WASTE HEAT RECOVERY APPARATUS AND WASTE HEAT RECOVERY METHOD
    1.
    发明申请
    WASTE HEAT RECOVERY APPARATUS AND WASTE HEAT RECOVERY METHOD 审中-公开
    废热回收装置和废热回收方法

    公开(公告)号:US20150027053A1

    公开(公告)日:2015-01-29

    申请号:US14337242

    申请日:2014-07-22

    Abstract: Provided is a waste heat recovery apparatus including a first heat exchanger, a reformer and a reformer feed pre-heater sequentially disposed on or in the waste gas exhaust pipe from the upstream to the downstream thereof, wherein the waste gas temperature at the upstream of the waste gas exhaust pipe is higher than that at the downstream. In an embodiment, the reformer can be a hydrogen-generation reformer, and the generated hydrogen is introduced into the burning equipment for use. In such manner, the waste heat can be effectively utilized, and the carbon deposition issue inside the burning equipment can be fixed. A waste heat recovery method is also provided.

    Abstract translation: 提供了一种废热回收装置,其包括从其上游到下游顺序地设置在废气排放管上或其中的第一热交换器,重整器和重整器进料预热器,其中在上游侧的废气温度 废气排气管比下游高。 在一个实施方案中,重整器可以是氢生成重整器,并且所产生的氢气被引入到燃烧设备中以供使用。 以这种方式,可以有效地利用废热,并且可以固定燃烧设备内的碳沉积问题。 还提供废热回收方法。

    THERMOELECTRIC CONVERSION DEVICE AND SELECTIVE ABSORBER FILM
    2.
    发明申请
    THERMOELECTRIC CONVERSION DEVICE AND SELECTIVE ABSORBER FILM 审中-公开
    热电转换装置和选择性吸收膜

    公开(公告)号:US20140144478A1

    公开(公告)日:2014-05-29

    申请号:US13893348

    申请日:2013-05-14

    CPC classification number: H01L35/30 G01J5/00 G01J5/12 H01L35/02

    Abstract: A thermoelectric conversion device and a selective absorber film are provided. The thermoelectric conversion device includes at least one first selective absorber film, a cold terminal substrate, at least one first thermoelectric element pair, a first conductive substrate and a second conductive substrate. The first selective absorber film non-contactly absorbs a preset limited wavelength band of heat radiation. The first thermoelectric element pair is disposed between the first selective absorber film and the cold terminal substrate, and includes a first N-type thermoelectric element and a first P-type thermoelectric element. The first conductive substrate is disposed between the cold terminal substrate and the first N-type thermoelectric element. The second conductive substrate is disposed between the cold terminal substrate and the first P-type thermoelectric element. The first thermoelectric element pair generates current to perform power generation in response to temperature difference between the first selective absorber film and the cold terminal substrate.

    Abstract translation: 提供热电转换装置和选择性吸收膜。 热电转换装置包括至少一个第一选择吸收膜,冷终端基板,至少一个第一热电元件对,第一导电基板和第二导电基板。 第一选择吸收膜非接触地吸收预定的有限波长带的热辐射。 第一热电元件对设置在第一选择吸收膜和冷端基板之间,并且包括第一N型热电元件和第一P型热电元件。 第一导电基板设置在冷端子基板和第一N型热电元件之间。 第二导电基板设置在冷端子基板和第一P型热电元件之间。 第一热电元件对产生电流,以响应于第一选择吸收膜和冷终端衬底之间的温度差来执行发电。

    Waste heat recovery apparatus and waste heat recovery method

    公开(公告)号:US10160646B2

    公开(公告)日:2018-12-25

    申请号:US14337242

    申请日:2014-07-22

    Abstract: Provided is a waste heat recovery apparatus including a first heat exchanger, a reformer and a reformer feed pre-heater sequentially disposed on or in the waste gas exhaust pipe from the upstream to the downstream thereof, wherein the waste gas temperature at the upstream of the waste gas exhaust pipe is higher than that at the downstream. In an embodiment, the reformer can be a hydrogen-generation reformer, and the generated hydrogen is introduced into the burning equipment for use. In such manner, the waste heat can be effectively utilized, and the carbon deposition issue inside the burning equipment can be fixed. A waste heat recovery method is also provided.

    THERMOELECTRIC CONVERSION DEVICE
    5.
    发明申请
    THERMOELECTRIC CONVERSION DEVICE 审中-公开
    热电转换装置

    公开(公告)号:US20170040521A1

    公开(公告)日:2017-02-09

    申请号:US15298253

    申请日:2016-10-20

    CPC classification number: H01L35/30 G01J5/00 G01J5/12 H01L35/02

    Abstract: A thermoelectric conversion device and a selective absorber film are provided. The thermoelectric conversion device includes at least one first selective absorber film, a cold terminal substrate, at least one first thermoelectric element pair, a first conductive substrate and a second conductive substrate. The first selective absorber film non-contactly absorbs a preset limited wavelength band of heat radiation. The first thermoelectric element pair is disposed between the first selective absorber film and the cold terminal substrate, and includes a first N-type thermoelectric element and a first P-type thermoelectric element. The first conductive substrate is disposed between the cold terminal substrate and the first N-type thermoelectric element. The second conductive substrate is disposed between the cold terminal substrate and the first P-type thermoelectric element. The first thermoelectric element pair generates current to perform power generation in response to temperature difference between the first selective absorber film and the cold terminal substrate.

    Abstract translation: 提供热电转换装置和选择性吸收膜。 热电转换装置包括至少一个第一选择吸收膜,冷终端基板,至少一个第一热电元件对,第一导电基板和第二导电基板。 第一选择吸收膜非接触地吸收预定的有限波长带的热辐射。 第一热电元件对设置在第一选择吸收膜和冷端基板之间,并且包括第一N型热电元件和第一P型热电元件。 第一导电基板设置在冷端子基板和第一N型热电元件之间。 第二导电基板设置在冷端子基板和第一P型热电元件之间。 第一热电元件对产生电流,以响应于第一选择吸收膜和冷终端衬底之间的温度差来执行发电。

    Thermoelectric module
    6.
    发明授权

    公开(公告)号:US10955174B2

    公开(公告)日:2021-03-23

    申请号:US16838792

    申请日:2020-04-02

    Abstract: A thermoelectric module includes a plurality of thermoelectric components, a first electrode and a second electrode. The thermoelectric components have the same type of semiconductor material. The first electrode includes a first parallel connection part and a first serial connection part. The plurality of thermoelectric components is electrically connected to the first parallel connection part and each of the plurality of thermoelectric components is separated from one another. The first serial connection part is configured for being electrically connected to other electrical components. The plurality of thermoelectric components is electrically connected to the second electrode and located between the first parallel connection part and the second electrode.

    Gas filtration structure and method for filtering gas

    公开(公告)号:US10668429B2

    公开(公告)日:2020-06-02

    申请号:US16008763

    申请日:2018-06-14

    Abstract: A method for filtering gas includes providing a gas filtration structure, and the gas filtration structure includes a porous support and a first gas filtration film pair on the porous support, wherein the first gas filtration film pair includes a first hydrogen permeation layer and a first calcinated layered double hydroxide (c-LDH) layer, and the first hydrogen permeation layer is disposed between the porous support and the first c-LDH layer. The method also provides a hydrogen-containing mixture gas over the first gas filtration film pair, and collects hydrogen under the porous support.

    Thermoelectric module
    8.
    发明授权

    公开(公告)号:US10648708B2

    公开(公告)日:2020-05-12

    申请号:US15476893

    申请日:2017-03-31

    Abstract: A thermoelectric module includes a plurality of thermoelectric components, a first electrode and a second electrode. The thermoelectric components have the same type of semiconductor material. The first electrode includes a first parallel connection part and a first serial connection part. The plurality of thermoelectric components is electrically connected to the first parallel connection part and each of the plurality of thermoelectric components is separated from one another. The first serial connection part is configured for being electrically connected to other electrical components. The plurality of thermoelectric components is electrically connected to the second electrode and located between the first parallel connection part and the second electrode.

    Integrated combustion device power saving system

    公开(公告)号:US10317070B2

    公开(公告)日:2019-06-11

    申请号:US15295087

    申请日:2016-10-17

    Abstract: An integrated combustion device power saving system includes: a hydrogen generation device, for generating a hydrogen-rich gas; a combustion device, for receiving the hydrogen-rich gas for combustion and generating heat energy and flue gas; a smoke distributing device, for distributing flue gas to the hydrogen generation device or atmosphere; a hydrogen-generation feed preheating device, for capturing waste heat of the flue gas from the smoke distributing device to preheat a hydrogen-generation feed to be used in the hydrogen generation device; and a power generating device, for receiving the flue gas from the hydrogen-generation feed preheating device while recycling waste heat of the flue gas to generate power to at least one of the hydrogen generation device or the combustion device.

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