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    • 1. 发明授权
    • Method for production of lower olefin
    • 低级烯烃的生产方法
    • US08530714B2
    • 2013-09-10
    • US12085055
    • 2006-11-13
    • Hirofumi ItoKazunori HondaKoji OyamaNobuyasu ChikamatsuKazutaka HiraokaAtsushi Okita
    • Hirofumi ItoKazunori HondaKoji OyamaNobuyasu ChikamatsuKazutaka HiraokaAtsushi Okita
    • C07C1/20
    • B01J29/04B01J29/40B01J2229/183B01J2229/62C07C1/20C07C2529/70Y02P20/52Y02P30/42C07C11/02C07C11/06
    • Disclosed is a method for production of lower olefins from a raw material containing dimethyl ether (DME), which can produce lower olefins (e.g. propylene) with good yield and in an economically advantageous manner by prolonging the time until the reversible deactivation of a zeolite catalyst and preventing the irreversible deactivation of the catalyst, can reduce the amount of water to be recycled to increase the thermal efficiency of the process, and can simplify the facilities and operations. Also disclosed is a method for improving the yield of propylene with good efficiency under practical operating conditions. A feed gas which comprises a DME-containing feedstock gas and an additive gas and further contains steam at a specific proportion is introduced into an olefin synthesis reactor to contact the feed gas with a zeolite catalyst, thereby producing a hydrocarbon product containing C2-C5 olefins. Propylene or the like is separated/collected from the hydrocarbon product, and at least a part of the remainder is used as at least a part of the additive gas.
    • 公开了一种从含有二甲醚(DME)的原料中生产低级烯烃的方法,其可以以良好的产率生产低级烯烃(例如丙烯),并且以经济上有利的方式通过延长直到沸石催化剂的可逆失活的时间 并防止催化剂的不可逆失活,可以减少再循环的水量,从而提高过程的热效率,并且可以简化设施和操作。 还公开了在实际操作条件下以良好的效率提高丙烯的产率的方法。 将包含含DME的原料气体和添加气体并进一步含有特定比例的蒸汽的进料气体引入到烯烃合成反应器中以使进料气体与沸石催化剂接触,由此生产含有C2-C5烯烃的烃产物 。 从烃产物中分离/收集丙烯等,其余部分的至少一部分用作添加剂气体的至少一部分。
    • 2. 发明申请
    • Method for Production of Lower Olefin
    • 低烯烃生产方法
    • US20100217054A1
    • 2010-08-26
    • US12085055
    • 2006-11-13
    • Hirofumi ItoKazunori HondaKoji OyamaNobuyasu ChikamatsuKazutaka HiraokaAtsushi Okita
    • Hirofumi ItoKazunori HondaKoji OyamaNobuyasu ChikamatsuKazutaka HiraokaAtsushi Okita
    • C07C1/20
    • B01J29/04B01J29/40B01J2229/183B01J2229/62C07C1/20C07C2529/70Y02P20/52Y02P30/42C07C11/02C07C11/06
    • Disclosed is a method for production of lower olefins from a raw material containing dimethyl ether (DME), which can produce lower olefins (e.g. propylene) with good yield and in an economically advantageous manner by prolonging the time until the reversible deactivation of a zeolite catalyst and preventing the irreversible deactivation of the catalyst, can reduce the amount of water to be recycled to increase the thermal efficiency of the process, and can simplify the facilities and operations. Also disclosed is a method for improving the yield of propylene with good efficiency under practical operating conditions. A feed gas which comprises a DME-containing feedstock gas and an additive gas and further contains steam at a specific proportion is introduced into an olefin synthesis reactor to contact the feed gas with a zeolite catalyst, thereby producing a hydrocarbon product containing C2-C5 olefins. Propylene or the like is separated/collected from the hydrocarbon product, and at least a part of the remainder is used as at least a part of the additive gas.
    • 公开了一种从含有二甲醚(DME)的原料中生产低级烯烃的方法,其可以以良好的产率生产低级烯烃(例如丙烯),并且以经济上有利的方式通过延长直到沸石催化剂的可逆失活的时间 并防止催化剂的不可逆失活,可以减少再循环的水量,从而提高过程的热效率,并且可以简化设施和操作。 还公开了在实际操作条件下以良好的效率提高丙烯的产率的方法。 将包含含DME的原料气体和添加气体并进一步含有特定比例的蒸汽的进料气体引入到烯烃合成反应器中以使进料气体与沸石催化剂接触,由此生产含有C2-C5烯烃的烃产物 。 从烃产物中分离/收集丙烯等,其余部分的至少一部分用作添加剂气体的至少一部分。
    • 9. 发明授权
    • Circuit and method for symmetric asynchronous interface
    • 对称异步接口的电路和方法
    • US06295300B1
    • 2001-09-25
    • US09362759
    • 1999-07-28
    • Koji Oyama
    • Koji Oyama
    • H04J306
    • H04L7/10
    • A symmetric asynchronous interface circuit for interfacing between two asynchronously operating devices has a first and third synchronization circuits for synchronizing a READY signal outputted by a transmitting device to a clock signal on the side of a receiving device and outputting the synchronized READY signal to the receiving device, first and second delay circuits for delaying a signal corresponding to the synchronized READY signal outputted by the first/third synchronization circuit and outputting the delayed signal as an ACKNOWLEDGE signal, second and fourth synchronization circuits for synchronizing the ACKNOWLEDGE signal outputted by the first/second delay circuit to a clock signal on the side of the transmitting device, and first and second pulse generation circuits for generating a pulse signal when the synchronized ACKNOWLEDGE signal is supplied from the second/fourth synchronization circuit and outputting the pulse signal to the transmitting device as an ACKNOWLEDGE signal.
    • 用于在两个异步操作设备之间进行接口的对称异步接口电路具有第一和第三同步电路,用于将由发送设备输出的就绪信号同步到接收设备侧的时钟信号,并将同步的就绪信号输出到接收设备 用于延迟与由第一/第三同步电路输出的同步READY信号相对应的信号并输出​​延迟信号作为ACKNOWLEDGE信号的第一和第二延迟电路;第二和第四同步电路,用于使第一/第二同步电路输出的ACKNOWLEDGE信号同步 延迟电路发送到发送装置一侧的时钟信号;以及第一和第二脉冲产生电路,用于当从第二/第四同步电路提供同步的ACKNOWLEDGE信号时产生脉冲信号,并将该脉冲信号作为 一个确认信号 l。