Process for production of low phosphorus alloy
    1.
    发明授权
    Process for production of low phosphorus alloy 失效
    低磷合金生产工艺

    公开(公告)号:US4522650A

    公开(公告)日:1985-06-11

    申请号:US537025

    申请日:1983-09-29

    摘要: Herein is disclosed a process for producing an alloy of low phosphorus content by means of a furnace equipped with a lance for injection. The process is characterized by producing an alloy of low phosphorus content and at the same time by gasifying the carbonaceous material.The process comprises the steps of:forming a bath of molten metal by pouring a molten metal in the furnace, said molten metal containing not more than 0.040% of phosphorus;injecting by means of said lance into said bath of molten metal a carbonaceous material together with a gasifying agent to gasify the carbonaceous material with the heat of the bath of molten metal and to increase the carbon content of the bath of molten metal, said carbonaceous material containing not more than 0.035% of phosphorus;adding to said bath of molten metal an alloying element to react with the molten metal thereby forming an alloy; andrecovering the formed gas and, at the same time, obtaining the alloy of low phosphorus content.The process is suitable for producing Cr steel, Mn steel and Ni steel.

    摘要翻译: 本文公开了一种通过装备有注射用喷枪的炉来制造低磷含量的合金的方法。 该方法的特征在于生产低磷含量的合金,同时通过气化碳质材料。 该方法包括以下步骤:通过将熔融金属倒入炉中而形成熔融金属浴,所述熔融金属含有不超过0.040%的磷; 通过所述喷枪将所述喷枪喷射到所述熔融金属浴中,将碳质材料与气化剂一起用熔融金属浴的热量气化碳质材料并增加熔融金属浴的碳含量,所述碳质材料 含磷不超过0.035% 向所述熔融金属浴中加入合金元素以与熔融金属反应从而形成合金; 并回收形成的气体,同时获得低磷含量的合金。 该工艺适用于生产Cr钢,Mn钢和Ni钢。

    Coal liquefaction process
    2.
    发明授权
    Coal liquefaction process 失效
    煤液化过程

    公开(公告)号:US4437974A

    公开(公告)日:1984-03-20

    申请号:US389566

    申请日:1982-06-17

    CPC分类号: C10G1/083 C10G1/006

    摘要: A coal liquefaction process and apparatus therefor are disclosed. According to this invention, a finely divided coal and a solvent are contacted with molecular hydrogen in the presence of a catalyst to provide a slurry, the slurry is separated into a gaseous component, a liquid component and a solid residue, the solid residue which is the liquefaction residue is then supplied to a molten metal bath together with oxygen gas to generate a gas entraining fine powdery solids, and the thus recovered fine powdery solids are returned to the liquefaction process as a catalyst.

    摘要翻译: 公开了一种煤液化方法及其设备。 根据本发明,细碎的煤和溶剂在催化剂的存在下与分子氢接触以提供浆料,将浆料分离成气体组分,液体组分和固体残余物,固体残余物是 然后将液化残余物与氧气一起供应到熔融金属浴中,以产生夹带细粉末状固体的气体,将回收的细粉末固体作为催化剂返回到液化过程。

    Process for gasifying carbonaceous material
    5.
    发明授权
    Process for gasifying carbonaceous material 失效
    气化碳质材料的方法

    公开(公告)号:US4738688A

    公开(公告)日:1988-04-19

    申请号:US886360

    申请日:1986-07-17

    IPC分类号: C10J3/46 C10J3/57 C10J3/48

    摘要: A process including an apparatus for use therein for gasifying a carbonaceous material by means of blowing said carbonaceous material onto a high temperature molten iron bath through a top-blowing lance of the non-immersion type is disclosed. The apparatus comprises a furnace body containing the high temperature molten iron bath, a top-blowing lance of the non-immersion type which is a multi-nozzle lance comprising a central nozzle for blowing the carbonaceous material in a powdery form, a plurality of inner nozzles for blowing a gasifying agent, the inner nozzles for blowing the gasifying agent being positioned surrounding said central nozzle, and another plurality of outer nozzles for blowing an oxidizing gas for secondary combustion of part of the product gas to maintain the molten iron bath temperature at a level high enough to continue the gasification, said outer nozzles being positioned surrounding said plurality of inner nozzles, the axis of each of said outer nozzles being inclined towards the outer periphery at an angle of 20.degree.-60.degree. with respect to the axis of said central nozzle, means for discharging the slag during gasification, and means for recovering the product gas.

    摘要翻译: 公开了一种包括其中用于通过非浸入式顶吹喷枪将所述碳质材料吹入高温铁水浴中来使碳质材料气化的装置。 该装置包括一个含有高温铁水槽的炉体,一种非浸入式的顶吹喷枪,它是一种多喷嘴喷枪,包括一个用于吹入粉状的碳质材料的中心喷嘴, 用于吹送气化剂的喷嘴,用于吹送围绕所述中心喷嘴的气化剂的内部喷嘴,以及另外多个外部喷嘴,用于吹送部分产物气体的二次燃烧用氧化气体,以将铁水浴温度保持在 高度足以继续气化的水平,所述外部喷嘴定位在所述多个内部喷嘴周围,每个所述外部喷嘴的轴线相对于所述外部喷嘴的轴线以20°-60°的角度向外周倾斜 所述中心喷嘴,用于在气化期间排出炉渣的装置,以及用于回收产品气体的装置。

    Lance structure for oxygen-blowing process in top-blown converters
    6.
    发明授权
    Lance structure for oxygen-blowing process in top-blown converters 失效
    顶吹转炉中吹氧过程的喷枪结构

    公开(公告)号:US4541617A

    公开(公告)日:1985-09-17

    申请号:US487566

    申请日:1983-04-22

    CPC分类号: F27D3/18 C21C5/4606

    摘要: Herein disclosed is a lance structure for use with a top-blown converter. The lance structure is constructed to include a cylindrical sheath having a bottom wall and a flux supply tube disposed at the center of the sheath and defining a passage for carrying slag-forming flux in a powdered form. Further inclusive are a plurality of oxygen supply tubes which are arranged in the sheath and around the flux supply tube and which define oxygen supply passages. From the oxygen supply tubes, there lead a corresponding number of Laval nozzles which have their exits opened in the sheath bottom so that the oxygen gas supplied through the oxygen supply passages may be blown in the form of supersonic jets to penetrate into the molten iron contained in the converter. The flux supply tube is formed with ports which are opened into the Laval nozzles just upstream of the exits thereof to feed the flux together with a carrier gas to the supersonic oxygen jets so that the carrier gas flows may merge into the oxygen jets. Thus, the powdered flux can be uniformly dispersed in the oxygen jets without wearing and damaging the inner walls of the Laval nozzles and can be carried by the jets deeply into the molten iron.

    摘要翻译: 这里公开了一种用于顶吹转炉的喷枪结构。 喷枪结构被构造为包括具有底壁的圆柱形护套和设置在护套中心处的通量供给管,并且限定用于承载粉末形式的成渣助熔剂的通道。 进一步包括多个供氧管,其布置在护套中并且围绕焊剂供应管并且限定供氧通道。 从供氧管中,引出相应数量的拉瓦尔喷嘴,其出口在鞘底部开口,使得通过供氧通道供应的氧气可以以超音速喷气的形式吹入,以渗透到所含的铁水中 在转换器中。 助焊剂供应管形成有在其出口的上游开口进入拉瓦尔喷嘴的端口,以将载气与载气一起供给超声波氧气射流,使得载气流可以合并到氧气射流中。 因此,粉末焊剂可以均匀地分散在氧气射流中,而不会磨损和损坏拉瓦尔喷嘴的内壁,并且可以通过射流深深地携带在铁水中。