会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 4. 发明公开
    • DRYING UNIT AND METHOD FOR DRYING SOLID FUEL CONTAINING WATER
    • VERFAHREN ZUR TROCKNUNG VON WASSERHALTIGEM FESTBRENNSTOFF的TROCKNUNGSEINHEIT
    • EP2436978A1
    • 2012-04-04
    • EP10780546.7
    • 2010-05-25
    • Mitsubishi Heavy Industries, Ltd.The University of Tokyo
    • YOKOHAMA, KatsuhikoKOSAKA, KenichiroMATSUMOTO, KeigoKAWAMOTO, NoboruYAMAGUCHI, YoshikiKINOSHITA, MasaakiOHURA, KojiTSUTSUMI, AtsushiKANEKO, ShozoMOCHIZUKI, KazuhiroFUSHIMI, ChihiroKANSHA, Yasuki
    • F23K1/04F26B3/08F26B21/04C10L5/40
    • F23K1/04C10L9/08F23K2201/20F26B23/004Y02B30/52Y02E50/30Y02P70/405
    • Provided is a drying unit for drying solid fuel containing water with which low energy-consuming, efficient drying is possible by effectively using the sensible heat and latent heat of a heating medium for drying, and the like. A drying unit (10) for drying solid fuel containing water comprises a dryer (2) for introducing scavenging gas to inside a drying vessel (21) having heating tubes (22) arranged therein; a dust collecting unit (13) for removing microparticles from a microparticle-containing mixed gas current that flows out from the dryer vessel (21); a compressor (30) for compressing a mixed gas current containing steam; a steam heat exchanger (31) for preheating the low-pressure mixed gas current using the high-pressure mixed gas current that has been compressed by the comperessor (30); and a gas-liquid separating unlit (14) for gas-liquid separation of the scavenging gas containing water, which is obtained when the high-pressure mixed gas current passes through the heating tubes (22) to become drying gas that releases heat and then flows out from the heating tubes (22) containing the water of condensation from the steam that was generated when heat was released. Solid fuel containing water is heated and dried inside the drying vessel (21) using the latent heat and the sensible heat of the mixed gas current.
    • 提供一种干燥装置,用于干燥含有水的固体燃料,通过有效地利用加热介质的显热和干燥干燥等的潜热,能够进行低能耗,高效的干燥。 用于干燥含固体燃料的水的干燥单元(10)包括用于将清除气体引入到其中布置有加热管(22)的干燥容器(21)内部的干燥器(2) 用于从从干燥容器(21)流出的含微粒混合气流中除去微粒的集尘单元(13); 用于压缩含蒸汽的混合气流的压缩机(30); 使用由压缩机(30)压缩的高压混合气体电流来预热低压混合气体电流的蒸汽热交换器(31); 以及当高压混合气体流通过加热管(22)而成为干燥气体时得到的含水清扫气体的气液分离器(14),用于气体分离, 从包含冷凝水的加热管(22)从热量释放时产生的蒸汽中流出。 使用潜热和混合气体电流的显热,在干燥容器(21)内加热干燥固体含水的水。
    • 5. 发明公开
    • METHOD OF STARTING COAL GASIFICATION FURNACE AND STARTUP DEVICE THEREFOR
    • VERFAHREN ZUM STARTEN EINES KOHLENVERGASUNGSOFENS UND STARTVORRICHTUNGDAFÜR
    • EP2239312A1
    • 2010-10-13
    • EP08791377.8
    • 2008-07-15
    • Mitsubishi Heavy Industries, Ltd.
    • YOKOHAMA, KatsuhikoISHII, HiromiKITAGAWA, Yuichiro
    • C10J3/46
    • C10J3/726C10J3/466C10J2300/093
    • In a coal gasification furnace adapted to feed pulverized coal thereinto by the use of inert carrier gas and gasify the same, any startup burner can be unnecessitated thereby eliminating any startup combustion chamber. Further, even in the use of a startup burner, it is smaller and lighter in weight than conventional startup burners, allowing the startup combustion chamber to be compact and limiting the height of the entirety of the gasification furnace. As a characteristic feature, a pulverized coal fuel supply passageway (23) to a combustor burner (9) is provided at its midstream portion with a startup gas supply passageway (29) for supply of a startup combustible gas (NG1). After reaching of the temperature of the furnace interior to a first temperature (T1) allowing ignition of pulverized coal with reference to a detected value from furnace interior temperature detecting means (41), transition to combustion by the pulverized coal and carrier gas is effected by increasing the input rate of pulverized coal and carrier gas while decreasing the supply rate of combustible gas (NG1) from the startup gas supply passageway (29).
    • 在适于通过使用惰性载气进料到其中的粉煤的气化炉中,可以不必要地启动任何启动燃烧器,从而消除任何启动燃烧室。 此外,即使在使用起动燃烧器的情况下,其重量比常规起动燃烧器小,重量轻,从而允许启动燃烧室紧凑并限制了整个气化炉的高度。 作为特征,在燃烧器燃烧器(9)的中游部设有用于供给起动可燃性气体(NG1)的启动气体供给通路(29)的燃煤燃烧器(9)的粉煤燃料供给通路(23)。 在炉内温度达到炉内温度检测装置(41)的检测值之后,允许粉煤点火的第一温度(T1)之后,煤粉和载气的燃烧过渡由 在降低可燃气体(NG1)从启动气体供应通道(29)的供给速率的同时,增加了粉煤和载气的输入量。