箱25的出水口连接有第二水泵26,所述第二水栗26和所述净水箱25之间 的管路上设置有紫外杀菌器27。具体的,反渗透膜组件23的输出的水存储在净水箱25中供 用户使用,而净水箱25中的水可以通过第二水泵26加压输送至用户端直饮水管2000,从而 可以配送至不同的用户家中,而紫外杀菌器27可以根据需要对净水箱25输出的水进行杀菌 处理,以提高直饮水的水质。而为了方便实现调节用户生活用水水质的目的,多介质过滤器 211、所述活性炭过滤器212和软水器213分别通过对应的阀组件连接在所述过滤水路上,所 述阀组件包括第一阀门201和两个第二阀门202,所述第一阀门201串联所述过滤水路中,所 述第一阀门201的两端口分别连接对应的所述第二阀门202,所述多介质过滤器211和所述 活性炭过滤器212分别连接对应的所述阀组件的两个所述第二阀门202之间。具体的,多介 质过滤器211和所述活性炭过滤器212分别通过对应的阀组件进行控制,并根据需要选择性 的通过多介质过滤器211和所述活性炭过滤器212对水进行过滤处理,从而可以在检测到水 质某项指标不达标时,可以选择对应的过滤器进行处理,实现快速的调节水质。
[0025] 进一步的,为了有效的降低能耗,主进水管11的出水口和所述第一水栗22的进水 口之间还连接有第二旁通管302,所述第二旁通管302上设置有第二电控阀(未标记)。具体 的,在实际使用过程中,常规的无负压供水设备中的水泵24小时不间断的运行,而在晚上用 户用水量大大降低的情况下,无负压供水设备一致保持运行状态将消耗大量的电能,而在 用户低用水量的情况下,无负压供水模块100中的主供水栗12断电停止工作,此时,第二电 控阀打开,第一水泵22通电运转,主进水管11输出的水通过第一水泵22加压处理后经由第 二旁通管302输送至主出水管13,从而满足用户在低用水量的情况下的供水要求。而关于用 户用水量的大小,可以通过流量监测设备进行监测,当用户生活水用量少时,优先开启第一 水泵22进行供水,当第一水栗22供水量满足不了用户需求时,再开启主供水泵12,从而起到 节能作用。
[0026]又进一步的,为了充分的利用直饮水处理模块200产生的废水,本实施例直饮水分 质给水设备还包括浓水收集箱401和冲刷水收集箱402,所述滤膜组件32的废水排出口连接 所述浓水收集箱401,而预过滤组件21、保安过滤器22的反冲洗水排出口连接冲刷水收集箱 4〇2。具体的,在将市政管网输送的水处理形成直饮水的过程中,市政管网输送的水经过预 过滤组件21和保安过滤器22过滤处理后的水进入到滤膜组件32中,而进入到滤膜组件32中 的部分水形成直饮水输送至净水箱33中,被截留在膜的进水侧的离子、有机物、细菌、病毒 等随剩余的水形成浓水并从滤膜组件32的废水排出口,浓水收集箱401收集的废水仅是水 的硬度、浊度较高不满足用户生活用水,但是,浓水中由于含有有机物和无机盐有利于植物 生长,通过浓水收集箱401收集浓水可以用于小区植物的灌溉;而对于预过滤组件21、保安 过滤器22进行反冲洗时产生的反冲洗水,由于含有药剂、PH值超标,不能用于植物的灌溉, 可以通过冲刷水收集箱402进行收集,冲刷水收集箱402中的水可以用于小区中公共卫生间 的冲刷水。相比于现有技术中的直饮水设备将废水直接外排,本实施例直饮水分质给水设 备能够最大化的利用水资源,减少浪费,实现绿色环保。
[0027]本发明还提供一种上述直饮水分质给水设备的供水方法,包括水质调节供水模 式; 所述水质调节供水模式:当第二水质传感器检测的水质不达标时,主出水管输出的水 先经过预过滤组件进行过滤处理后,再通过第一水泵加压后经由第一旁通管输送至主出水 管。具体的,市政管网中的水受季节、环境等因素的影响,不同时期,市政管网中的水质会不 同,当市政管网的水质下降后,这将导致用户的生活用水的水质下降,为了确保用户生活用 水的水质保持较高的水平,以提高用户体验性,向用户供用生活用水过程中,在第二水质传 感器检测的水质不达标时,则主出水管输出的部分水将经过直饮水处理模块中的预过滤组 件处理,从而获得较高水质的水源,然后,再通过第一旁通管将处理后的高水质的水输送至 主出水管,这样便可以有效调节用户生活用水的水质,从而使得本实施例直饮水分质给水 设备的功能多样化,通用性更强。其中,水质调节供水模式,具体为:当第二水质传感器检测 的水杂质超标时,主出水管输出的水经过多介质过滤器过滤处理;和/或,当第二水质传感 器检测的水有异味异色时,主出水管输出的水经过活性炭过滤器过滤处理;和/或,当第二 水质传感器检测的水的硬度含量超标时,主出水管输出的水经过软水器过滤处理。
[0028] 进一步的,所述供水方法还包括节能供水模式,所述节能供水模式,当用户端总用 水量低于设定值时,主供水栗停止运转,主进水管引入的水经由第二旁通管输送至第一水 栗,再通过第一水泵加压后经由第一旁通管输送至主出水管。具体的,在无负压供水模块运 行过程中,主供水栗为了提供足够大的水压,主供水泵的功率较大导致耗电量较大,但是, 在夜晚阶段,用户的用水量很少,此时,节能供水模式启动,主供水栗停止运转,而利用直饮 水处理模块中的第一水泵作为动力将主进水管引进的水加压输送至用户端,这样,可以在 用水量较少的情况下,有效的降低本实施例直饮水分质给水设备的能耗,实现绿色低碳运 行。
[0029] 本发明提供的直饮水分质给水设备的供水方法,通过利用无负压供水模块同时为 用户的生活用水以及直饮水处理模块供水,而无需针对直饮水功能单独配置无负压供水模 块,这将大大降低了安装成本和使用成本,同时使得整套设备的占用空间大大缩小,同时, 利用主水路中的第二水质传感器来检测无负压供水模块输送的水的水质情况,当检测到水 质不满足要求时,可以将部分水经过预过滤组件处理后再返回到主出水管输出,从而可以 方便的调节用户生活用水的水质,实现直饮水分质给水设备功能多元化,并减少其所占用 的空间,降低了安装和使用成本。
[0030]最后应说明的是:以上实施例仅用以说明本发明的技术方案,而非对其限制;尽管 参照前述实施例对本发明进行了详细的说明,本领域的普通技术人员应当理解:其依然可 以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换; 而这些修改或者替换,并不使相应技术方案的本质脱离本发明各实施例技术方案的精神和 范围。
Claims (10)
1. 一种直饮水分质给水设备,其特征在于,包括直饮水处理模块和水质监测模块;所述 直饮水处理模块包括依次连接构成过滤水路的预过滤组件、第一水泵、反渗透膜组件和净 水箱,所述预过滤组件包括连接在所述过滤水路上的多介质过滤器、活性炭过滤器和软水 器,所述软水器上连接有盐箱;所述水质监测模块包括监控器、封闭水罐和第一水质传感 器,所述封闭水罐连接在所述反渗透膜组件和所述净水箱之间,所述第一水质传感器设置 在所述封闭水罐中,所述第一水质传感器与所述监控器连接。
2. 根据权利要求1所述的直饮水分质给水设备,其特征在于,所述直饮水分质给水设备 还包括连接在一起的原水箱和加压栗,所述加压泵与所述预过滤组件连接。
3. 根据权利要求1所述的直饮水分质给水设备,其特征在于,所述直饮水分质给水设备 还包括无负压供水模块,所述无负压供水模块包括依次连接构成主水路的主进水管、主供 水栗和主出水管,所述主出水管用于向所述预过滤组件和用户用水端供水。
4. 根据权利要求3所述的直饮水分质给水设备,其特征在于,所述水质监测模块包括连 接在所述主水路中的第二水质传感器,所述主出水管的进水口和所述第一水栗的出水口之 间还连接有第一旁通管,所述第一旁通管上设置有第一电控阀。
5. 根据权利要求4所述的直饮水分质给水设备,其特征在于,所述主进水管的出水口和 所述第一水栗的进水口之间还连接有第二旁通管,所述第二旁通管上设置有第二电控阀。
6. 根据权利要求1所述的直饮水分质给水设备,其特征在于,所述水质监测模块还包括 连接在所述多介质过滤器的出水口、和/或所述活性炭过滤器的出水口、和/或所述软水器 的出水口上的第三水质传感器。
7. 根据权利要求1所述的直饮水分质给水设备,其特征在于,所述净水箱的出水口连接 有第二水泵,所述第二水栗和所述净水箱之间的管路上并联有紫外杀菌器。
8. —种如权利要求1-7任一所述的直饮水分质给水设备的供水方法,其特征在于,包括 水质调节供水模式; 所述水质调节供水模式:当第二水质传感器检测的水质不达标时,无负压供水模块中 主出水管输出的水先经过预过滤组件进行过滤处理后,再通过第一水栗加压后经由第一旁 通管输送至主出水管。
9.根据权利要求8所述的供水方法,其特征在于,所述水质调节供水模式,具体为: 当第二水质传感器检测的水杂质超标时,主出水管输出的水经过多介质过滤器过滤处 理; 和/或,当第二水质传感器检测的水有异味异色时,主出水管输出的水经过活性炭过滤 器过滤处理; 和/或,当第二水质传感器检测的水的硬度含量超标时,主出水管输出的水经过软水器 过滤处理。
10.根据权利要求8所述的供水方法,其特征在于,所述供水方法还包括节能供水模式, 所述节能供水模式:当用户端总用水量低于设定值时,主供水泵停止运转,主进水管引入的 水经由第二旁通管输送至第一水栗,再通过第一水栗加压后经由第一旁通管输送至主出水 管。
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CN107522308A (zh) * | 2017-10-13 | 2017-12-29 | 朱平 | 一种智能纯水机 |
CN110183049A (zh) * | 2019-06-13 | 2019-08-30 | 苏州浦立特电子科技有限公司 | 一种过滤装置 |
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CN107399843A (zh) * | 2017-08-30 | 2017-11-28 | 上海北工华泰环保科技有限公司 | 一种高性能微电脑控制的纯水机 |
CN107522308A (zh) * | 2017-10-13 | 2017-12-29 | 朱平 | 一种智能纯水机 |
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