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A Highly Sensitive Flow Through H2 Gas Analyzer for Use in Nitrogen Fixation Studies

机译:高度灵敏的流通式氢气分析仪用于固氮研究

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摘要

Studies of H2 evolution by N2 fixing systems are frequently limited by an inability to accurately measure H2 gas concentrations of less than about 10 microliters per liter. In this study, a H2 gas analyzer is described which is able to accurately and reproducibly detect up to 100 times lower H2 concentrations than most thermal conductivity gas chromatographs or other conventional instruments used for the measurement of H2 gas. This high level of sensitivity (maximum of about 0.02 microliter per liter H2 per millivolt output) and the ability to continuously monitor H2 concentration directly in a flowing gas stream, makes this instrument well suited for use in an open gas exchange system.Since the sensor used in the instrument was also sensitive to other combustible gases, it was necessary to demonstrate that H2 was the only combustible gas produced by the N2 fixing system being studied. When an air stream was passed through a pot containing nodulated soybean (Glycine max L.) roots, gas chromatographic analysis of the effluent gas stream revealed that H2 was the only combustible gas present. These results were supported by other studies in which no combustible gases were detected in the effluent gas stream from soybean roots nodulated with USDA 110, a Rhizobium strain which displays active uptake hydrogenase activity.
机译:N2固定系统对H2逸出的研究通常受限于无法准确测量小于约10微升/升的H2气体浓度。在这项研究中,描述了一种H2气体分析仪,该分析仪能够准确,可重复地检测到比大多数热导率气相色谱仪或用于测量H2气体的其他常规仪器低100倍的H2浓度。如此高的灵敏度(每毫升H2最高输出约0.02微升/升H2)以及直接连续监测流动气流中H2浓度的能力,使得该仪器非常适合在开放式气体交换系统中使用。仪器中使用的气体对其他可燃气体也很敏感,因此有必要证明H2是所研究的N2固定系统产生的唯一可燃气体。当气流通过装有根瘤大豆根的锅时,流出气流的气相色谱分析表明,H2是唯一存在的可燃气体。这些研究结果得到了其他研究的支持,在这些研究中,在用USDA 110根瘤菌根瘤菌菌株大豆根部的废气流中未检测到可燃气体,该根瘤菌菌株具有活跃的吸收性加氢酶活性。

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