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    • 32. 发明申请
    • SYSTEM AND METHOD FOR AUTOMATICALLY ELUTING AND CONCENTRATING A RADIOISOTOPE
    • 用于自动计量和浓缩放射性的系统和方法
    • WO0033322A9
    • 2001-11-22
    • PCT/US9928393
    • 1999-11-30
    • CEDARS SINAI MEDICAL CENTER
    • WHITING JAMES SLI ALEXANDER NEIGLER NEAL L
    • G21G4/08G21G4/00
    • G21G1/0005G21G2001/0094
    • A system and method for eluting one or more radioisotope processing elements, such as generators and/or concentration and purification components, with a gas over eluent delivery mechanism is disclosed. The system is adapted to an elution/concentration system using two such mechanisms, one for an initial elution of one or more generators, and a second for "re-elution" of concentrated and purified radioisotope contained in a concentration subsystem. The operation of such a dual mechanism system may also be completely or partially automated. The invention also discloses a concentration subsystem containing all single-use components needed for concentration and/or purification, as a single use, self sealed, cartridge that can safely store waste eluate for safe and simple disposal.
    • 公开了一种用于在洗脱液输送机构上用气体洗脱一种或多种放射性同位素处理元件(例如发生器和/或浓缩和净化组分)的系统​​和方法。 该系统适用于使用两个这样的机制的洗脱/浓缩系统,一个用于一个或多个发生器的初始洗脱,另一个用于浓缩子系统中所含的浓缩和纯化的放射性同位素的“再洗脱”。 这种双机制系统的操作也可以完全或部分地自动化。 本发明还公开了一种浓缩子系统,其包含用于浓缩和/或纯化所需的所有一次性成分,作为单次使用,自密封的,可安全地储存废弃洗脱液以便安全和简单处置的药筒。
    • 33. 发明申请
    • METHOD FOR SEPARATING AND COLLECTING <18>F IN <18>O WATER
    • 用于分离和收集18 W水的方法
    • WO01058572A1
    • 2001-08-16
    • PCT/JP2001/000925
    • 2001-02-09
    • C01B5/02G21G1/00G21G4/00B01D59/42C02F1/46
    • G21G1/001C01B5/02G21G2001/0015
    • A separating and collecting method for collecting high-purity F from O water with high efficiency and maintaining the purity of the O water. By using a solid electrode (1) as an anode and a container (electrodeposition bath) (2) made of platinum as a cathode, F in a solution (4) is electrodeposited on the solid electrode by applying a voltage. Then by using the solid electrode (1) on which F is electrodeposited as a cathode and a container (collecting bath) (5) in which pure water is placed as an anode, F is collected in the pure water by applying a voltage of the opposite polarity to that of the electrodeposition. In the process, the loss of the O water is little. The initial concentration of the O water is maintained even after the F electrodeposition, and therefore the O water can be repeatedly used as an irradiation target for production of F.
    • 一种从18 W水中高效收集高纯度18 F的分离收集方法,保持了18 W水的纯度。 通过使用固体电极(1)和由铂作为阴极的容器(电沉积浴)(2),溶液(4)中的18 F通过施加电压电沉积在固体电极上。 然后通过使用电沉积作为阴极的固体电极(1)和其中放置纯水作为阳极的容器(收集浴)(5),将18 F收集在纯水中 通过施加与电沉积相反极性的电压。 在这个过程中,<18> O水的损失很小。 即使在18 C电沉积之后,也保持了18 C O水的初始浓度,因此可以将<18> O水重复用作生产18 F的照射目标。