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    • 1. 发明授权
    • Vertical pyrolysis equipment for coal material
    • 煤材垂直裂解设备
    • US08864947B2
    • 2014-10-21
    • US13813708
    • 2010-09-19
    • Shucheng ZhuXibin WangXiangyun HuangGuochao CaoWei Liu
    • Shucheng ZhuXibin WangXiangyun HuangGuochao CaoWei Liu
    • C10B1/04C10B47/34C10K1/02C10B47/20C10K1/04C10B21/20C10B53/04
    • C10B21/20C10B1/04C10B47/20C10B47/34C10B53/04C10K1/02C10K1/04
    • Disclosed is a vertical pyrolysis equipment for coal material, which comprises an enclosed kiln body with an inlet and an outlet, a flame-gas heating pipelines provided inside the kiln body, coal material propulsion and pyrolysis passage formed between the flame-gas heating pipelines and inner wall of the kiln body, coal pyrolysis gas collecting tube communicated with the coal material propulsion and pyrolysis passage provided on the kiln. The heat generated by flame-gas heating pipelines is conducted and radiated to coal powder in the coal material propulsion and pyrolysis passage. The coal powder sufficiently absorbs the heat and is pyrolyzed into fuel gas, tar gas and coal with high heat value inside the coal material propulsion and pyrolysis passage. The pyrolyzed fuel gas and tar gas are transferred to the gas dedusting-liquifying mechanism outside the kiln through the connecting coal pyrolysis gas collecting tube for collecting, dedusting, separating and high-pressure liquefying.
    • 公开了一种用于煤材的立式热解设备,其包括具有入口和出口的封闭窑体,在窑体内设置的火焰气体加热管道,在火焰气体加热管道和火焰气体加热管道之间形成的煤材推进和热解通道 窑体内壁,煤热解气收集管与窑内提供的煤料推进和热解通道连通。 火焰气体加热管道产生的热量在煤质推进和热解通道中进行散热至煤粉。 煤粉充分吸收热量,并在煤材推进和热解通道内热解为燃料气,焦油和高热值煤。 热解燃料气和焦油气体通过连接煤热解气收集管转移到窑外的气体除尘机构,用于收集,除尘,分离和高压液化。
    • 2. 发明申请
    • ANNULAR CLEAN METAL CASTING MOLD
    • 环形清洁金属铸造模具
    • US20130269904A1
    • 2013-10-17
    • US13881890
    • 2010-11-24
    • Shucheng ZhuXibin WangGuochao Cao
    • Shucheng ZhuXibin WangGuochao Cao
    • B22D27/04B22C9/06
    • B22C9/06B22C9/065B22D7/00B22D7/064B22D7/10B22D9/006B22D27/04
    • An annular clean metal casting mold has a mold body which includes a cold bottom mold plate and a peripheral cold mold plate in connection with the cold bottom mold plate. An annular hot preservation layer is disposed inside the peripheral cold mold plate. A cyclic clean crystalline region is formed between the peripheral cold mold plate and the annular hot preservation layer. A sacrificial crystalline region is formed inside the cyclic hot preservation layer. As the outer race of the annular clean crystallization zone contacts large area of the peripheral low cold mold plate, releasing heat rapidly, while the inner race contacts the annular hot preservation layer 3, heat dissipation is extremely slow, naturally result in forming orientational crystallization. The vast majority of impurities and segregations in the liquid metal are gathered at the portion contacting with the annular hot preservation layer, and thus after the liquid metal is solidified, the gathered impurities and segregations can be removed easily, to obtain a clean casting ingot.
    • 环形清洁金属铸造模具具有模具主体,其包括冷底模板和与冷底模板连接的周边冷模板。 环形保温层设置在周边冷模板的内部。 在周边冷模板和环形保温层之间形成循环清洁的结晶区域。 在循环热保存层内形成牺牲结晶区域。 随着环形清洁结晶区的外圈接触周边低冷模板的大面积,快速释放热量,而内圈接触环形保温层3时,散热极慢,自然导致取向结晶。 液态金属中的绝大多数杂质和偏析聚集在与环形保温层接触的部分,因此在液态金属固化之后,可以容易地除去聚集的杂质和偏析,以获得清洁的铸锭。
    • 3. 发明授权
    • Annular clean metal casting mold
    • 环形清洁金属铸造模具
    • US08813823B2
    • 2014-08-26
    • US13881890
    • 2010-11-24
    • Shucheng ZhuXibin WangGuochao Cao
    • Shucheng ZhuXibin WangGuochao Cao
    • B22C9/06B22D27/04
    • B22C9/06B22C9/065B22D7/00B22D7/064B22D7/10B22D9/006B22D27/04
    • An annular clean metal casting mold has a mold body which includes a cold bottom mold plate and a peripheral cold mold plate in connection with the cold bottom mold plate. An annular hot preservation layer is disposed inside the peripheral cold mold plate. A cyclic clean crystalline region is formed between the peripheral cold mold plate and the annular hot preservation layer. A sacrificial crystalline region is formed inside the cyclic hot preservation layer. As the outer race of the annular clean crystallization zone contacts large area of the peripheral low cold mold plate, releasing heat rapidly, while the inner race contacts the annular hot preservation layer 3, heat dissipation is extremely slow, naturally result in forming orientational crystallization. The vast majority of impurities and segregations in the liquid metal are gathered at the portion contacting with the annular hot preservation layer, and thus after the liquid metal is solidified, the gathered impurities and segregations can be removed easily, to obtain a clean casting ingot.
    • 环形清洁金属铸造模具具有模具主体,其包括冷底模板和与冷底模板连接的周边冷模板。 环形保温层设置在周边冷模板的内部。 在周边冷模板和环形保温层之间形成循环清洁的结晶区域。 在循环热保存层内形成牺牲结晶区域。 随着环形清洁结晶区的外圈接触周边低冷模板的大面积,快速释放热量,而内圈接触环形保温层3时,散热极慢,自然导致取向结晶。 液态金属中的绝大多数杂质和偏析聚集在与环形保温层接触的部分,因此在液态金属固化之后,可以容易地除去聚集的杂质和偏析,以获得清洁的铸锭。
    • 4. 发明申请
    • ELECTRICAL HEATING COAL MATERIAL DECOMPOSITION APPARATUS
    • 电加热煤粉分解装置
    • US20130134031A1
    • 2013-05-30
    • US13814290
    • 2010-09-15
    • Shucheng ZhuXibin WangXiangyun HuangGuochao CaoWei Liu
    • Shucheng ZhuXibin WangXiangyun HuangGuochao CaoWei Liu
    • C10B53/04
    • C10B53/04C10B19/00C10B47/30C10B47/32C10K1/02C10K1/04
    • An electrical heating coal material decomposition apparatus includes a closed kiln body with a feed inlet, a discharge outlet, and an electrical heating device arranged in the kiln body. A propulsion and decomposition path of coal material is formed between the electrical heating device and the inner wall of the kiln body. A coal decomposition gas collecting pipe communicates with the propulsion and decomposition path of coal material, and is connected with a gas dust-trapping and liquefying device arranged outside the kiln. The electrical heating device transfers heat to the pulverized coal inside the propulsion and decomposition path of coal material by conduction and irradiation. The pulverized coal absorbs sufficient heat and decomposes into fuel gas, tar gas and coal. The fuel gas and tar gas enters the gas dust-trapping and liquefying mechanism through the decomposed gas collecting tube, where they are collected, dust-trapped, separated and liquefied under pressure.
    • 电加热煤分解装置包括具有进料口,排出口和布置在窑体内的电加热装置的封闭窑体。 在电加热装置和窑体内壁之间形成煤材的推进和分解路径。 煤分解气体收集管与煤材的推进和分解路径连通,并与排放在窑外的气体捕集和液化装置连接。 电加热装置通过传导和照射将热量传递到煤材推进和分解路径内的粉煤。 粉煤吸收足够的热量,分解成燃气,焦油和煤。 燃气和焦油气体通过分解气体收集管进入气体捕集和液化机构,在那里收集,在压力下被粉尘捕获,分离和液化。
    • 5. 发明申请
    • VERTICAL PYROLYSIS EQUIPMENT FOR COAL MATERIAL
    • 用于煤材的垂直热解设备
    • US20130126330A1
    • 2013-05-23
    • US13813708
    • 2010-09-19
    • Shucheng ZhuXibin WangXiangyun HuangGuochao CaoWei Liu
    • Shucheng ZhuXibin WangXiangyun HuangGuochao CaoWei Liu
    • C10B21/20
    • C10B21/20C10B1/04C10B47/20C10B47/34C10B53/04C10K1/02C10K1/04
    • Disclosed is a vertical pyrolysis equipment for coal material, which comprises an enclosed kiln body with an inlet and an outlet, a flame-gas heating pipelines provided inside the kiln body, coal material propulsion and pyrolysis passage formed between the flame-gas heating pipelines and inner wall of the kiln body, coal pyrolysis gas collecting tube communicated with the coal material propulsion and pyrolysis passage provided on the kiln. The heat generated by flame-gas heating pipelines is conducted and radiated to coal powder in the coal material propulsion and pyrolysis passage. The coal powder sufficiently absorbs the heat and is pyrolyzed into fuel gas, tar gas and coal with high heat value inside the coal material propulsion and pyrolysis passage. The pyrolyzed fuel gas and tar gas are transferred to the gas dedusting-liquifying mechanism outside the kiln through the connecting coal pyrolysis gas collecting tube for collecting, dedusting, separating and high-pressure liquefying.
    • 公开了一种用于煤材的立式热解设备,其包括具有入口和出口的封闭窑体,在窑体内设置的火焰气体加热管道,在火焰气体加热管道和火焰气体加热管道之间形成的煤材推进和热解通道 窑体内壁,煤热解气收集管与窑内提供的煤料推进和热解通道连通。 火焰气体加热管道产生的热量在煤质推进和热解通道中进行散热至煤粉。 煤粉充分吸收热量,并在煤材推进和热解通道内热解为燃料气,焦油和高热值煤。 热解燃料气和焦油气体通过连接煤热解气收集管转移到窑外的气体除尘机构,用于收集,除尘,分离和高压液化。
    • 6. 发明授权
    • Electrical heating coal material decomposition apparatus
    • 电加热煤分解装置
    • US08945349B2
    • 2015-02-03
    • US13814290
    • 2010-09-15
    • Shucheng ZhuXibin WangXiangyun HuangGuochao CaoWei Liu
    • Shucheng ZhuXibin WangXiangyun HuangGuochao CaoWei Liu
    • C10B21/20C10B53/04C10B19/00C10B47/30C10B47/32C10K1/02C10K1/04
    • C10B53/04C10B19/00C10B47/30C10B47/32C10K1/02C10K1/04
    • An electrical heating coal material decomposition apparatus includes a closed kiln body with a feed inlet, a discharge outlet, and an electrical heating device arranged in the kiln body. A propulsion and decomposition path of coal material is formed between the electrical heating device and the inner wall of the kiln body. A coal decomposition gas collecting pipe communicates with the propulsion and decomposition path of coal material, and is connected with a gas dust-trapping and liquefying device arranged outside the kiln. The electrical heating device transfers heat to the pulverized coal inside the propulsion and decomposition path of coal material by conduction and irradiation. The pulverized coal absorbs sufficient heat and decomposes into fuel gas, tar gas and coal. The fuel gas and tar gas enters the gas dust-trapping and liquefying mechanism through the decomposed gas collecting tube, where they are collected, dust-trapped, separated and liquefied under pressure.
    • 电加热煤分解装置包括具有进料口,排出口和布置在窑体内的电加热装置的封闭窑体。 在电加热装置和窑体内壁之间形成煤材的推进和分解路径。 煤分解气体收集管与煤材的推进和分解路径连通,并与排放在窑外的气体捕集和液化装置连接。 电加热装置通过传导和照射将热量传递到煤材推进和分解路径内的粉煤。 粉煤吸收足够的热量,分解成燃气,焦油和煤。 燃气和焦油气体通过分解气体收集管进入气体除尘和液化机构,在这些集气管中收集,在压力下被灰尘捕获,分离和液化。
    • 7. 发明申请
    • COAL DECOMPOSITION EQUIPMENT
    • 煤炭分解设备
    • US20120308951A1
    • 2012-12-06
    • US13578630
    • 2010-09-17
    • Shucheng ZhuXibin WangXiangyun HuangGuochao CaoWei Liu
    • Shucheng ZhuXibin WangXiangyun HuangGuochao CaoWei Liu
    • F27B5/16
    • C10B53/04C10B47/30C10B47/32C10K1/02C10K1/04
    • The invention discloses a coal decomposition equipment including an airtight kiln body with an inlet and an outlet, wherein a flame gas pipeline heating facility is set in the kiln body and a channel for impelling and decomposing coal is formed between the flame gas pipeline heating facility and an inner wall of the kiln body; and a coal decomposition gas collecting pipe is provided on the kiln body to communicate with the channel. Since the present invention makes the vast thermal conduction produced by the flame gas pipeline heating facility and radiate to the coal power in the coal substance impel decomposition channel. The pulverized coal fully absorbs the heat so as to be heated and decomposed to the gas, coal tar gas and coal with a higher heat-value in the channel.
    • 本发明公开了一种煤分解装置,包括具有入口和出口的气密窑体,其中火焰气体管道加热装置设置在窑体内,并且在火焰气体管道加热装置和火焰气体管道加热装置之间形成用于推动和分解煤的通道 窑体的内壁; 并且在窑体上设置煤分解气体收集管,以与通道连通。 由于本发明使得由火焰气体管道加热设备产生的大量热传导和辐射到煤物质中的煤电力推动分解通道。 粉煤完全吸收热量,加热分解成通道中具有较高热值的气体,煤焦油和煤。