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Influence of abrasive grit size/lead concentration on dust particle size when sanding lead based paint.

机译:当打磨铅基涂料时,磨料粒度/铅浓度对粉尘粒度的影响。

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摘要

This research was undertaken to understand the relationship between the coarseness of the sandpaper used to remove lead based paint from a metal (steel) surface, lead concentration in a paint formulation, and the mass median aerodynamic diameter (MMAD) of the aerosolized dust generated by the sanding process. This understanding is important because it will allow for a better estimate of the lead dose to workers, currently and retrospectively, involved in lead based paint (LBP) removal. The study design used sandpaper with six different abrasive grit coarsenesses (indicated by the abrasive grit number or AGN) representing the spectrum of commercially available abrasive sanding pads with two lead concentration formulations (7.3% and 23.3% lead by weight in the dry film). A minimum of ten independent trials (a five minute sanding period using one sanding pad) were conducted in each grit/lead paint concentration formula pairing. Ten 30 second samples were collected using a TSI Inc., Aerosol Particle Sizer (APS) model 3300 in each trial. A total of 1470 samples were collected for use in developing a model which predicts the MMAD of the aerosolized dust based on the abrasive grit coarseness and the lead concentration in the paint formula. The model was validated using additional data collected during the experimental portion but not used in developing the model. A two-way analysis of variance was used to compare the mean MMAD values across the abrasive grit coarseness and lead paint formula concentrations pairings. Student's t-tests were used to determine the significance of differences in the mean MMAD values. A linear regression model was developed to compare the change in the MMAD of the particle size distribution by the change in grit and the lead concentration in the paint formula. Results indicated a strong direct relationship between the mean MMAD of the aerosol dust and the grit particle size. The MMAD value was also directly related to the lead concentration in the paint. Results of this research indicated that finer grits produce a greater percentage of the dust particles with diameters less than 10 mum potentially posing a greater risk to workers.
机译:进行这项研究是为了了解用于从金属(钢)表面去除铅基油漆的砂纸的粗糙度,油漆配方中铅的浓度以及由雾化所产生的雾化粉尘的质量平均空气动力学直径(MMAD)之间的关系。打磨过程。这种理解很重要,因为它可以更好地估算当前和追溯性涉及去除铅基油漆(LBP)的工人的铅剂量。该研究设计使用的砂纸具有六种不同的磨料粗度(由磨料粒度或AGN表示),代表具有两种铅浓度配方(干膜中铅的重量百分比分别为7.3%和23.3%)的市售磨砂垫的光谱。在每个砂砾/含铅涂料浓度配方配对中,至少进行了十次独立试验(使用一个磨垫进行五分钟磨砂)。在每个试验中,使用TSI Inc.的3300型气溶胶颗粒粒度仪(APS)收集了十个30秒的样品。总共收集了1470个样品,用于开发一个模型,该模型根据磨料粒度和涂料配方中的铅浓度预测雾化粉尘的MMAD。使用在实验部分收集的但未用于开发模型的其他数据对模型进行了验证。使用方差的双向分析来比较磨料粗度和含铅油漆配方浓度对之间的平均MMAD值。使用学生t检验确定MMAD平均值差异的显着性。建立了线性回归模型,以比较粒度分布在MMAD中的变化,该变化是由粒度和涂料配方中的铅浓度变化引起的。结果表明,气溶胶粉尘的平均MMAD与砂粒粒径之间存在很强的直接关系。 MMAD值也与涂料中的铅浓度直接相关。这项研究的结果表明,细粉会产生更大百分比的直径小于10微米的粉尘颗粒,对工人构成更大的风险。

著录项

  • 作者

    Alexander, W. K.;

  • 作者单位

    The Johns Hopkins University.;

  • 授予单位 The Johns Hopkins University.;
  • 学科 Environmental Sciences.; Health Sciences Occupational Health and Safety.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 106 p.
  • 总页数 106
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境科学基础理论;职业性疾病预防;
  • 关键词

  • 入库时间 2022-08-17 11:43:31

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