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    • 3. 发明公开
    • FUEL GAS SUPPLY APPARATUS AND FUEL GAS SUPPLY METHOD
    • EP3425028A1
    • 2019-01-09
    • EP17760064.0
    • 2017-03-01
    • Osaka Gas Co., Ltd.
    • SHIMIZU, TsubasaYOKOYAMA, Kota
    • C10L3/08
    • In order to provide a technique for supplying fuel gas obtained by reforming heavy hydrocarbon gas and containing methane gas at a high concentration, there are provided a reforming device 10 including a gas generating section 11 configured to effect a decomposing reaction in which the heavy hydrocarbon gas desulfurized by a desulfurizing device 20 is decomposed into methane through steam reforming thereof to generate methane-containing mixture gas and a resynthesizing section 12 for resynthesizing methane from carbon monoxide and hydrogen contained in the mixture gas by a catalyst. There are also provided a heavy hydrocarbon gas supplying passage L1 for supplying heavy hydrocarbon gas to the reforming device 10 via the desulfurizing device 20, a heat exchanging section for effecting, within the resynthesizing section 12, heat exchange between the mixture gas supplied from the gas generating section 11 and the heavy hydrocarbon gas before its desulfurization by the desulfurizing device 20 which flows in the heavy hydrocarbon gas supplying passage L1, a recycling passage L4 for recycling a portion of the mixture gas generated in the gas generating section 11 to the heavy hydrocarbon gas supplying passage L1, and a fuel gas supplying passage L5 for supplying the fuel gas discharged from the resynthesizing section 12 to a combustion device (gas engine GE).
    • 6. 发明公开
    • EXHAUST HEAT RECOVERY DEVICE, HEAT SUPPLY SYSTEM, AND OPERATION METHOD FOR EXHAUST HEAT RECOVERY DEVICE
    • 排气回热装置,供热系统和排气回热装置的操作方法
    • EP3249315A1
    • 2017-11-29
    • EP15878910.7
    • 2015-11-20
    • Osaka Gas Co., Ltd.
    • SHIBATA Yoshitaka
    • F24H1/00F02G5/04F24D17/00
    • F02G5/04F02G5/00F24D3/08F24D17/0005F24D2200/04F24D2200/26F24D2220/0207F24D2220/08F24H1/206F24H1/22Y02E20/14Y02T10/166
    • A waste heat recovery device 20 includes: a first heat medium side inlet 21 where a first heat medium flows in; a first heat medium side outlet 22 where the first heat medium flows out; a first heat medium flow path 23 where the first heat medium flows; a second heat medium side inlet 25 where a second heat medium flows in; a second heat medium side outlet 26 where the second heat medium flows out; a second heat medium flow path 27 where the second heat medium flows; a heat exchanger 28 that exchanges heat between the first heat medium and the second heat medium; an expansion tank 29 provided in the first heat medium flow path 23; a bypass flow path 24 that causes the first heat medium to flow so as to bypass the heat exchanger 28; and a mixer 34 provided at a location where the bypass flow path 24 and the first heat medium flow path 23 merge together, the mixer 34 configured to adjust a ratio of a flow rate of the first heat medium in the bypass flow path 24 and a flow rate of the first heat medium in the heat exchanger 28, such that the temperature of the first heat medium after merging approaches a predetermined temperature.
    • 废热回收装置20具有:供第一热介质流入的第一热介质侧入口21; 第一热介质流出的第一热介质侧出口22; 供第一热介质流动的第一热介质流路23; 第二热介质流入的第二热介质侧入口25; 第二热介质流出的第二热介质侧出口26; 供第二热介质流动的第二热介质流路27; 在第一传热介质与第二传热介质之间进行热交换的热交换器28; 设置在第一传热介质流路23中的膨胀箱29; 使第1传热介质以绕过热交换器28的方式流动的旁通流路24, 以及混合器34,其设置在旁路流路24和第一热介质流路23合流的位置,混合器34构成为调节旁通流路24中的第一传热介质的流量与 第一热介质在热交换器28中的流量,使得合并之后的第一热介质的温度接近预定温度。