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    • 7. 发明授权
    • Method of dewatering gas hydrate and apparatus therefor
    • 天然气水合物脱水方法及其设备
    • US08353409B2
    • 2013-01-15
    • US12450447
    • 2008-03-25
    • Tetsuro MurayamaKiyoshi HoriguchiTakashi AraiToru IwasakiHidenori Moriya
    • Tetsuro MurayamaKiyoshi HoriguchiTakashi AraiToru IwasakiHidenori Moriya
    • B01D29/35B01D29/37B01D29/60B01D29/88C07C9/04C07C9/00C10L3/00C10L3/10
    • C10L3/10C10L3/108
    • A gas hydrate slurry dewatering apparatus adapted to feed a raw as into a cylindrical main body of dewatering column so gas to attain pressuriation and so suction any gas from the interior of a drainage chamber disposed around the cylindrical main body so as to attain depressurization. An internal tube (8) as a constituent of a dewatering apparatus (6) in which the gas hydrate slurry (S) is introduced is provided with a separating section (7). A drainage chamber (10) is formed by the internal tube (8) and, disposed with a given spacing therefrom, an external tube (9). An exhaust blower (B2) and a drainage pump (P2) are connected to the drainage chamber (10). A gas feed blower (B3) for a raw gas (G1) is connected to the internal tube (8). A differential pressure detector (x1) is provided for detecting any pressure difference between the interior of the internal tube (8) and the interior of the drainage chamber (10). Control of the exhaust blower (B2) and/or the gas feed blower (B3) is performed by the signal from the differential pressure detector (x1).
    • 一种气体水合物浆料脱水装置,其适于将原料供给到脱水塔的圆筒形主体中,以便进行加压,并且从设置在圆筒形主体周围的排水室的内部抽吸任何气体,以实现减压。 作为导入气体水合物浆料(S)的脱水装置(6)的成分的内管(8)具有分离部(7)。 排水室(10)由内管(8)形成,并以一定间隔设置有外管(9)。 排气机(B2)和排水泵(P2)连接到排水室(10)。 用于原料气体(G1)的气体供给鼓风机(B3)连接到内管(8)。 提供差压检测器(x1),用于检测内管(8)的内部和排水室(10)的内部之间的任何压力差。 通过来自差压检测器(x1)的信号进行排气鼓风机(B2)和/或供气鼓风机(B3)的控制。
    • 8. 发明申请
    • METHOD OF DEWATERING GAS HYDRATE AND APPARATUS THEREFOR
    • 气体水合物脱水方法及其设备
    • US20100089834A1
    • 2010-04-15
    • US12450447
    • 2008-03-25
    • Tetsuro MurayamaKiyoshi HoriguchiTakashi AraiToru IwasakiHidenori Moriya
    • Tetsuro MurayamaKiyoshi HoriguchiTakashi AraiToru IwasakiHidenori Moriya
    • B03D3/00C10L3/06
    • C10L3/10C10L3/108
    • A gas hydrate slurry dewatering apparatus adapted to feed a raw as into a cylindrical main body of dewatering column so gas to attain pressurization and so suction any gas from the interior of a drainage chamber disposed around the cylindrical main body so as to attain depressurization. An internal tube (8) as a constituent of a dewatering apparatus (6) in which the gas hydrate slurry (S) is introduced is provided with a separating section (7). A drainage chamber (10) is formed by the internal tube (8) and, disposed with a given spacing therefrom, an external tube (9). An exhaust blower (B2) and a drainage pump (P2) are connected to the drainage chamber (10). A gas feed blower (B3) for a raw gas (G1) is connected to the internal tube (8). A differential pressure detector (x1) is provided for detecting any pressure difference between the interior of the internal tube (8) and the interior of the drainage chamber (10). Control of the exhaust blower (B2) and/or the gas feed blower (B3) is performed by the signal from the differential pressure detector (x1).
    • 一种气体水合物浆料脱水装置,其适于将原料进料到脱水塔的圆筒形主体中,以便进行加压,从而从设置在圆筒形主体周围的排水室的内部抽吸任何气体,从而实现减压。 作为导入气体水合物浆料(S)的脱水装置(6)的成分的内管(8)具有分离部(7)。 排水室(10)由内管(8)形成,并以一定间隔设置有外管(9)。 排气机(B2)和排水泵(P2)连接到排水室(10)。 用于原料气体(G1)的气体供给鼓风机(B3)连接到内管(8)。 提供差压检测器(x1),用于检测内管(8)的内部和排水室(10)的内部之间的任何压力差。 通过来自差压检测器(x1)的信号进行排气鼓风机(B2)和/或供气鼓风机(B3)的控制。