Apparatus for decomposing low concentration of volatile organic compounds by high flow

    公开(公告)号:US10245553B2

    公开(公告)日:2019-04-02

    申请号:US15224922

    申请日:2016-08-01

    Abstract: Disclosed is an apparatus for decomposing low-concentration volatile organic compounds, which includes: an adsorption unit configured to adsorb a volatile organic compound; a heated air supply unit configured to supply a heated air to the adsorption unit; an oxidation decomposing catalyst unit configured to decompose a volatile organic compound detached from the adsorption unit; and an ozone supply unit configured to supply an ozone to the oxidation decomposing catalyst unit. The apparatus may maximize an exchange cycle semi-permanently by adsorbing low-concentration VOC under a high-flow condition and then detaching VOC within a short time and also by recycling an adsorption filter. In addition, the apparatus may effectively decompose VOC substances detached by a low flow into carbon dioxide and water under a condition with most excellent oxidation decomposition efficiency by using an oxidation decomposing catalyst filter.

    METHOD FOR PRODUCING Cu2ZnSnS4-xSex (0 LESS THAN-EQUAL TO X LESS THAN-EQUAL TO 4) THIN FILM BY ONE STEP ELECTRODEPOSITION IN ELECTROLYTIC BATH CONTAINING IONIC LIQUID
    16.
    发明申请
    METHOD FOR PRODUCING Cu2ZnSnS4-xSex (0 LESS THAN-EQUAL TO X LESS THAN-EQUAL TO 4) THIN FILM BY ONE STEP ELECTRODEPOSITION IN ELECTROLYTIC BATH CONTAINING IONIC LIQUID 审中-公开
    用于生产Cu2ZnSnS4-xSex(0等于X不等于4)的方法通过一步电沉积在含有离子液体的电解浴中的薄膜

    公开(公告)号:US20150027896A1

    公开(公告)日:2015-01-29

    申请号:US13975743

    申请日:2013-08-26

    Abstract: A Cu2ZnSnS4-xSex (0≦x≦4) thin film solar cell is disclosed. The thin film solar cell includes a Cu2ZnSnS4-xSex (0≦x≦4) thin film as an absorber layer produced by forming a precursor film composed of Cu, Zn, Sn, and Se using an ionic liquid as a solvent through a constant current process and annealing the precursor film with sulfur. Also disclosed is a method for fabricating the thin film solar cell. The method uses a non-vacuum electrodeposition process that is appropriate for large-area mass production and is thus cost effective compared to a vacuum process. In addition, since the method uses an ionic liquid, the formation of by-products harmful to humans as a result of side reactions is suppressed. Furthermore, the method uses a one-step electrodeposition process, which enables the deposition of a maximum of four elements at one time, or a multi-step deposition process, and an annealing process.

    Abstract translation: 公开了一种Cu2ZnSnS4-xSex(0≦̸ x≦̸ 4)薄膜太阳能电池。 薄膜太阳能电池包括通过使用离子液体作为溶剂通过恒定电流形成由Cu,Zn,Sn和Se构成的前体膜制成的吸收层的Cu2ZnSnS4-xSex(0< nlE; x≦̸ 4)薄膜 用硫处理和退火前体膜。 还公开了一种制造薄膜太阳能电池的方法。 该方法使用适用于大面积批量生产的非真空电沉积工艺,因此与真空工艺相比是成本有效的。 此外,由于该方法使用离子液体,因此抑制由于副反应而对人体有害的副产物的形成。 此外,该方法使用一步电沉积工艺,其能够一次最多沉积四个元素,或多步沉积工艺和退火工艺。

    APPARATUS AND METHOD FOR CONTINUOUSLY MONITORING SUBAQUEOUS TARGET HARMFUL SUBSTANCES
    17.
    发明申请
    APPARATUS AND METHOD FOR CONTINUOUSLY MONITORING SUBAQUEOUS TARGET HARMFUL SUBSTANCES 审中-公开
    连续监测SUBAQUEOUS目标有害物质的装置和方法

    公开(公告)号:US20140342467A1

    公开(公告)日:2014-11-20

    申请号:US13946656

    申请日:2013-07-19

    Abstract: The present invention relates to an apparatus and method for continuously monitoring subaqueous target harmful substances. More particularly, it relates to an apparatus and method for continuously monitoring subaqueous target harmful substances by continuously measuring the concentration of the subaqueous target harmful substances. The present invention provides an apparatus and method for continuously monitoring subaqueous target harmful substances, which can continuously measure the concentration of subaqueous target harmful substances using a receptor that can selectively recognize the target harmful substances, a porous membrane fixed with the receptor, and a sensing unit that continuously measures the intensity of fluorescent signals of the target harmful substance reacting with the receptor, and can be utilized as various apparatuses and methods for continuously sensing various harmful substances necessary to continuously monitor for the management of the water quality.

    Abstract translation: 本发明涉及连续监测水中靶标有害物质的装置和方法。 更具体地,涉及通过连续测量水中靶标有害物质的浓度来连续监测水中靶标有害物质的装置和方法。 本发明提供一种用于连续监测水中靶标有害物质的装置和方法,其可以使用能够选择性地识别目标有害物质的受体,用受体固定的多孔膜,连续地测量水中靶标有害物质的浓度,以及感测 能够连续地测量与受体反应的目标有害物质的荧光信号的强度的单位,并且可以用作连续检测持续监测水质管理所需的各种有害物质的各种装置和方法。

    Method for preparing a carbon-supported, platinum-cobalt alloy, nanoparticle catalyst

    公开(公告)号:US10854886B2

    公开(公告)日:2020-12-01

    申请号:US16268856

    申请日:2019-02-06

    Abstract: A method for preparing a carbon-supported, platinum-cobalt alloy, nanoparticle catalyst includes mixing a solution containing, in combination, a platinum precursor, a transition metal precursor consisting of a transition metal that is cobalt, carbon, a stabilizer that is oleyl amine, and a reducing agent that is sodium borohydride to provide carbon-supported, platinum-cobalt alloy nanoparticles, and washing the carbon-supported, platinum-cobalt alloy, nanoparticles using ethanol and distilled water individually or in combination followed by drying at room temperature to obtain dried carbon-supported, platinum-cobalt alloy, nanoparticles; treating the dried carbon-supported, platinum-cobalt alloy, nanoparticles with an acetic acid solution having a concentration ranging from 1-16M to provide acetic acid-treated nanoparticles, and washing the acetic acid-treated nanoparticles using distilled water followed by drying at room temperature to obtain dried acetic acid-treated nanoparticles; and heat treating the dried acetic acid-treated nanoparticles at a temperature ranging from 600 to 1000° C. under a hydrogen-containing atmosphere.

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