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    • 2. 发明申请
    • Water treatment
    • 水处理
    • US20050247614A1
    • 2005-11-10
    • US10842090
    • 2004-05-10
    • Klaus WiemerHeinz Altenbach
    • Klaus WiemerHeinz Altenbach
    • C02F1/32
    • C02F1/325C02F2303/14C02F2307/06
    • A water treatment unit for a drinks dispenser has a flow passage and a UV light source arranged to irradiate water flowing through the flow passage to control levels of bacteria in the water at the point of dispense. The flow passage and light source are located in a housing that reflects the UV radiation towards the flow passage and absorbs heat emitted by the light source. An air inlet at the inlet end of the flow passage allows water to drain from the flow passage between dispenses and a cover at the outlet end of the flow passage prevents contamination of the flow passage by human contact.
    • 用于饮料分配器的水处理单元具有流动通道和UV光源,其布置成照射流过流动通道的水以控制在分配点处的水中细菌的水平。 流动通道和光源位于壳体中,其将UV辐射反射到流动通道并吸收由光源发射的热量。 在流动通道的入口端处的空气入口允许水在分配之间的流动通道和在流动通道的出口端处的盖子之间排放,从而防止人体接触导致流动通道的污染。
    • 6. 发明授权
    • Water treatment apparatus
    • 水处理设备
    • US06821414B1
    • 2004-11-23
    • US10088299
    • 2002-06-21
    • Martin Stanley JohnsonKlaus WiemerGraham Williams
    • Martin Stanley JohnsonKlaus WiemerGraham Williams
    • B01D3518
    • C02F9/005C02F1/008C02F1/02
    • The invention provides an improved means of purifying water which comprises a water treatment apparatus comprising a treatment housing (10, 60) having an inlet (18, 65) for the water to be treated, an outlet (25, 67) for the treated water, a heater (17, 76) within the housing to come into direct contact with the water and a filter (22, 23, 78, 79) between the heater and the outlet, characterised in that means (38, 81) are provided to fill the housing with water up to a maximum level which leaves a headspace (10A, 80A) between the water and the roof (14, 61) of the housing, the entrance to the outlet being below the operating water level (10B, 80).
    • 本发明提供了一种改进的净化水的方法,其包括一种水处理设备,其包括具有用于待处理水的入口(18,65)的处理壳体(10,60),用于处理水的出口(25,67) ,所述壳体内的加热器(17,76)与所述水直接接触并且在所述加热器和所述出口之间具有过滤器(22,23,78,79),其特征在于,所述装置(38,81)被设置成 用水填充房屋,最大水平,在水和屋顶(14,61)之间留下顶部空间(10A,80A),入口到出水口低于操作水位(10B,80) 。
    • 7. 发明授权
    • Submarine working equipment
    • 潜艇作业设备
    • US4620819A
    • 1986-11-04
    • US722757
    • 1985-04-15
    • George E. MarslandKarl-Heinz MarschnerKlaus WiemerThomas WeyerHubert Knoblauch
    • George E. MarslandKarl-Heinz MarschnerKlaus WiemerThomas WeyerHubert Knoblauch
    • E02B17/00B63C11/40E21B41/04B63C11/34
    • B63C11/40E21B41/04
    • The submarine working equipment illustrated which may be a diver's auxiliary equipment includes a hollow body that is specially reinforced against bending moments and pressure forces acting upon it by means of structure defining flow channels, for driving elements, that angularly penetrate it and by means of pressure chambers supported in the body which are adapted to multiple uses. The equipment is held and supplied with power by a connecting and supply cable. A main grab on the forward end of the body is adjustable to facilitate clamping on a wide range of diameters the clamping of the equipment on pipes, wracks, etc. so firmly that the equipment itself or working arms mounted thereon (tool arms, auxiliary grabs, platforms etc.) are capable of taking substantial working loads despite the small dimensions of the equipment. Control instruments and the driving elements permit the equipment to be used in a particularly efficient and safe manner both as a vehicle for mobile equipment and as tool machine or energy base for auxiliary machines in submarine operations with or without a diver's presence. The equipment can be quickly and reliably adapted to changing working conditions by easy replacement of modularly interchangeable supplementary equipment.
    • 所示的可以是潜水员的辅助设备的潜艇作业设备包括中空体,该空心体通过形成流动通道的结构来作用于其上的弯曲力矩和压力作用,用于驱动元件,其成角度地穿透其并通过压力 支撑在身体中的适于多种用途的腔室。 设备由连接和供电电缆固定并供电。 主体前端的主抓是可调节的,以便于在各种直径上夹紧设备在管道,包装件等上的牢固固定,使设备本身或工作臂安装在其上(工具臂,辅助抓斗 ,平台等)能够承受大量的工作负载,尽管设备尺寸小。 控制仪器和驱动元件允许以特别高效和安全的方式将设备用作移动设备的车辆,以及作为辅助机器的工具机或能量基座,在有或没有潜水员存在的潜艇操作中。 通过轻松更换模块化可互换的辅助设备,可以快速,可靠地对设备进行更换,从而改变工作环境。
    • 8. 发明申请
    • Single media in vitro support of fertilized embryos to the implantation stage
    • 单培养基体外支持受精胚胎到植入阶段
    • US20050019906A1
    • 2005-01-27
    • US10624701
    • 2003-07-23
    • Michael CecchiMonica MezeziKlaus Wiemer
    • Michael CecchiMonica MezeziKlaus Wiemer
    • C12N5/02C12N5/073C12N5/08
    • C12N5/0604
    • A single culture media system is used to provide an optimal environment for the nutritional requirements for culturing of oocytes and embryos from the retrieval stage of oocytes through the implantation stage of embryos. This latter stage can be through the eight cell, or blastocyst, stage of development. The media of this invention will provide the embryos with a balance of ingredients that provide a consistent and stable composition of ingredients for the embryos whereby each embryo may select ingredients at their own pace or at various times as determined required by the embryos. This single media system provides a substantial improvement over current individual and sequential systems in supplying embryos consistent ingredients, consistent pH levels and osmolality through multiple stage of development so as to reduce the likelihood of osmonic shock, shock resulting from ingredient changes, or by changes in media pH. The embryo implantation stage using the media of this invention can be immediately subsequent to fertilation of the retrieved oocytes, or at the four cell embryo growth stage, or at the eight cell embryo growth, or blastocyst, stage of embryo development. Instead of implanting the fertilized embryos, they can be cryogenically preserved for later implantation.
    • 使用单一的培养基系统为从卵母细胞的恢复期通过胚胎植入阶段培养卵母细胞和胚胎提供营养需求的最佳环境。 后期阶段可以通过八个细胞或囊胚发育阶段。 本发明的培养基将为胚胎提供平衡的成分,其为胚胎提供一致且稳定的成分组成,由此每个胚胎可以按照胚胎所要求的各自的速度或不同时间选择成分。 这种单一媒体系统可以通过多个发展阶段,提供现有的单个和顺序系统,以提供胚胎一致的成分,一致的pH值和重量摩尔渗透压浓度,以减少由于成分变化引起的惊觉性休克, 培养基pH值。 使用本发明的培养基的胚胎植入阶段可以在获取的卵母细胞的受精后,或在四细胞胚胎生长阶段或在八个细胞胚胎生长或胚泡发育阶段之后立即进行。 而不是植入受精胚胎,它们可以被低温保存以供后续植入。
    • 10. 发明授权
    • Arrangement for collecting seepage water from depositories
    • 收集渗水的安排
    • US4728222A
    • 1988-03-01
    • US748999
    • 1985-06-26
    • Klaus Wiemer
    • Klaus Wiemer
    • B09B1/00E02B3/16E02D27/32E02D31/00B65G5/00E02D3/00
    • E02B3/16B09B1/00E02D27/32E02D31/00
    • To control the spread of water from a waste depository body, a drainage layer and a sealing body are provided below the depository body. A control room underlies a major portion of the depository body and a major portion of the sealing body for facilitating visual inspection and repair of the sealing body and the drainage layer. The sealing body includes one or more plastic sheets inclined at an angle with respect to the horizontal to define water collection fields or areas. The sealing body may comprise a platform forming the ceiling of the control room, the ceiling platform being provided with pipelines for drawing off depository gases and with passages or openings for draining off seepage water.
    • 为了控制来自废弃物储存体的水的扩散,在储存体的下方设置排水层和密封体。 控制室是存储体的主要部分和密封体的主要部分,以便于密封体和排水层的目视检查和修复。 密封体包括一个或多个相对于水平面倾斜一定角度的塑料片,以限定采集区域或区域。 密封体可以包括形成控制室的天花板的平台,天花板平台设置有用于抽出存放气体的管道以及用于排出渗漏水的通道或开口。