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    • 1. 发明授权
    • Magnetically stabilized bed, temperature, partial pressure swing,
hydrogen recovery process
    • 磁稳定床,温度,分压摆动,氢回收过程
    • US4319893A
    • 1982-03-16
    • US183379
    • 1980-09-02
    • Walter H. HatchGeorge J. BalinskySteve Ackerman
    • Walter H. HatchGeorge J. BalinskySteve Ackerman
    • B01D53/12C01B3/50C01B3/56
    • C01B3/56B01D53/12C01B3/508C01B2203/048C01B2203/0495
    • An adsorption process for the recovery of hydrogen from a feed gas or vapor which contains hydrogen in admixture with one or more hydrocarbon components, alone or in admixture with non-hydrocarbon components. Particulate adsorbent solids are provided with a magnetizable component, or components, and circulated between an adsorption zone in which hydrogen is concentrated in the off gas by contact of the adsorbent solids with the feed, and hydrogen recovered, and a desorption zone in which the exhausted solids are regenerated. Within the adsorption zone the feed is countercurrently contacted with the solids at relatively low temperature to selectively adsorb hydrocarbon, and perhaps other non-hydrogen components. The solids are formed into a moving, fluidized bed, and magnetically stabilized to suppress gross solids circulation while hydrocarbons are adsorbed from the feed. Occluded hydrogen is subsequently displaced from the particulate adsorbent solids with hydrocarbons, and the hydrocarbon enriched particulate adsorbent solids are then transported to the desorption zone. In the desorption zone the solids are fluidized, and the temperature of the bed is elevated sufficiently to desorb at least a portion of the hydrocarbons. The residual hydrocarbons are subsequently displaced by contact with stream in a magnetically stabilized bed of the solids. The wet solids are then dried by contact with hydrogen to displace the water, or steam, and then cooled to complete the regeneration.
    • 用于从含有氢气的进料气体或蒸气中回收氢气的吸附方法,所述氢气与一种或多种烃组分混合,单独或与非烃组分混合。 颗粒吸附剂固体提供有可磁化组分或组分,并且通过吸附剂固体与进料的接触和回收的氢气在其中氢气在废气中浓缩的吸附区和在其中被排出的脱附区之间循环 固体再生。 在吸附区内,进料在相对较低的温度下与固体逆流接触,以选择性地吸附烃,以及可能的其他非氢组分。 固体形成移动的流化床,并且磁稳定以抑制总固体循环,同时烃从进料中吸附。 封闭的氢气随后用碳氢化合物从颗粒吸附剂固体中移出,然后将富含烃的颗粒吸附剂固体输送到解吸区。 在解吸区中,固体被流化,并且床的温度被充分升高以解吸至少一部分烃。 随后通过与固体的磁稳定床中的物流接触来残留残留烃。 然后通过与氢接触来干燥湿固体以置换水或蒸汽,然后冷却以完成再生。
    • 2. 发明授权
    • Travel update messaging system and method
    • 旅行更新信息系统和方法
    • US07376662B2
    • 2008-05-20
    • US10205829
    • 2002-07-26
    • Rolando CaparasSteve Ackerman
    • Rolando CaparasSteve Ackerman
    • G06F17/30
    • G06Q10/02G06Q10/025Y10S707/99943Y10S707/99945
    • The present invention relates to a system and method for gathering and analyzing data related to travel conditions and generating and sending a message explaining the travel conditions to one or more travelers. The present invention includes a travel conditions analyzer which accesses data and information from several different databases such as weather condition websites and travel websites. The data and information from the databases is analyzed and predictions on travel delays are made based on the data and information. A messaging tool determines a group of travelers that are affected by the adverse travel conditions. Then the messaging tool generates a message based on the travel conditions and sends the message to one or more affected travelers. The affected travelers can therefore change their travel plans or make other arrangements as needed based on the information contained in the message. Thus, the present invention significantly minimizes the inconveniences caused to travelers due to adverse travel conditions.
    • 本发明涉及一种用于收集和分析与旅行条件相关的数据的系统和方法,并且向一个或多个旅行者生成和发送说明旅行条件的消息。 本发明包括一个旅行条件分析器,它从几个不同的数据库(如天气状况网站和旅游网站)访问数据和信息。 分析来自数据库的数据和信息,并根据数据和信息对旅行延迟进行预测。 消息传递工具确定受不利旅行条件影响的一组旅行者。 然后,消息传递工具根据旅行条件生成消息,并将消息发送给一个或多个受影响的旅行者。 因此,受影响的旅行者可以根据消息中包含的信息更改他们的旅行计划或进行其他安排。 因此,本发明显着地最小化了由于不利的旅行条件而对旅行者造成的不便。
    • 3. 发明申请
    • Conserving file system with backup and validation
    • 保存文件系统进行备份和验证
    • US20060259587A1
    • 2006-11-16
    • US11385976
    • 2006-03-21
    • Steve AckermanScott BrownChristopher HullStephen JonesLouis LangholtzRyan Stokes
    • Steve AckermanScott BrownChristopher HullStephen JonesLouis LangholtzRyan Stokes
    • G06F15/16
    • G06Q20/3678
    • Disclosed herein is a hierarchical data storage and retrieval system implemented using a computed statistically unique signature for the content of given computer data as its basis. The data storage and retrieval system can be used to catalog computer information for easy indexing and retrieval. The signature is computed by any number of techniques so long as it is able to produce a statistically unique signature, one example being the SHA-1 algorithm. The system is able to reduce the amount of data that is stored and the time required for retrieving the data. Provide a way to move electronic data in an encrypted secure manner that requires the complete data set being moved for decryption of the data. Even if a portion of the data is compromised that portion would still remain secure. The data is encrypted and separated into two or more portions all of which would be needed to decrypt the data. Detailed information on various example embodiments of the inventions are provided in the Detailed Description below, and the inventions are defined by the appended claims.
    • 本文公开了使用针对给定计算机数据的内容的计算的统计唯一签名作为其基础来实现的分层数据存储和检索系统。 数据存储和检索系统可用于编制计算机信息,便于索引和检索。 只要能够产生统计学唯一的签名,就可以通过任何数量的技术来计算签名,一个例子是SHA-1算法。 该系统能够减少存储的数据量以及检索数据所需的时间。 提供一种以加密的安全方式移动电子数据的方法,这需要完整的数据集被移动以解密数据。 即使数据的一部分被破坏,该部分仍将保持安全。 数据被加密并分成两部分或者更多部分,所有这些都是解密数据所需要的。 在下面的详细描述中提供了关于本发明的各种示例性实施例的详细信息,并且本发明由所附权利要求限定。