首页> 外文期刊>Journal of the air & waste management association >Investigation of adsorption characteristics of four toxic gases (nitric oxide, nitrogen dioxide, sulfur dioxide, and hydrogen chloride) on the inner surface of nickel-coated manganese steel cylinders and aluminum cylinders
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Investigation of adsorption characteristics of four toxic gases (nitric oxide, nitrogen dioxide, sulfur dioxide, and hydrogen chloride) on the inner surface of nickel-coated manganese steel cylinders and aluminum cylinders

机译:镀镍锰钢瓶和铝瓶内表面四种有毒气体(一氧化氮,二氧化氮,二氧化硫和氯化氢)的吸附特性研究

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To develop standard toxic gas mixtures, it is essential to identify adsorption characteristics of each toxic gas on the inner surface of a gas cylinder. Thus, this study quantified adsorbed amounts of the four toxic gases (nitric oxide [NO], nitrogen dioxide [NO2], sulfur dioxide [SO2], and hydrogen chloride [HCl]) on the inner surface of aluminum cylinders and nickel-coated manganese steel cylinders. After eluting adsorbed gases on the inside of cylinders with ultrapure water, a quantitative analysis was performed on an ion chromatograph. To evaluate the reaction characteristics of the toxic gases with cylinder materials, quantitative analyses of nickel (Ni), iron (Fe), and aluminum (Al) were also performed by inductively coupled plasma optical emission spectrometry (ICP-OES). It was found that the amounts of NO, NO2, and SO2 adsorbed on the inner surface of aluminum cylinders were less than 1.0% at the level of 100 mu mol/mol mixing ratio, whereas the signal for most heavy metal elements were below their respective detection limits. This study found that the amounts of HCl adsorbed on the inner surface of nickel-coated manganese steel cylinders were less than 5% at the level of 100 mu mol/mol mixing ratio, whereas Ni (86 mu mol) and Fe (28 mu mol) were detected in the same cylinders. It was revealed that the adsorption mainly took place via the reaction of HCl with inner surface material of nickel-coated manganese steel cylinders. On the other hand, in the case of aluminum cylinders, the amounts of the adsorption were determined to be less than 1% at the level of HCl 100 mu mol/mol mixing ratio, whereas most of Ni, Fe, and Al were detected at levels similar to their limits of detection. As a result, this study found that aluminum cylinders are more suitable for preparing HCl gas mixtures than nickel-coated manganese steel cylinders. Implications: To develop a standard toxic gas mixture, it is essential to understand the adsorption characteristics of each toxic gas inside a gas cylinder. It was found that the amounts of NO, NO2, and SO2 adsorbed inside aluminum cylinders were less than 1.0% at the level of 100 mu mol/mol mixing ratio. The amounts of HCl adsorbed inside nickel-coated manganese steel cylinders were less than 5% at the level of 100 mu mol/mol mixing ratio, whereas those inside aluminum cylinders were less than 1%, indicating that aluminum cylinders are more suitable for preparing HCl gas mixtures.
机译:为了开发标准的有毒气体混合物,必须确定每种有毒气体在气瓶内表面上的吸附特性。因此,这项研究量化了铝制圆筒和镀镍锰内表面上四种有毒气体(一氧化氮[NO],二氧化氮[NO2],二氧化硫[SO2]和氯化氢[HCl])的吸附量。钢瓶。用超纯水将钢瓶内的吸附气体洗脱后,在离子色谱仪上进行定量分析。为了评估有毒气体与钢瓶材料的反应特性,还通过电感耦合等离子体发射光谱法(ICP-OES)对镍(Ni),铁(Fe)和铝(Al)进行了定量分析。结果发现,在混合比为100μmol / mol的情况下,铝圆筒内表面吸附的NO,NO2和SO2的含量小于1.0%,而大多数重金属元素的信号均低于各自的信号。检测限。这项研究发现,在100 mol / mol的混合比水平下,镀镍锰钢圆筒内表面上的HCl吸附量小于5%,而Ni(86 mol)和Fe(28 mol) )在同一气缸中检测到。结果表明,吸附主要是通过HCl与镀镍锰钢瓶的内表面材料的反应而发生的。另一方面,在铝制圆柱体的情况下,在HCl浓度为100μmol / mol的水平下,吸附量被确定为小于1%,而大多数Ni,Fe和Al在水平与其检测极限相似。结果,该研究发现铝瓶比镀镍锰钢瓶更适合制备HCl气体混合物。含义:要开发标准的有毒气体混合物,必须了解气瓶内每种有毒气体的吸附特性。发现铝圆筒内吸附的NO,NO 2和SO 2的量在100μmol/ mol混合​​比的水平下小于1.0%。在混合比为100μmol / mol的水平下,镀镍锰钢瓶内部的HCl吸附量小于5%,而铝瓶内部的HCl吸附量小于1%,表明铝瓶更适合于制备HCl。混合气体。

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    Korea Res Inst Stand & Sci, Ctr Gas Anal, Daejeon, South Korea|Chungnam Natl Univ, Dept Environm Engn, Daejeon, South Korea;

    Korea Res Inst Stand & Sci, Ctr Gas Anal, Daejeon, South Korea;

    Korea Res Inst Stand & Sci, Ctr Gas Anal, Daejeon, South Korea;

    Chungnam Natl Univ, Dept Environm Engn, Daejeon, South Korea;

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  • 入库时间 2022-08-18 04:24:03

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