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Controlling the flow of hydrogen and ammonia from a hydrogen generator during a breakthrough with hydrated copper (II) chloride expansion

机译:在水合氯化铜膨胀过程中控制氢发生器中氢和氨的流量

摘要

Gas flow is controlled to a feed gas consuming device depending on whether a contaminant gas is present. In one embodiment, hydrogen gas flow from a hydrogen gas generator to a hydrogen consuming device, such as a fuel cell, gas chromatograph or a flame ionization detector, is terminated when there is chemical contaminant breakthrough in the hydrogen gas flow. The apparatus relates to the use of a sensor for detecting a predetermined concentration of a chemical contaminant such as ammonia. In one embodiment the apparatus terminates the gas flow when a concentration of ammonia in the gas flow corresponds to a breakthrough (e.g., approximately in the range of 2.0% or greater). The apparatus prevents the ammonia-contaminated hydrogen from disabling such a hydrogen consuming device that would have otherwise received the contaminated gas flow. The apparatus terminates such a hydrogen contaminated gas flow by exposing a breakthrough detection material to the gas flow, wherein this material is substantially only reactive to concentrations of a predetermined contaminant (e.g., ammonia) for terminating the gas flow when such concentrations are indicative of a breakthrough of the contaminant. For instance, such a material may undergo a readily discernible change when in the presence of at least a predetermined concentration of the contaminant corresponding to a breakthrough. Such a discernible change in the breakthrough detection material may be, e.g., one or more of: a change in volume, density, opacity, color and/or electrical conductivity or potential. The 20 detection material may be used in series with other substances that chemically and physically capture impurities in the gas flow until the detection material reacts, stopping the flow of hydrogen to the hydrogen consuming device.
机译:取决于是否存在污染气体,控制向进料气体消耗装置的气流。在一实施例中,当氢气流中有化学污染物穿透时,终止从氢气发生器到氢气消耗装置的氢气流,所述氢气消耗装置例如是燃料电池,气相色谱仪或火焰离子化检测器。该设备涉及传感器用于检测预定浓度的化学污染物例如氨的用途。在一个实施例中,当气流中氨的浓度对应于突破(例如,大约在2.0%或更大的范围内)时,该设备终止气流。该设备防止了被氨污染的氢禁用这样的氢消耗装置,否则该氢消耗装置将已经接收了污染的气流。该设备通过将突破性检测材料暴露于气流中来终止这种被氢气污染的气流,其中,当这种浓度指示气体浓度达到一定浓度时,该材料基本上仅对预定污染物(例如氨)的浓度起反应,以终止气流。污染物的突破。例如,当存在至少预定浓度的对应于穿透的污染物时,这种材料可以容易地辨别出变化。突破检测材料的这种可辨别的变化可以是,例如,以下一项或多项:体积,密度,不透明度,颜色和/或电导率或电势的变化。 20种检测材料可以与化学和物理上捕获气流中杂质的其他物质串联使用,直到检测材料起反应,从而停止氢气流向耗氢装置的流动。

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