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    • 96. 发明申请
    • Hermetic Container for Thermal Conversion Reaction
    • 用于热转化反应的密封容器
    • US20120039760A1
    • 2012-02-16
    • US13257034
    • 2010-03-18
    • Soon Kwang YounJae Chul JungTae Soo KimTae Hyung KimSun II YouKyung Ho Kim
    • Soon Kwang YounJae Chul JungTae Soo KimTae Hyung KimSun II YouKyung Ho Kim
    • B01J19/26
    • C01B33/107B01J4/002B01J19/02B01J19/24B01J2219/00094B01J2219/00135B01J2219/00159B01J2219/0286C01B33/035
    • Disclosed is a hermetic container for thermal conversion reaction, including: a base plate in which utilities are installed; a vessel which, together with the base plate, forms a hermetic hot zone; a heater which is arranged in the hot zone; inlet and outlet holes through which reaction gas is supplied to and discharged from the hot zone; and a heat exchanger which is provided inside the vessel so that the reaction gas supplied to the hot zone via the inlet holes can absorb thermal energy transferred to the vessel to cool temperature of the vessel and at the same time be supplied to the hot zone as being heated. With this, when the reaction gas is supplied to the hot zone via the heat exchanger provided inside the vessel, the thermal energy transferred from the heater of the hot zone to the vessel and escaping outward is absorbed by the reaction gas supplied to the hot zone, thereby preventing the vessel from being heated at a limit temperature or over. Further, the reaction gas absorbing the thermal energy escaping to the outside of the vessel is heated and then supplied to the hot zone, thereby reducing power consumption of the heater.
    • 公开了一种用于热转化反应的密封容器,包括:安装有电力的基板; 与基板一起形成密封的热区的容器; 布置在热区的加热器; 入口和出口孔,反应气体通过该孔向热区供应和排出; 以及设置在容器内部的热交换器,使得经由入口孔供给到热区域的反应气体可以吸收传递到容器的热能以冷却容器的温度,并且同时被供给到热区域 被加热。 由此,当通过设置在容器内部的热交换器将反应气体供给到热区时,从热区的加热器向容器转移并向外逸出的热能被供给到热区的反应气体吸收 ,从而防止容器在极限温度或更高温度下被加热。 此外,吸收向容器外部逸出的热能的反应气体被加热,然后供给到热区,从而降低加热器的功率消耗。
    • 99. 发明授权
    • Synthesis of hydroxylated polyorganosiloxanes by hydrolysis/condensation of halosilanes and apparatus therefor
    • 通过卤代硅烷的水解/缩合合成羟基化聚有机硅氧烷及其设备
    • US08013059B2
    • 2011-09-06
    • US11153618
    • 2005-06-16
    • Thomas DeforthKamel Ramdani
    • Thomas DeforthKamel Ramdani
    • C08G77/06
    • C08G77/06B01J19/0066B01J19/1806B01J19/1837B01J2219/00094B01J2219/00184C08G77/045C08G77/16
    • A method for hydrolyzing/condensing, by acid catalysis, silanes bearing hydrolyzable groups, preferably halogenosilanes and more preferably still chlorosilanes, in a polyphase reaction medium (preferably biphasic), includes contacting the silanes bearing the hydrolyzable groups with water, buffer solution and neutralizing agent, while stirring, then in separating the aqueous phase from the organic phase, which contains the hydrolysis/condensation products, namely hydroxylated polyorganosiloxanes; such method is characterized by (a) employing intensively stirring means producing, in the reaction medium, an agitation at least equivalent to that induced by a shearing corresponding to that provided by a rotor whereof the peripheral speed is not less than 8 m.s−1, preferably not less than 10 m.s−1, and more preferably still ranging between 15 and 20 m.s−1, enabling thus organic phase droplets to be formed, of d32 less than 500 μm; and (b) ensuring that the silanes/aqueous phase mass fraction is not less than 0.05, preferably not less than 0.10, and more preferably still ranging from 0.5 to 2.0.
    • 通过酸催化水解/缩合在多相反应介质(优选两相)中含有可水解基团,优选卤代硅烷,更优选静态氯硅烷的硅烷的方法包括使带有可水解基团的硅烷与水,缓冲溶液和中和剂接触 在搅拌的同时将水相与含有水解/缩合产物的有机相(即羟基化聚有机硅氧烷)分离; 这种方法的特征在于:(a)采用强烈搅拌装置,在反应介质中产生至少相当于由对应于圆周速度不小于8ms-1的转子提供的剪切所引起的剪切所产生的搅拌, 优选不小于10ms-1,更优选仍在15至20ms -1之间,从而能够形成d32小于500μm的有机相液滴; 和(b)确保硅烷/水相质量分数不小于0.05,优选不小于0.10,更优选仍为0.5至2.0。