Physicochemical Characterization of Simulated Welding Fume from a Spark Discharge System

火花放电系统模拟焊接烟尘的物理化学特性分析

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Abstract

This study introduces spark discharge system (SDS) as a way to simulate welding fumes. The SDS was developed using welding rods as electrodes with an optional coagulation chamber. The size, morphology, composition, and concentration of the fume produced and the concentration of ozone (O(3)) and nitrogen oxides (NO(X)) were characterized. The number median diameter (NMD) and total number concentration (TNC) of fresh fume particles were ranged 10-23 nm and 3.1×10(7)-6×10(7) particles/cm(3), respectively. For fresh fume particles, the total mass concentration (TMC) measured gravimetrically ranged 85-760 μg/m(3). The size distribution was stable over a period of 12 h. The NMD and TNC of aged fume particles were ranged 81-154 nm and 1.5×10(6)-2.7×10(6) particles/cm(3), respectively. The composition of the aged fume particles was dominated by Fe and O with an estimated stoichiometry between that of Fe(2)O(3) and Fe(3)O(4). Concentrations of O(3) and NO(X) were ranged 0.07-2.2 ppm and 1-20 ppm, respectively. These results indicate that the SDS is capable of producing stable fumes over a long-period that are similar to actual welding fumes. This system may be useful in toxicological studies and evaluation of instrumentation.

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