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    • 1. 发明授权
    • Microorganism removing method
    • 微生物去除方法
    • US5591349A
    • 1997-01-07
    • US338304
    • 1994-11-14
    • Akira IkedaNaoki NakatsugawaYumiko YoshimuraYasuhiro TanimuraKenji Ezaki
    • Akira IkedaNaoki NakatsugawaYumiko YoshimuraYasuhiro TanimuraKenji Ezaki
    • B08B3/08C02F1/78
    • B08B3/08C02F1/78C02F2303/20C02F5/083
    • An organism deposition preventing system for removing organisms propagated in water comprises: an ozonizer for generating ozone, an ozone adsorber containing an ozone adsorbent for storing ozone generated by the ozonizer, a water-jet ejector for injecting an ozonous gas produced by desorbing ozone from the ozone adsorbent of the ozone absorber into the water, and a carbon dioxide gas source means for supplying carbon dioxide gas to be injected into the water together with the ozonous gas or in synchronism with the injection of the ozonous gas into the water. A microorganism removing method for removing microorganisms propagated in water injects a mixed gas consisting of an ozonous gas and carbon dioxide gas into the water or injects carbon dioxide gas in synchronism with the injection of the ozonous gas into the water.
    • 一种用于去除在水中传播的生物体的生物体沉积防止系统,包括:臭氧发生器,用于产生臭氧的臭氧发生器,含臭氧吸附剂的臭氧吸收剂,用于储存由臭氧发生器产生的臭氧;喷射喷射器,用于将由臭氧脱附产生的臭氧产生的臭氧气体注入 将臭氧吸收器的臭氧吸附剂注入水中;以及二氧化碳气体源装置,用于将二氧化碳气体与臭氧气体一起供入水中,或者与将臭氧气体注入水中同时进行。 用于去除在水中传播的微生物的微生物除去方法将由臭氧气体和二氧化碳气体组成的混合气体注入到水中,或者将臭氧气体注入水中同时注入二氧化碳气体。
    • 6. 发明授权
    • Electric energy converting/storing system
    • 电能转换/存储系统
    • US06537508B1
    • 2003-03-25
    • US09717288
    • 2000-11-22
    • Yasuhiro TanimuraMasaki KuzumotoJunji HirotsujiShigeki NakayamaOsamu MatsuokaMasao Nozaki
    • Yasuhiro TanimuraMasaki KuzumotoJunji HirotsujiShigeki NakayamaOsamu MatsuokaMasao Nozaki
    • B01J1908
    • C01B13/11C01B13/10C01B2201/62C01B2201/72C01B2201/74
    • An electric energy conversion/storage system includes an ozone generating means (12) for producing an ozonized gas from a raw material gas containing oxygen by utilizing electric energy, an ozone adsorbing/desorbing means (15) for adsorbing ozone contained in the ozonized gas and desorbing ozone from the adsorbed state, a gas circulation system for causing the raw material gas and the ozonized gas to flow through the ozone generating means (12) and the ozone adsorbing/desorbing means (15) while feeding back to the ozone generating means (12) a residual part of the oxygen gas remaining after adsorption of ozone, a coolant supply means (16) for cooling the ozone adsorbing/desorbing means (15), and an ozone discharging means (29, 30) for taking out an ozone containing gas which contains ozone molecules from the ozone adsorbing/desorbing means (15) to thereby supply the ozone containing gas to an ozone consumer (23). The ozone discharging means (29, 30) includes an ozone concentration control means (29) for enabling supply of the ozone containing gas to the ozone consumer (23) substantially at a predetermined ozone concentration and substantially at a predetermined constant flow rate.
    • 一种电能转换/储存系统包括:臭氧发生装置(12),用于通过利用电能从含有氧的原料气体产生臭氧化气体;臭氧吸附/解吸装置(15),用于吸收臭氧化气体中所含的臭氧; 从吸附状态解吸臭氧,使原料气体和臭氧化气体在返回到臭氧发生装置的同时通过臭氧发生装置(12)和臭氧吸附/解吸装置(15)的气体循环系统( 12)吸附臭氧后残留的氧气残留部分,用于冷却臭氧吸附/解吸装置(15)的冷却剂供应装置(16)和用于取出含臭氧的臭氧的臭氧排出装置(29,30) 含有来自臭氧吸附/解吸装置(15)的臭氧分子的气体,从而向臭氧消耗装置(23)供给含臭氧气体。 臭氧排放装置(29,30)包括臭氧浓度控制装置(29),用于能够基本上以预定的臭氧浓度和基本上以预定的恒定流量向臭氧消耗装置(23)供应含臭氧的气体。
    • 9. 发明申请
    • APPARATUS FOR PRODUCING HIGH-CONCENTRATION OZONE GAS AND METHOD OF PRODUCING HIGH-CONCENTRATION OZONE GAS
    • 生产高浓度臭氧气体的方法及生产高浓度臭氧气体的方法
    • US20110052483A1
    • 2011-03-03
    • US12745595
    • 2008-11-28
    • Yoichiro TabataYujiro OkiharaTetsuya SaitsuNoriyuki NakamuraRyohei UedaKoji OtaYasuhiro Tanimura
    • Yoichiro TabataYujiro OkiharaTetsuya SaitsuNoriyuki NakamuraRyohei UedaKoji OtaYasuhiro Tanimura
    • C01B13/10B01J19/08
    • C01B13/10B01D53/04B01D53/047B01D2253/106B01D2256/14B01D2259/403B01D2259/404B01D2259/41C01B13/0203
    • An ozonized gas having a pressure exceeding atmospheric pressure and having a predetermined concentration is supplied to adsorption/desorption columns (4) at a low temperature state of 0° C. or less and a high pressure and packed with silica gel (6) serving as an adsorbent. The adsorption/desorption columns (4) have been constituted so that at least three of a plurality of adsorption/desorption columns (4), i.e., adsorption/desorption columns (4-1, 4-2, and 4-3), are disposed in a serial cycle arrangement to constitute a main adsorption/desorption column group (99), and that an adsorption/desorption column (4-4) is disposed in parallel with the main adsorption/desorption column group (99) to constitute an auxiliary adsorption/desorption column (999). In a period in which none of the three columns of the main adsorption/desorption column group (99) is performing desorption processing, the auxiliary adsorption/desorption column (999) performs desorption processing. Therefore, the apparatus can continuously output high-concentration ozone at a high flow rate. By thus efficiently producing a high-concentration ozonized gas, the amount of the ozone capable of being output can be increased and the amount of discharge gas which is not permitted to be output can be reduced. That efficient production enables the apparatus for producing high-concentration ozone gas to be compact, satisfactorily operable, and inexpensive.
    • 将压力超过大气压并具有预定浓度的臭氧化气体在0℃或更低和高压的低温状态下供给至吸附/解吸塔(4),并填充硅酸(6)作为 吸附剂。 吸附/解吸塔(4)已被构成使得多个吸附/解吸塔(4)中的至少三个,即吸附/解吸塔(4-1,4-2和4-3)是 以串联循环装置排列以构成主吸附/解吸塔组(99),并且吸附/解吸塔(4-4)与主吸附/解吸塔组(99)平行设置以构成辅助 吸附/解吸柱(999)。 在主吸附/解吸塔组(99)的三个塔中没有一个进行解吸处理的时间段内,辅助吸附/解吸塔(999)进行解吸处理。 因此,该装置能够以高流量连续输出高浓度臭氧。 由此,能够高效率地生成高浓度的臭氧化气体,能够提高能输出的臭氧的量,能够减少不允许输出的排出气体的量。 这种有效的生产使得高浓度臭氧气体的制造装置致密,令人满意地可操作并且便宜。