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评价阳极氧化和电镀表面处理过程中的空气中总悬浮颗粒物和重金属。

Evaluation of airborne total suspended particulates and heavy metals in anodizing and electroplating surface treatment process.

机构信息

Institute of Health and Environment, Seoul National University, Seoul, South Korea.

Department of Environmental Health Sciences, Graduate School of Public Health, Seoul National University, Seoul, South Korea.

出版信息

Sci Rep. 2021 Nov 18;11(1):22537. doi: 10.1038/s41598-021-01577-9.

Abstract

This study is to evaluate exposure to harmful substances, such as particulate and heavy metals, by considering various factors, in anodizing and electroplating surface treatment process. Exposure evaluation studies on seven heavy metals (Cr, Zn, Ni, Pb, Cd, Al, and Ba) and total suspended particulates (TSP) were conducted. Heavy metals were analyzed using inductively coupled plasma mass spectrometry (ICP-MS). This study also checked the ventilation volume of the hood with a thermal anemometer. Measurement was conducted for 8 h and 8 days. The sample number, N, of the heavy metals and TSP was 107. Geometric mean (GM) of TSP during Cr plating process was 6.15(GSD, 3.35) mg/m. GM of Cr during Cr plating was 1.86(GSD, 6.65) mg/m. GM of TSP and heavy metals differences were statistically significant for each process and date variation. Average ventilation volume for all hoods ranged from 1.20 to 4.98 m/s. In the hood 30 cm from bath, ventilation was 0.1 times lower. Increasing ventilation volume of the hood was the most influential factor, followed by machine operation time and workload. The high concentration was due to low ventilation suction flow. We can improve health to reduce exposure by resolving the fundamental cause of risk occurrence.

摘要

本研究旨在评估有害物质(如颗粒物质和重金属)的暴露情况,同时考虑各种因素,如在阳极氧化和电镀表面处理过程中。对七种重金属(Cr、Zn、Ni、Pb、Cd、Al 和 Ba)和总悬浮颗粒物(TSP)进行了暴露评估研究。使用电感耦合等离子体质谱法(ICP-MS)分析重金属。本研究还使用热风速计检查了通风罩的通风量。测量时间为 8 小时和 8 天。重金属和 TSP 的样本数 N 为 107。Cr 电镀过程中 TSP 的几何平均值(GM)为 6.15(GSD,3.35)mg/m。Cr 电镀过程中 Cr 的 GM 为 1.86(GSD,6.65)mg/m。每个过程和日期变化的 TSP 和重金属的 GM 差异均具有统计学意义。所有通风罩的平均通风量范围为 1.20 至 4.98 m/s。在距浴槽 30 厘米的通风罩中,通风量低 0.1 倍。增加通风罩的通风量是最具影响力的因素,其次是机器操作时间和工作量。高浓度是由于通风抽吸流量低。通过解决风险发生的根本原因,可以改善健康状况,降低暴露风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3737/8602259/0b34aca67866/41598_2021_1577_Fig1_HTML.jpg

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