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    • 62. 发明申请
    • METHOD AND MEANS FOR TREATING THE CIRCULATING WATER IN PAINTING BOOTHS
    • 的方法和手段水循环在绘画中的展位治疗
    • WO02048045A1
    • 2002-06-20
    • PCT/EP2001/014257
    • 2001-12-05
    • C02F1/44C02F1/68C02F1/00
    • C02F1/682C02F1/44C02F1/683C02F2103/14
    • Means and method for the treatment of the circulating water in painting booths, whereby the paint particles are dispersed by addition of emulsifiers, comprising a mixture of end-group terminated fatty alcohol alkoxylates with 8 to 22 C atoms in the fatty alkyl group and 3 to 60 alkylene oxide units, terminated at the end group with a C1- to C5- alkyl group with one or several of the following co-emulsifiers: a) homo- and co-polymers based on maleic acid, acrylic acid and/or methacrylic acid with a molecular mass in the range 1,000 to 500,000, b) non-ionic detergents which are not end-group terminated, c) anionic detergents, d) inorganic or non-polymeric organic complexing agents and e) polymers or co-polymers of amino acids.
    • 装置和用于治疗喷漆房循环水的方法,该涂料粒子被分散通过加入分散剂,其是具有脂肪烷基中8至22个碳原子和3至60个氧化烯单元封端的脂肪醇烷氧基化物的混合物,被C1-C5烷基 的是封端与一个或代表多个以下的助分散剂组成:a)均聚物和共聚物基于马来酸,丙烯酸和/或Methacrylsäue与范围内的分子量1000〜500000,b)中的非离子表面活性剂,这是不封端 C)阴离子表面活性剂,D)的无机或有机的非聚合配位剂,E)的聚合物或氨基酸的共聚物。
    • 67. 发明申请
    • PROCESS AND APPARATUS FOR RECOVERING HEAVY METALS FROM CONTAMINATED MATERIALS
    • 从污染材料中回收重金属的工艺和装置
    • WO01026833A1
    • 2001-04-19
    • PCT/EP2000/009729
    • 2000-10-05
    • B09C1/02B09C1/08C02F1/62C02F1/68C22B3/02C22B3/04C22B3/10C22B7/00C22B43/00A62D3/00
    • B09C1/02B09C1/08B09C1/085C02F1/62C02F1/683C02F2101/20C22B3/02C22B3/045C22B3/10C22B7/006C22B43/00Y02P10/234
    • A process for recovering mercury from a mercury-contaminated material, comprising a step making use of a lixiviating system comprising iodide, iodate and tri-iodide ions in an effecive amount in order to desorb and complex mercury from the said material. The process may be performed in an apparatus for recovering a heavy metal from a heavy metal-contaminated material, having: a cathode compartment (1) comprising a cathode (2) and an ion-permeable housing (3) for containing a cathode solution (4), an anode compartment (5) comprising an anode (6) and an ion-permeable housing (7) for containing an anode solution (8), a cathode recipient (9) for supplying the cathode solution to the cathode compartment (1), an anode recipient (10) for supplying the anode solution to the anode compartment (5), a device for isolating, from the anode solution (8), a set of ions electrokinetically transported from the cathode solution (4) and a heavy metal complex electrokinetically transported from the heavy metal-contaminated soil, and a device for recycling the ions isolated from the anode solution (8) back to the cathode solution (4).
    • 一种从汞污染的材料中回收汞的方法,包括使用包含碘化物,碘酸盐和三碘化铵离子的浸出系统,以有效量的步骤,以从所述材料中解吸和复合汞。 该方法可以在用于从重金属污染的材料中回收重金属的设备中进行,该设备具有:阴极室(1),其包括阴极(2)和用于容纳阴极溶液的离子可渗透的壳体(3) 4),包括阳极(6)和用于容纳阳极溶液(8)的离子可渗透壳体(7)的阳极室(5),用于将阴极溶液供应到阴极室(1)的阴极容器(9) ),用于将阳极溶液供应到阳极室(5)的阳极接收器(10),用于从阳极溶液(8)分离一组从阴极溶液(4)电动输送的离子和重的 从重金属污染的土壤中电动输送的金属络合物和用于将从阳极溶液(8)分离的离子再循环回到阴极溶液(4)的装置。
    • 68. 发明申请
    • METHOD FOR IMPROVING WATER QUALITY OF TANK SYSTEMS
    • 方法来提高HÄLTERUNGSWÄSSERN库区水质
    • WO01021533A1
    • 2001-03-29
    • PCT/EP2000/007980
    • 2000-08-16
    • A01K63/04C02F1/58C02F1/68
    • C02F1/683C02F1/68
    • A method is described for improving water quality or correcting and adjusting important chemical parameters of the water in biological tank systems, such as aquaria (warm, cold, fresh or salt water), garden ponds, carp pools, water gardens and large aquaria (zoos, public aquaria) whereby the following are added to the tank system individually or arbitrarily combined: a) for reduction of phosphate concentration, at least one highly or poorly soluble Al , Fe , TiO , ZrO or Ca salt of an organic carboxylic acid, optionally mixed with an organic carboxylic acid; b) for reduction of nitrate concentration or limiting nitrate increase, at least one water soluble N-free biologically degradable organic compound; c) for an increase in carbonate hardness or the HCO3 concentration, at least one alkali or earth alkali metal salt of an organic carboxylic acid; d) for an increase in total hardness or the concentration of Ca and Mg hydrogen carbonates, a mixture of at least one Ca and Mg salt of organic carboxylic acids and e) for an increase in CO2 concentration at least one biologically degradable compound and an appropriate single- or multi-component product.
    • 用于改善水质或校正和生物维护系统的重要化学水的参数,如水族馆(热水,冷水,甜水,盐水),花园池塘,锦鲤池塘,aquaterrariums)和Grossaquqrien描述(动物园,公共水族馆)的调整,其中一个方法 其中一个单独地维护系统地或以任何组合的),以减少磷酸盐浓度,至少一个轻或重的可溶性Al <3 +> - ,铁<3 +> - ,二氧化钛<2 +> - 的ZrO <2 +> - 或Ca <2 +> - 有机羧酸任选地与有机羧酸混合物的盐; b)降低硝酸盐浓度或硝酸盐增加的限制,至少一种水溶性的N-自由和可生物降解的有机化合物; c)中,以增加碳酸盐或HCO3 < - > - 有机羧酸中的至少一种碱金属或碱土金属的盐的浓度; D)以提高整体的硬度或Ca的浓度<2 +> - 和Mg <2 +> - 碳酸氢盐,至少一种钙<2+>和Mg的混合物<2 +> - 有机羧酸的盐,和e) 将至少一种可生物降解的化合物,以增加CO 2的浓度,并由此适当的单组分或多组分的产物。