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    • 5. 发明申请
    • POINT-OF-USE WATER TREATMENT SYSTEM
    • 使用水处理系统
    • WO1997020776A1
    • 1997-06-12
    • PCT/US1996019385
    • 1996-12-05
    • TELEDYNE INDUSTRIES, INC.
    • TELEDYNE INDUSTRIES, INC.THOMPSON, Paul, MartinGLIDDEN, Daniel, L.
    • C02F01/28
    • C02F1/76A47J31/605C02F1/003C02F1/50C02F2303/18C02F2307/04
    • The point-of-use water treatment system (10) for treating water to be dispensed from a container (14) includes a filter media (22) positioned adjacent a water input opening (12) of the container, through which water is filtered into the container (14). The filter media (22) includes a water soluble disinfectant (24) positioned thereon or therein, with the preferred disinfectant tetraglycine hydroperiodide, chloramine-T, or calcium hypochlorite. The disinfectant dissolves in the water as it passes through the filter (22), and reduces the biological activity of microbiological agents in the water. A point-of-use method of the present invention which reduces microbiological contamination in a predetermined volume of water to be dispensed from a container (14) which utilizes a filter media (22) containing a water soluble disinfectant impregnated thereon is also disclosed. The method includes the steps of positioning the filter media (22) adjacent the opening (12) of the container, filtering water through the filter media (22), dissolving the disinfectant in the water as it passes through the filter media (22), allowing the disinfectant to contact and deactivate microbiological agents in the water, and disposing of the filter media.
    • 用于处理从容器(14)分配的水的使用水处理系统(10)包括邻近容器的水输入开口(12)定位的过滤介质(22),水被过滤 容器(14)。 过滤介质(22)包括位于其上或其中的水溶性消毒剂(24),优选的消毒剂四甘氨酸氢过碘酸盐,氯胺-T或次氯酸钙。 消毒剂在通过过滤器(22)时溶解在水中,并降低微生物在水中的生物活性。 还公开了本发明的使用点方法,其减少了从容纳了含有浸渍在其上的水溶性消毒剂的过滤介质(22)的容器(14)中分配的预定体积的水中的微生物污染物。 该方法包括以下步骤:将过滤介质(22)定位在容器的开口(12)附近,过滤水通过过滤介质(22),当消毒剂通过过滤介质(22)时将消毒剂溶解在水中, 允许消毒剂接触和停用水中的微生物,并处理过滤介质。
    • 8. 发明申请
    • METHOD AND APPARATUS FOR PURIFYING WATER
    • 净化水的方法和装置
    • WO1995000442A1
    • 1995-01-05
    • PCT/JP1994000518
    • 1994-03-30
    • TOTO LTD.HIASA, MasamiASHIE, NobuyukiSAITO, SusumuOHTANI, Takayuki
    • TOTO LTD.
    • C02F01/28
    • C02F1/766B01J20/20B01J20/28023B01J20/28078B01J20/2809B01J20/3416B01J20/3483B01J2220/62C02F1/003C02F1/283
    • A method and apparatus for purifying water by the active carbon regeneration system. Contact of tap water with active carbon fibers having a narrow pore distribution and excellent adsorption velocity enables adsorption and removal of residual chlorine, harmful trihalomethanes, and odoriferous substances such as 2-methylisoborneol and diosmin contained in tap water. The use of active carbon fibers having a median pore diameter of about 1.8-3.0 nm, preferably, about 2.0-2.7 nm enables odoriferous substances having large molecular weights to be exhaustively and selectively adsorbed by the carbon fibers. At any time when out of use, the carbon fibers are heated to 100-120 DEG C, whereby the adsorbed trihalomethanes are desorbed and the fibers recover the capacity of adsorbing trihalomethanes. Thus the carbon fibers can, even in a limited quantity, adsorb trihalomethanes and odoriferous substances for long without the necessity for exchanging active carbon fiber cartridges.
    • 一种通过活性炭再生系统净化水的方法和装置。 自来水与具有窄孔分布和优异吸附速度的活性炭纤维的接触可以吸附和除去自来水中含有的残留氯,有害三卤甲烷和气味物质如2-甲基异硼烷和二恶烷。 使用中值孔径为约1.8-3.0nm,优选为约2.0-2.7nm的活性碳纤维使得具有大分子量的有气味物质被碳纤维废气和选择性吸附。 在不使用时,碳纤维被加热至100-120℃,吸附的三卤甲烷被解吸,纤维回收吸附三卤甲烷的能力。 因此,碳纤维即使在有限的范围内也可以长时间吸附三卤甲烷和有气味的物质,而不需要更换活性碳纤维筒。