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    • 1. 发明公开
    • FRESH WATER PRODUCTION METHOD AND FRESH WATER PRODUCTION DEVICE
    • 用于淡水和装置的淡水生产研制
    • EP2476651A1
    • 2012-07-18
    • EP10815187.9
    • 2010-05-20
    • Toray Industries, Inc.
    • TANIGUCHI, MasahideTAKABATAKE, HirooOGIWARA, Wakako
    • C02F1/44B01D61/06B01D61/58
    • B01D61/06B01D61/022C02F1/44C02F1/52C02F1/66C02F1/76C02F3/1273C02F5/08C02F2103/08C02F2303/10C02F2303/18C02F2303/185Y02W10/15Y02W10/30
    • An object of the present invention is to, in a pure water production apparatus that utilizes a mixture of a plurality of kinds of feed water and uses a semi-permeable membrane, effectively utilize energy of concentrate discharged from a semi-permeable membrane unit and provide, at low cost, a pure water production apparatus and method that effectively use an isobaric type energy recovery unit that can efficiently recover energy against feed water variation. For the object, in a pure water producing method by supplying and having a plurality of kinds of feed water with different water qualities permeated through a semi-permeable membrane to produce the pure water, a portion (referred to as first feed water) of the plurality of kinds of feed water supplied to a semi-permeable membrane unit comprising the semi-permeable membrane is boosted by utilizing an isobaric type energy recovery unit that recovers pressure energy of concentrate discharged from the semi-permeable membrane unit, the rest (referred to as second feed water) of the plurality of kinds of feed water is boosted by a high pressure pump, and the boosted first and second feed water are supplied together to the semi-permeable membrane unit.
    • 本发明的一个目的是,在纯水制造装置也利用种进料水的多个的混合物,并使用半渗透膜,有效地利用从一个半透膜单元排出的浓缩物的能量,并提供 以低成本,纯水制造装置和方法也有效利用给水交换式能量回收单元也可以高效地回收能量对变化。 为对象,在纯水中通过供应和具有种不同水质供给水的多个生成方法通过一个半透膜渗透,以产生纯净水,的一个部分(通过被称为第1供给水) 种供给到半透膜单元,包括半渗透膜供给水的多个通过交换式能量回收单元的利用升压的确从半透膜单元,其余(通过向称为排出浓缩物中恢复压力能量 作为第二进料水)种进料水的多个由高压泵升压,并把所放大的第一和第二进料水被一起提供给半透膜单元。
    • 3. 发明公开
    • WATER PRODUCTION SYSTEM AND OPERATION METHOD THEREFOR
    • WESERHERSTELLUNGSSYSTEM UND BETRIEBSVERFAHRENDAFÜR
    • EP2518020A1
    • 2012-10-31
    • EP10839052.7
    • 2010-10-18
    • Toray Industries, Inc.
    • OGIWARA, WakakoTAKABATAKE, HirooTANIGUCHI, Masahide
    • C02F1/44B01D61/58
    • B01D61/58B01D61/02B01D61/025B01D61/027B01D61/04B01D61/08B01D61/145B01D61/147B01D61/16B01D2311/04B01D2317/022B01D2317/025B01D2317/04B01D2317/06B01D2317/08B01D2321/16C02F1/006C02F1/44C02F1/441C02F1/442C02F3/1268C02F2103/08Y02W10/15B01D2311/14
    • Disclosed are: a water producing system which is provided with a semi-permeable membrane treatment process A100 for subjecting treatment target water A1 to semi-permeable membrane treatment to produce membrane permeate A3 and concentrate A, a semi-permeable membrane treatment process B200 which is equipped with a treatment target water B branching means for branching treatment target water B2 into two or more, and subjects the treatment target water B to the semi-permeable membrane treatment to produce a membrane B5 and concentrate B6, and a semi-permeable membrane treatment process C300 which is equipped with a first water mixing means for mixing one of the treatment target water B branched by the treatment target water B branching means with at least part of the concentrate A produced in a semi-permeable membrane treatment step A, and subjects the mixed water to the semi-permeable membrane treatment to produce membrane permeate C7 and concentrate C8, thereby producing fresh water from a plurality of kinds of raw water which differ in osmotic pressure utilizing composite water treatment technologies in which a plurality of membrane units using a semi-permeable membrane are disposed, and the water producing system can ensure a necessary water production quantity, and cope with a size increase of the system while responding to change in a water intake quantity of raw water; and an operation method therefor.
    • 公开了一种水处理系统,其具有用于对处理对象水A1进行半透膜处理以生产膜渗透物A3和浓缩物A的半透膜处理工序A100,半透膜处理工序B200, 配备处理对象水B分支装置,用于将处理目标水B2分支为两个或更多个,并将处理目标水B进行半透膜处理以产生膜B5和浓缩物B6,以及半渗透膜处理 处理C300,其配备有第一水混合装置,用于将由处理目标水B分支装置分支的处理目标水B与在半渗透膜处理步骤A中产生的浓缩物A的至少一部分混合, 混合水到半透膜处理以产生膜渗透物C7并浓缩C8,从而产生淡水 使用其中设置有多个使用半透膜的膜单元的复合水处理技术在渗透压上不同的多种原水,并且水生产系统可以确保必要的水产量,并且处理 响应原水进水量的变化,系统的大小增加; 及其操作方法。
    • 7. 发明公开
    • CONCENTRATION DIFFERENCE POWER GENERATION DEVICE AND METHOD FOR OPERATING SAME
    • 浓度差异发电装置及其操作方法
    • EP2693050A1
    • 2014-02-05
    • EP12763989.6
    • 2012-03-29
    • Toray Industries, Inc.
    • TANIGUCHI, MasahideMAEDA, Tomohiro
    • F03G7/00
    • F03B13/00B01D61/002F03G7/005Y02E10/28Y02E10/46
    • A concentration-difference power generation apparatus in which high-concentration water and low-concentration water which differ in their concentrations are brought into contact with each other through a semi-permeable membrane unit including a semi-permeable membrane, and a resultant increase in an amount of the high-concentration water due to permeation of water from a low-concentration side to a high-concentration side caused by a forward osmotic pressure is utilized to drive an electric generator to generate electricity, in which the semi-permeable membrane unit is divided into a plurality of subunits and the concentration-difference power generation apparatus includes a pressure change mechanism disposed on a high-concentration-side channel extending from the preceding-stage subunit to the next-stage subunit or a low-concentration-side channel.
    • 一种浓度差发电装置,其中浓度不同的高浓度水和低浓度水通过包含半透膜的半透膜单元彼此接触, 由于由正向渗透压引起的水从低浓度侧渗透到高浓度侧所导致的高浓度水的量被用来驱动发电机发电,其中半透膜单元是 被分成多个子单元,并且浓度差发电装置包括布置在从前级子单元延伸到下一级子单元或低浓度侧通道的高浓度侧通道上的压力变化机构。