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    • 3. 发明申请
    • DEVICE FOR DESTRUCTIVE DISTILLATION OF COAL
    • 破坏性煤炭清除设备
    • US20150291883A1
    • 2015-10-15
    • US14416454
    • 2013-10-08
    • MITSUBISHI HEAVY INDUSTRIES, LTD.
    • Kenji AtarashiyaKeiichi SatoShinji NambaTsutomu Hamada
    • C10B47/30C10K1/02
    • C10B47/30C10B33/00C10B41/08C10K1/02C10K1/026
    • Provided is a device for the destructive distillation of coal, said device suppressing increases in the concentration of mercury within destructively distilled coal generated by the device. The device for the destructive distillation of coal is a rotary kiln in which an inner cylinder is rotatably supported inside an outer cylinder, thermal gas is supplied to interior of the outer cylinder and dried coal is supplied to the interior of the inner cylinder from one end side thereof, the dried coal is subjected to thermal destructive distillation while being moved and agitated from the one end side of the inner cylinder to the other end side thereof due to the inner cylinder being rotated, and destructively distilled coal and destructively distilled gas are delivered from the other end side of the inner cylinder.
    • 提供了一种用于煤的破坏性蒸馏的装置,所述装置抑制由装置产生的破坏性蒸馏煤中的汞浓度的增加。 用于煤的破坏性蒸馏的装置是其中内筒可旋转地支撑在外筒内的回转窑,将热气体供应到外筒的内部,并且干燥的煤从一端被供应到内筒的内部 在干燥的煤被内筒旋转的同时由内筒的一端侧向另一端侧移动搅拌的同时进行热破坏性蒸馏,并且输送破坏性蒸馏的煤和破坏性蒸馏的气体 从内筒的另一端侧。
    • 4. 发明申请
    • CARBONIZATION DEVICE
    • 碳化装置
    • US20160053180A1
    • 2016-02-25
    • US14782629
    • 2014-04-08
    • MITSUBISHI HEAVY INDUSTRIES, LTD.
    • Keiichi NakagawaSetsuo OmotoMasakazu Sakaguchi
    • C10B21/10C10B41/00
    • C10B21/10C10B41/00C10B41/08C10B47/30C10B57/18F27B7/06F27B7/20F27B7/42F27D19/00F27D21/00
    • The present invention is provided with: a reference gas supply source that adds a reference gas that is a noble gas to a carbonization gas; a combustor that combusts the mixed gas of the carbonization gas and the reference gas and sends out an inspection gas; a gas rheometer that measures a flow rate of the inspection gas; a gas concentration measurement device; and a computation control device that determines the flow rate of the reference gas (noble gas) in the mixed gas from the concentration of reference gas, determines the amount of carbon component generated in the carbonization gas, determines the carbonization fraction of carbonized charcoal from the concentration of the carbon component in low-grade charcoal, the amount of carbon component generated, and the weight of supplied low-grade charcoal, and controls a valve in a manner so that a target carbonization fraction results.
    • 本发明提供:将作为惰性气体的参考气体添加到碳化气体的参考气体供给源; 燃烧器,其将碳化气体和参考气体的混合气体燃烧并发出检查气体; 测量检查气体流量的气体流变仪; 气体浓度测量装置; 以及计算控制装置,其从参考气体的浓度确定混合气体中的参考气体(惰性气体)的流量,确定在碳化气体中产生的碳成分的量,从碳化气体中确定碳化炭的碳化分数 低级木炭中碳成分的浓度,生成的碳成分的量和供给的低级木炭的重量,并且以使得产生目标碳化分数的方式控制阀。
    • 7. 发明申请
    • METHOD FOR GENERATING A NEGATIVE PRESSURE IN A COKE OVEN CHAMBER DURING THE DISCHARGING AND CHARGING PROCESSES
    • 放电和充电过程中在烤炉中产生负压的方法
    • US20120247939A1
    • 2012-10-04
    • US13503199
    • 2010-10-28
    • Ronald KimRainer Worberg
    • Ronald KimRainer Worberg
    • C10B51/00
    • C10B27/04C10B33/003C10B41/08
    • A method for extracting flue gases from a coke oven chamber, wherein the flue gases that develop briefly during the process of discharging and charging the coke cake from and to the coke oven chamber are extracted by a vacuum generated in the headspace above the coke cake. The vacuum in the headspace above the coke oven chamber is generated via channels through the lateral walls of the coke oven chamber or in the coke cake. The vacuum is generated in the secondary heating chamber and, by way of example, can be extracted again from a vacuum supply tank which, for the time that the coke oven chamber doors are open, is connected to the secondary heating chamber by opening shut-off devices in the connecting line. The method avoids the undesirable emission of flue gases into the atmosphere. A device whereby the method can be carried out is also disclosed.
    • 一种用于从焦炉室中提取烟道气的方法,其中在将焦炭块从焦炉室排出和加入焦化炉过程中短暂发生的烟道气由焦炭饼上方的顶部空间中产生的真空提取。 在焦炉室上方的顶部空间中的真空通过通过焦炉室的侧壁或焦炭饼的通道产生。 在第二加热室中产生真空,例如,可以从真空供应罐再次抽出,在真空室室打开的时候,通过打开关闭的方式连接到二次加热室, 关闭设备在连接线路。 该方法避免了不良的烟气排放到大气中。 还公开了可以进行该方法的装置。