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    • 5. 发明授权
    • Heat integrated distillation apparatus
    • EP2644241B1
    • 2018-06-13
    • EP13159728.8
    • 2013-03-18
    • Toyo Engineering Corporation
    • Wakabayashi, ToshihiroNakao, Takato
    • B01D1/28B01D3/00B01D3/14B01D3/32B01D3/42F25J3/00
    • B01D3/007B01D1/28B01D3/143B01D3/322B01D3/4261
    • A distillation apparatus of the present invention includes high-pressure column 1 corresponding to a region above a heat exchanging section located at a lowermost part of a region including a trayed section or a packed bed section, which is used as a rectifying section; and low-pressure column 2 that is located above as seen from high-pressure column 1, which integrates a region including a trayed section or a packed bed section which is used as a stripping section, with rectifying section corresponding portion 2g that corresponds to a region locating below the heat exchanging section located at the lowermost part in the rectifying section. Rectifying section corresponding portion 2g is located on top 2c of the stripping section in low-pressure column 2 so that rectifying section corresponding portion 2g continues to the stripping section. The distillation apparatus further includes first pipe 26 that connects column bottom 1a of high-pressure column 1 with rectifying section corresponding portion 2g via means 6 that pressure-feeds liquid that remains in column bottom 1a of high-pressure column 1 to rectifying section corresponding portion 2g, heat exchanger 8 located at a stage in a lower part of low-pressure column 2, a second pipe (23, 4a) that connects rectifying section corresponding portion 2g with heat exchanger 8 in a lower part of low-pressure column 2, compressor 4 installed in the first pipe (23, 4a) and configured to compress vapor from rectifying section corresponding portion 2g and then feed the compressed vapor to heat exchanger 8 in the lower part of low-pressure column 2, and third pipe 30 that introduces fluids flowing out from heat exchanger 8 in the lower part of low-pressure column 2 to column bottom 1a of high-pressure column 1. According to the apparatus configuration, further energy saving can be achieved.
    • 9. 发明公开
    • SOLAR HEAT COLLECTING DEVICE
    • 太阳能集热装置
    • EP3176519A1
    • 2017-06-07
    • EP15827831.7
    • 2015-06-23
    • Toyo Engineering Corporation
    • KATO, YoshinobuSATAKE, Kiyoshi
    • F24J2/38F24J2/10
    • F24S20/25F24S23/70F24S50/20F24S2020/11F24S2023/87F24S2023/872F24S2023/876Y02E10/40
    • A solar heat collecting device with high heat collecting efficiency is provided. A single-axial solar tracking type reflection mirror group 20 is disposed with each long axis facing in the same direction. A first dual-axial solar tracking type reflection mirror group 30 and a second dual-axial solar tracking type reflection mirror group 40 are disposed side by side in a direction orthogonal to the long-axis direction of a single-axial solar tracking type reflection mirror 21. The single-axial solar tracking type reflection mirror group 20 is disposed sandwiched between the first dual-axial solar tracking type reflection mirror group 30 and the second dual-axial solar tracking type reflection mirror group 40. Each mirror group sends to a heat collecting unit 10, the solar heat received while tracking the position of the sun single-axially or dual-axially.
    • 提供一种集热效率高的太阳能集热装置。 单轴太阳跟踪型反射镜组20以各自的长轴朝向同一方向的方式配置。 第一双轴太阳跟踪式反射镜组30和第二双轴太阳跟踪式反射镜组40沿着与单轴太阳跟踪式反射镜的长轴方向正交的方向并排设置 单轴太阳跟踪式反射镜组20被夹在第一双轴太阳跟踪式反射镜组30和第二双轴太阳跟踪式反射镜组40之间。每个反射镜组发送热量 收集单元10在单轴或双轴跟踪太阳位置时接收太阳能。