首页> 外文期刊>Journal of environmental monitoring: JEM >Welding fumes from stainless steel gas metal arc processes contain multiple manganese chemical species
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Welding fumes from stainless steel gas metal arc processes contain multiple manganese chemical species

机译:不锈钢气体保护电弧焊工艺产生的焊接烟气中含有多种锰化学物质

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摘要

Fumes from a group of gas metal arc welding (GMAW) processes used on stainless steel were generated using three different metal transfer modes and four different shield gases. The objective was to identify and measure manganese (Mn) species in the fumes, and identify processes that are minimal generators of Mn species. The robotic welding system was operated in short-circuit (SC) mode (Ar/CO_2 and He/Ar), axial spray (AXS) mode (Ar/O_2 and Ar/CO_2), and pulsed axial-spray (PAXS) mode (Ar/O_2). The fumes were analyzed for Mn by a sequential extraction process followed by inductively coupled plasma-atomic emission spectroscopy (ICP-AES) analysis, and by X-ray diffraction (XRD). Total elemental Mn, iron (Fe), chromium (Cr) and nickel (Ni) were separately measured after aqua regia digestion and ICP-AES analysis. Soluble Mn~(2+), Fe~(2+), Fe~(3+), and Ni ~(2+) in a simple biological buffer (phosphate-buffered saline) were determined at pH 7.2 and 5.0 after 2 h incubation at 37 °C by ion chromatography. Results indicate that Mn was present in soluble form, acid-soluble form, and acid-soluble form after reduction by hydroxylamine, which represents soluble Mn~0 and Mn~(2+) compounds, other Mn ~(2+) compounds, and (Mn~(3+) and Mn~(4+)) compounds, respectively. The dominant fraction was the acid-soluble Mn~(2+) fraction, but results varied with the process and shield gas. Soluble Mn mass percent in the fume ranged from 0.2 to 0.9%, acid-soluble Mn~(2+) compounds ranged from 2.6 to 9.3%, and acid plus reducing agent-soluble (Mn ~(3+) and Mn~(4+)) compounds ranged from 0.6 to 5.1%. Total Mn composition ranged from 7 to 15%. XRD results showed fumes had a crystalline content of 90-99% Fe_3O_4, and showed evidence of multiple Mn oxides, but overlaps and weak signals limited identification. Small amounts of the Mn~(2+) in the fume (<0.01 to ~1% or <0.1 to ~10 μg ml~(-1)) and Ni~(2+) (<0.01 to ~0.2% or <0.1 to ~2 μg ml~(-1)) ions were found in biological buffer media, but amounts were highly dependent on pH and the welding process. Mn generation rates for the fractions were tabulated, and the influence of ozone is discussed. The conclusions are that exposures to welding fumes include multiple Mn species, both soluble and insoluble, and that exposures to Mn species vary with specific processes and shield gases.
机译:使用三种不同的金属传输方式和四种不同的保护气体,产生了用于不锈钢的一组气体电弧焊(GMAW)工艺产生的烟气。目的是识别和测量烟气中的锰(Mn)种类,并确定最小的Mn种类产生者的过程。机器人焊接系统以短路(SC)模式(Ar / CO_2和He / Ar),轴向喷涂(AXS)模式(Ar / O_2和Ar / CO_2)和脉冲轴向喷涂(PAXS)模式( Ar / O_2)。通过依次萃取过程,电感耦合等离子体原子发射光谱法(ICP-AES)分析和X射线衍射(XRD)分析烟气中的Mn。王水消化和ICP-AES分析后分别测量总元素锰,铁(Fe),铬(Cr)和镍(Ni)。 2小时后在pH 7.2和5.0下测定简单生物缓冲液(磷酸盐缓冲液)中的Mn〜(2 +),Fe〜(2 +),Fe〜(3+)和Ni〜(2+)可溶性通过离子色谱法在37°C下孵育。结果表明,Mn被羟胺还原后以可溶形式,酸溶形式和酸溶形式存在,分别代表可溶性Mn〜0和Mn〜(2+)化合物,其他Mn〜(2+)化合物和(Mn〜(3+)和Mn〜(4+))化合物。占主导地位的部分是酸溶性Mn〜(2+)部分,但结果随工艺和保护气体而变化。烟气中Mn的质量百分比在0.2%至0.9%之间,酸溶性Mn〜(2+)化合物在2.6%至9.3%之间,酸加还原剂可溶(Mn〜(3+)和Mn〜(4 +))化合物的含量范围为0.6%至5.1%。 Mn的总含量为7-15%。 XRD结果表明,烟气中Fe_3O_4的结晶含量为90-99%,并显示出多种Mn氧化物的证据,但重叠和微弱的信号限制了鉴定。烟气中的少量Mn〜(2+)(<0.01至〜1%或<0.1至〜10μgml〜(-1))和Ni〜(2+)(<0.01至〜0.2%或<在生物缓冲介质中发现了0.1至〜2μgml〜(-1))离子,但是离子的含量高度依赖于pH值和焊接过程。列出了各部分的锰生成速率,并讨论了臭氧的影响。结论是,暴露于焊接烟雾中的Mn种类多,可溶和不溶,而且Mn种类的暴露随特定工艺和保护气体的不同而不同。

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