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    • 1. 发明授权
    • Flue gas desulfurization process
    • 烟气脱硫工艺
    • US5433936A
    • 1995-07-18
    • US29430
    • 1993-03-09
    • Naohiko UkawaToru TakashinaTsumoru NakamuraShinichiro Kotake
    • Naohiko UkawaToru TakashinaTsumoru NakamuraShinichiro Kotake
    • B01D53/34B01D53/50B01D53/77B01D61/44
    • B01D61/44B01D53/502
    • A flue gas desulfurization process which comprises the steps of absorbing and separating sulfur oxides from a combustion waste gas using a Ca compound and, as an absorption auxiliary agent, an organic acid which has carboxyl groups at opposite ends of a straight-chain hydrocarbon containing from 1 to 4 carbon atoms in a flue gas desulfurization apparatus, separating the waste water discharged from the desulfurization apparatus in an electrodialyzer which comprises an alternate array of univalent selective anion-exchange membranes and cation-exchange membranes into two solutions: a concentrated solution in which metallic and chlorine ions are concentrated and a dilute solution in which the metallic and chlorine ions are diluted and the organic acid is left behind, and then recycling the dilute solution as an absorbent to the flue gas desulfurization apparatus.
    • 一种烟道气脱硫方法,包括以下步骤:使用Ca化合物吸收和分离来自燃烧废气的硫氧化物,并且作为吸收助剂,在含有 在烟道气脱硫装置中具有1至4个碳原子,将包含一价选择性阴离子交换膜和阳离子交换膜的交替排列的电渗析器中的脱硫装置排出的废水分离成两种溶液:浓缩溶液,其中 浓缩金属和氯离子,稀释金属离子和氯离子稀释后的有机酸,然后将作为吸收剂的稀释溶液再循环至烟道气脱硫装置。
    • 2. 发明授权
    • Gas-liquid contact apparatus
    • 气液接触装置
    • US6001154A
    • 1999-12-14
    • US73349
    • 1998-05-06
    • Shinichiro KotakeKazuaki KimuraEiji OchiToru TakashinaSusumu Okino
    • Shinichiro KotakeKazuaki KimuraEiji OchiToru TakashinaSusumu Okino
    • B01D53/18B01D53/50B01D53/77B01D53/79B01D47/06
    • B01D53/504B01D53/185
    • The present invention provides a gas-liquid contact apparatus which can make the equipment more compact and reduce the cost while achieving high gas-liquid contact efficiency. In the apparatus of the present invention, an oxidation tank (2) is installed in proximity to an absorption tower (1), and an absorbing fluid (3) is stored in this oxidation tank (2). The level H of the absorbing fluid (3) is determined so as to be above the position of nozzles (7), whereby the absorbing fluid is spouted upward from the nozzles (7). Flue gas is introduced into the absorption tower (1) from a flue gas inlet section (8) and made to flow upward at a high velocity, so that the peaks of the spouted streams are raised above level H. The absorbing fluid (3) is caught by catcher device (11) installed at a position above level H, and returned to the oxidation tank (2) through a circulation pipe (12). An air pipe (20) is connected to the circulation pipe (12) so as to suck in air.
    • 本发明提供一种气液接触装置,其能够使设备更紧凑,并降低成本,同时实现高气液接触效率。 在本发明的装置中,氧化槽(2)安装在吸收塔(1)的附近,吸收流体(3)被储存在该氧化罐(2)中。 吸收流体(3)的高度H被确定为高于喷嘴(7)的位置,从而吸收流体从喷嘴(7)向上喷出。 烟气从烟道气体入口部分(8)引入吸收塔(1)中并使其高速流动,使得喷射流的峰值升高到高于水平面H.吸收流体(3) 被捕获装置(11)捕获,并且通过循环管(12)返回到氧化罐(2)。 空气管(20)与循环管(12)连接以吸入空气。
    • 3. 发明授权
    • Process for treating effluent from flue-gas desulfurization system and
apparatus therefor
    • 废气脱硫系统废水处理工艺及设备
    • US5705046A
    • 1998-01-06
    • US484820
    • 1995-06-07
    • Tatunori MiwataTsumoru NakamuraShinichiro KotakeYoshiharu Aoki
    • Tatunori MiwataTsumoru NakamuraShinichiro KotakeYoshiharu Aoki
    • B01D53/73B01D61/44B01D61/52C02F1/04C02F1/469C02F1/52C02F9/00C02F11/00B01D53/50
    • C02F9/00B01D53/73B01D61/44B01D61/52C02F1/04C02F1/469C02F1/52C02F11/00C02F2103/18
    • A process for treating effluent from a flue-gas desulfurization system wherein the resulting gypsum is removed, comprises filtering the gypsum and fly ash free effluent by a filter, transferring the filtrate to an electrodialyzer wherein cation-exchange membranes and univalent anion-exchange membranes are alternately set up, concentrating chlorine ions in the solution therein by dialysis, further concentrating the solution by evaporation in an evaporator, kneading the concentrated solution with cement or a mixture of cement and coal ash to a solid matter with no harm, and thereafter abandoning for landfill; and an apparatus for treating effluent from a flue-gas desulfurization system, comprising a filter for filtering the effluent to a turbidity low enough for treatment by an electrodialyzer wherein the effluent is to be separated into concentrated and dilute solutions, the electrodialyzer equipped with an alternate arrangement of cation- and anion-exchange membranes, with concentration and dilution compartments alternately provided between the both ion-exchange membranes, means for conducting the concentrated solution to a step for final disposal, and means for recycling the dilute solution as makeup water to the desulfurization system.
    • 一种用于处理来自烟道气脱硫系统的废水的方法,其中除去所得的石膏,包括通过过滤器过滤石膏和无飞灰的流出物,将滤液转移到电渗析器,其中阳离子交换膜和一价阴离子交换膜是 通过透析交替设置浓缩其中溶液中的氯离子,通过蒸发将溶液浓缩在蒸发器中,将浓缩溶液与水泥或水泥和煤灰的混合物捏合成固体物质而没有损害,然后放弃 垃圾填埋场 以及用于处理来自烟道气脱硫系统的流出物的装置,其包括用于将流出物过滤到足够低的浊度的过滤器,其用于通过电渗析器进行处理,其中所述流出物被分离成浓缩和稀释溶液,所述电渗析器装备有交替 阳离子交换膜和阴离子交换膜的布置,在两个离子交换膜之间交替设置浓度和稀释室,用于将浓缩溶液导入最终处理步骤的装置,以及用于将稀释溶液作为补充水循环的方法 脱硫系统
    • 4. 发明授权
    • Desulforization method and desulfurization apparatus in geothermal power
plant
    • 地热发电厂脱硫方法及脱硫装置
    • US06068822A
    • 2000-05-30
    • US934211
    • 1997-09-19
    • Shinichiro KotakeAtsushi Tatani
    • Shinichiro KotakeAtsushi Tatani
    • B01D53/50B01D53/52C01D5/00F03G7/04B01D53/48
    • C01D5/00B01D53/504B01D53/52F03G7/04Y02E10/10Y10S423/19
    • An uncondensed gas in steam discharged from a turbine in a geothermal power plant and separated from water with a condenser is treated by a desulfurization method comprising the combustion step of combusting the uncondensed gas in the steam to convert hydrogen sulfide in the uncondensed gas to a sulfurous acid gas and the absorption reaction step of bringing a combustion gas coming from the combustion step into gas-liquid contact with an absorbent slurry and further bringing air into air-liquid contact with the absorbent slurry to allow the absorbent slurry to absorb the sulfurous acid gas and undergo oxidation and neutralization to exhaust desulfurized gas and to convert the absorbent slurry to a sulfate slurry, whereby detrimental hydrogen sulfide is removed from the steam exhausted after the use of the steam for power generation in the geothermal power plant.
    • 在来自地热发电厂的涡轮机中并且与冷凝器分离的蒸汽中的未蒸发气体通过脱硫方法处理,所述脱硫方法包括燃烧步骤,在蒸汽中燃烧未冷凝的气体,将未冷凝气体中的硫化氢转化为亚硫酸盐 使来自燃烧步骤的燃烧气体与吸收剂浆料气液接触的吸收反应步骤,并且进一步使空气与吸收剂浆料气液接触,以使吸收剂浆料吸收亚硫酸气体 并进行氧化和中和以排出脱硫气体,并将吸收剂浆料转化为硫酸盐浆料,由此在使用用于在地热发电厂中发电的蒸汽之后排出的蒸汽中除去有害的硫化氢。
    • 7. 发明授权
    • Process for treatment of exhaust gas
    • 废气处理工艺
    • US5560894A
    • 1996-10-01
    • US351746
    • 1994-12-08
    • Tsutomu UenoYutaka KitayamaHiroaki TsuchiaiAtsushi TataniHiroshi FujitaShinichiro Kotake
    • Tsutomu UenoYutaka KitayamaHiroaki TsuchiaiAtsushi TataniHiroshi FujitaShinichiro Kotake
    • B01D53/40B01D53/34B01D53/50B01D53/56B01D53/68B01D53/81B01J8/00C01B7/00C01B17/22
    • B01D53/502
    • A process for removing environmental contaminants from an exhaust gas by a semidry method through contact with an absorbent slurry containing alkaline compounds in a reactor, comprising the steps of adding a material containing calcium sulfate and/or calcium sulfite, a material containing aluminum oxide, and a material containing silicon dioxide to a material capable of supplying calcium oxide, mixing the mixture with water, curing the whole mixture in hot water, and then introducing and dispersing the resulting absorbent slurry in the reactor for contact with the environmental contaminants. In a modification the absorbent slurry is obtained by adding a material capable of supplying aluminum oxide, silicon dioxide, and calcium sulfate and/or calcium sulfite to a material capable of supplying calcium oxide, calcining the mixture at 750.degree.-950.degree. C., mixing the calcined product with water, and curing the mixture in hot water. To the absorbent slurry obtained in either way is added a soluble compound that elevates the boiling point of water.
    • 一种通过在反应器中与含有碱性化合物的吸收剂淤浆接触的方法,通过半干法从废气中除去环境污染物的方法,包括以下步骤:加入含有硫酸钙和/或亚硫酸钙的材料,含有氧化铝的材料和 将含有二氧化硅的材料加入到能够供应氧化钙的材料中,将混合物与水混合,将整个混合物固化在热水中,然后将所得的吸收剂浆料引入和分散在与环境污染物接触的反应器中。 在改性中,通过向能够供应氧化钙的材料中加入能够提供氧化铝,二氧化硅和硫酸钙和/或亚硫酸钙的材料,在750-950℃下煅烧该混合物, 将煅烧产物与水混合,并在热水中固化混合物。 向以任一方式获得的吸收剂浆料中加入提高水的沸点的可溶性化合物。