C-11 Cyanide Production System
    1.
    发明申请
    C-11 Cyanide Production System 有权
    C-11氰化物生产系统

    公开(公告)号:US20130045151A1

    公开(公告)日:2013-02-21

    申请号:US13584033

    申请日:2012-08-13

    Abstract: A method for providing 11C-labeled cyanides from 11C labeled oxides in a target gas stream retrieved from an irradiated high pressure gaseous target containing O2, wherein 11C labeled oxides are reduced with H2 in the presence of a nickel catalyst under a pressure and a temperature sufficient to form a product stream comprising at least about 95% 11CH4, the 11CH4 is then combined with an excess of NH3 in a carrier/reaction stream flowing at an accelerated velocity and the combined 11CH4 carrier/reaction stream is then contacted with a platinum (Pt) catalyst particulate supported on a substantially-chemically-nonreactive heat-stable support at a temperature of at least about 900° C., whereby a product stream comprising at least about 60% H11CN is provided in less than 10 minutes from retrieval of the 11C labeled oxide.

    Abstract translation: 在从含有O 2的被照射的高压气态靶中回收的目标气体流中,从11℃标记的氧化物中提供11C标记的氰化物的方法,其中在镍催化剂存在下,在压力和温度足够的情况下,用H 2还原11℃标记的氧化物 以形成包含至少约95%11CH4的产物流,然后将11CH4与以加速速度流动的载体/反应物流中的过量NH 3合并,然后将组合的11CH 4载体/反应物流与铂(Pt )催化剂颗粒在至少约900℃的温度下负载在基本上化学反应性热稳定的载体上,由此在不到10分钟内提供包含至少约60%H11CN的产物流,从11C 标记氧化物。

    C-11 Cyanide Production System
    3.
    发明申请
    C-11 Cyanide Production System 有权
    C-11氰化物生产系统

    公开(公告)号:US20150217249A1

    公开(公告)日:2015-08-06

    申请号:US14551141

    申请日:2014-11-24

    Abstract: A method for providing 11C-labeled cyanides from 11C labeled oxides in a target gas stream retrieved from an irradiated high pressure gaseous target containing O2, wherein 11C labeled oxides are reduced with H2 in the presence of a nickel catalyst under a pressure and a temperature sufficient to form a product stream comprising at least about 95% 11CH4, the 11CH4 is then combined with an excess of NH3 in a carrier/reaction stream flowing at an accelerated velocity and the combined 11CH4 carrier/reaction stream is then contacted with a platinum (Pt) catalyst particulate supported on a substantially-chemically-nonreactive heat-stable support at a temperature of at least about 900° C., whereby a product stream comprising at least about 60% H 11CN is provided in less than 10 minutes from retrieval of the 11C labeled oxide.

    Abstract translation: 在从含有O 2的被照射的高压气态靶中回收的目标气体流中,从11℃标记的氧化物中提供11C标记的氰化物的方法,其中在镍催化剂存在下,在压力和温度足够的情况下,用H 2还原11℃标记的氧化物 以形成包含至少约95%11CH4的产物流,然后将11CH4与以加速速度流动的载体/反应物流中的过量NH 3合并,然后将组合的11CH 4载体/反应物流与铂(Pt )催化剂颗粒在至少约900℃的温度下负载在基本上化学反应性的热稳定性载体上,由此在不到10分钟内提供包含至少约60%H 11 CN的产物流, 11C标记氧化物。

    PORTABLE CASE FOR GOLF ACCESSORIES

    公开(公告)号:US20240408461A1

    公开(公告)日:2024-12-12

    申请号:US18703326

    申请日:2022-08-26

    Abstract: The present invention relates to a portable case for a golf item. More specifically, the present invention relates to a case which enables persons enjoying golf to easily and comfortably carry golf items in a field when going out into the field. That is, the present invention relates to a portable case for a golf item, whereby a user can carry various golf items such as tees, markers, green repair devices, etc. as well as a golf ball by inserting the items into one case and wearing the case at the waist, can take out and use each of the items whenever needed, and easily insert each of the items again after using it.

    C-11 cyanide production system
    8.
    发明授权
    C-11 cyanide production system 有权
    C-11氰化物生产系统

    公开(公告)号:US08932551B2

    公开(公告)日:2015-01-13

    申请号:US13584033

    申请日:2012-08-13

    Abstract: A method for providing 11C-labeled cyanides from 11C labeled oxides in a target gas stream retrieved from an irradiated high pressure gaseous target containing O2 is provided, wherein 11C labeled oxides are reduced with H2 in the presence of a nickel catalyst under a pressure and a temperature sufficient to form a product stream comprising at least about 95% 11CH4 , the 11CH4 is then combined with an excess of NH3 in a carrier/reaction stream flowing at an accelerated velocity and the combined 11CH4 carrier/reaction stream is then contacted with a platinum (Pt) catalyst particulate supported on a substantially-chemically-nonreactive heat-stable support at a temperature of at least about 900 ° C., whereby a product stream comprising at least about 60%H11CN is provided in less than 10 minutes from retrieval of the 11C labeled oxide.

    Abstract translation: 提供了一种从含有O 2的被照射的高压气态靶中提取的目标气体流中的11C标记的氧化物提供11C标记的氰化物的方法,其中在镍催化剂存在下,在压力下,用H 2还原11℃标记的氧化物, 温度足以形成包含至少约95%11CH4的产物流,然后将11CH4与以加速速度流动的载体/反应物流中的过量NH 3合并,然后将组合的11CH 4载体/反应物流与铂 (Pt)催化剂颗粒,其在至少约900℃的温度下负载在基本上化学反应性的热稳定性载体上,由此在不到10分钟内提供包含至少约60%H11CN的产物流, 11C标记的氧化物。

    Method for pruning perimeter walks in data-centric storage sensor networks
    9.
    发明授权
    Method for pruning perimeter walks in data-centric storage sensor networks 失效
    在以数据为中心的存储传感器网络中修剪周边行走的方法

    公开(公告)号:US08406174B2

    公开(公告)日:2013-03-26

    申请号:US12694583

    申请日:2010-01-27

    CPC classification number: H04W40/20 H04L45/745

    Abstract: A method for pruning perimeter walks includes: hashing a name or attributes of an event, when the event occurs, to figure out a destination location of the event; performing greedy forwarding of geographic routing so as to send a packet of the event towards the destination location; checking a distance D between the destination location and a current node where a packet transmission using greedy forwarding mode is impossible, when the packet reaches the current node; checking distances between the destination location and respective neighboring nodes of the current node to obtain a neighboring node having a minimum distance M, when the distance D between the current node and the destination location is same or less than half of radio transmission range; comparing the minimum distance M to the distance D; and determining which node is a rendezvous node, according to the comparison result.

    Abstract translation: 修剪周边漫步的方法包括:在事件发生时散列事件的名称或属性,以计算出事件的目标位置; 执行地理路由的贪心转发,以便将事件的分组发送到目的地位置; 当分组到达当前节点时,检查目的地位置与当前节点之间的距离D,其中使用贪心转发模式的分组传输是不可能的; 当当前节点和目的地位置之间的距离D等于或小于无线电传输范围的一半时,检查目的地位置与当前节点的各个相邻节点之间的距离以获得具有最小距离M的相邻节点; 将最小距离M与距离D进行比较; 并根据比较结果确定哪个节点是会合点。

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