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    • 3. 发明授权
    • Speech/multimedia mode switching technique in a wireless communications network
    • 无线通信网络中的语音/多媒体模式切换技术
    • US08422998B2
    • 2013-04-16
    • US11814523
    • 2005-01-31
    • Christian Herrero VerónPatrice HédéJohn Kerr
    • Christian Herrero VerónPatrice HédéJohn Kerr
    • H04M3/42H04W4/00H04L29/08H04L12/66H04N7/14
    • H04W4/16
    • A technique is provided for use by a user terminal or mobile services switching center (MSC) for responding to a request to switch an on-going call from speech mode to multimedia mode within a wireless communication network conFig.d to automatically disconnect a call if a requested mode switch is not confirmed within a predetermined period of time specified by a call drop timer. In one example, the terminal or MSC activities an automatic response timer upon receipt of a request from a user to switch an on-going call from speech to multimedia, with the timer set shorter than the call drop timer. The user receiving the request is then prompted to accept or decline the request. If no response is received before expiration of the automatic response timer, the terminal or MSC automatically declines the request on behalf of the user so that the call drop timer does not expire.
    • 提供了一种技术,用于由用户终端或移动业务交换中心(MSC)用于响应在无线通信网络conFig.d中将正在进行的呼叫从语音模式切换到多媒体模式的请求,以自动断开呼叫,如果 在由呼叫丢弃定时器指定的预定时间段内未确认所请求的模式切换。 在一个示例中,终端或MSC在接收到来自用户的请求时将活动自动响应定时器,以将正在进行的呼叫从语音切换到多媒体,其中定时器设置短于呼叫丢弃定时器。 然后,接收请求的用户被提示接受或拒绝该请求。 如果在自动响应定时器到期之前没有收到响应,则终端或MSC代表用户自动拒绝该请求,使得呼叫丢弃定时器不会过期。
    • 4. 发明授权
    • Sucrose inversion process
    • 蔗糖反转过程
    • US08404109B2
    • 2013-03-26
    • US13316278
    • 2011-12-09
    • Robert JansenJohn KerrAnthony Baiada
    • Robert JansenJohn KerrAnthony Baiada
    • B01D17/12C13K3/00B01J14/00
    • C13K3/00C13B20/14
    • A method of inverting sucrose, including (i) determining an initial solids concentration of an aqueous sucrose solution, an initial bed volume of a sucrose inversion resin system, a minimum target inversion percentage, a maximum target inversion percentage, a target maximum hydroxymethylfuran (HMF) concentration, a minimum target pH, or a maximum target pH; (ii) contacting the sucrose inversion resin system with the aqueous sucrose solution under conditions of aqueous solution flow rate and aqueous solution temperature to produce an inverted sucrose solution having an inversion percentage, an HMF concentration, and a pH; (iii) observing an instantaneous inversion percentage, an instantaneous HMF concentration, or an instantaneous pH of the inverted sucrose solution; and, if appropriate; (iv) changing at least one of the aqueous solution flow rate or the aqueous solution temperature to yield a product having a desired inversion percentage, HMF concentration, and/or pH. An apparatus capable of performing the method.
    • 一种反相蔗糖的方法,包括(i)测定蔗糖水溶液的初始固体浓度,蔗糖反转树脂体系的初始床体积,最小目标反转百分比,最大目标反转百分比,目标最大羟甲基呋喃(HMF )浓度,最小目标pH或最大目标pH; (ii)在水溶液流动速率和水溶液温度条件下使蔗糖反转树脂体系与蔗糖溶液水溶液接触,以产生具有倒置百分比,HMF浓度和pH值的倒置蔗糖溶液; (iii)观察反转蔗糖溶液的瞬时反转百分比,瞬时HMF浓度或瞬时pH值; 并酌情; (iv)改变水溶液流速或水溶液温度中的至少一个,得到具有所需转化百分比,HMF浓度和/或pH值的产物。 一种能够执行该方法的装置。
    • 5. 发明授权
    • Process for efficient energy recovery from biomass
    • 从生物质能源回收有效的方法
    • US08220400B2
    • 2012-07-17
    • US12173247
    • 2008-07-15
    • Raymond C. GangaGreg ImigBlake McBurneyRobert JansenJohn KerrSteven J. Reust
    • Raymond C. GangaGreg ImigBlake McBurneyRobert JansenJohn KerrSteven J. Reust
    • F23D1/00F23B80/02F23C9/08
    • F23G7/10F23G5/12F23G5/46F23G2202/106F23G2206/20F23G2900/00001F23G2900/7012F23J7/00
    • A method for extracting energy from biomass depleted of at least some carbohydrate, at least some oil, or both by a) introducing the biomass into a vertically elongated combustion chamber having i) at least one suspension burner at the top of the combustion chamber which is capable of projecting a flame down the axis of the combustion chamber, ii) a heat transfer apparatus having at least a portion of a heat collection surface located radially from the flame and below the burner, and iii) an exhaust opening located below the flame and below at least a portion of the heat collection surface; b) combusting the biomass to yield a mixture containing hot flue gas and molten ash above the exhaust opening; c) transferring heat from the hot flue gas to at least a portion of the heat collection surface substantially by radiation prior to any substantial contact of ash to a surface of the combustion chamber, to yield a mixture containing warm flue gas and non-molten ash and having a lower molten ash content than the mixture yielded by the combusting step; and d) cooling the warm flue gas with cold gas, to yield a mixture containing cool flue gas and non-molten ash and having a lower molten ash content than the mixture yielded by the transferring step.
    • 一种用于从生物量中提取能量的方法,所述方法是从至少一些碳水化合物,至少一些油或二者中消耗的能量,通过以下步骤:a)将生物质引入垂直细长的燃烧室,所述燃烧室具有:i)在燃烧室顶部的至少一个悬浮燃烧器, 能够沿着燃烧室的轴线向下突出火焰,ii)传热装置,其具有位于燃烧器的径向位于燃烧器下方的集热表面的至少一部分,以及iii)位于火焰下方的排气口, 在集热面的至少一部分的下方; b)燃烧生物质以产生在排气口上方含有热烟道气和熔融灰渣的混合物; c)在灰分与燃烧室的任何实质接触之前,基本上通过辐射将热量从热烟道气传递到至少一部分集热表面,以产生含有热烟气和非熔融灰的混合物 并且具有比通过燃烧步骤产生的混合物更低的熔融灰分含量; 和d)用冷气体冷却暖烟道气,得到含有冷烟道气和非熔融灰分的混合物,其熔融灰分含量低于转移步骤产生的混合物。
    • 10. 发明授权
    • Key holding tool
    • 钥匙夹具
    • US4136589A
    • 1979-01-30
    • US814479
    • 1977-07-11
    • John Kerr
    • John Kerr
    • B25B7/02
    • B25B7/02
    • Clamping jaws are associated with a tool of the type which is arranged to open the jaws and to close them in clamping engagement on a key blank. The jaws include a longitudinal dimension biting portion for holding a key blank in a rigid longitudinal extension of the tool for improved manipulation of the key blank. One embodiment of the invention includes a projection disposed rearward of the bitting portion arranged to fit in the usual hole in the head of the key for providing additional stability.
    • 夹紧爪与一种类型的工具相关联,该工具被布置成打开夹爪并将其以夹紧接合的方式封闭在钥匙坯件上。 夹爪包括纵向尺寸咬合部分,用于将钥匙坯件保持在工具的刚性纵向延伸部中,以改善钥匙坯件的操作。 本发明的一个实施例包括设置在接合部分的后面的突起,其布置成装配在钥匙的头部中的通常的孔中以提供额外的稳定性。