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VOC emissions from nail salon products and their effective removal using affordable adsorbents and synthetic jets

机译:来自美甲沙龙产品的VOC排放及其使用实惠吸附剂和合成喷气机的有效拆卸

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摘要

Volatile organic compounds (VOCs) like acetone, ethyl and n-butyl acetate, toluene, and formaldehyde have been measured inside nail salons, where they are emitted from nail care products. Exposure to these compounds can have negative health impacts on both workers and costumers, as well as the environment. The objectives of this research were to characterize VOC emissions from typical nail care products and to investigate VOC removal by 3 low-cost adsorbent materials (coco coir, biochar, and activated carbon). The removal studies were performed using acetone as the model VOC in both chamber experiments and mathematical models. The chamber experiments were conducted under both passive and active flow conditions using synthetic jet actuators to determine the effect of local ventilation on the rate of removal. Mass-normalized adsorption rates were determined for acetone using nth-order rate equations. Adsorption rate models were then developed for all adsorbent materials under both flow conditions and used to estimate the effect of low-cost adsorbents in an actual nail salon. Activated carbon provided the best VOC removal compared to the other 2 adsorbent materials tested. The use of active flow with synthetic jets was also shown to enhance adsorption processes for both biochar and activated carbon, but not for coco coir. Model results predicted activated carbon with active flow enhancement could achieve an effective ventilation rate of nearly 300 m3 h 1 if 250 kg were placed in a 1400 m3 salon.
机译:在钉子沙龙内部测量丙酮,乙基和乙酸叔丁酯等挥发性有机化合物(VOC),如丙酮,甲酸乙酯,甲磺烯和甲醛,其中它们从钉护理产品中排出。暴露于这些化合物可以对工人和服装以及环境产生负面健康影响。该研究的目标是从典型的指甲护理产品表征VOC排放,并通过3个低成本吸附材料(Coco Coir,BioChOR和活性炭)进行VOC去除。在腔室实验和数学模型中使用丙酮作为模型VOC进行去除研究。使用合成射流致动器在无源和主动流动条件下进行腔室实验,以确定局部通气对去除速率的影响。使用N阶率方程测定丙酮的质量归一化吸附速率。然后在两个流动条件下为所有吸附材料开发吸附速率模型,用于估计低成本吸附剂在实际的钉子沙龙中的影响。与测试的其他2吸附材料相比,活性炭提供了最佳VOC去除。还显示使用具有合成射流的活性流动,增强Biochar和活性炭的吸附过程,但不适用于Coco CoIR。模型结果预计具有主动流量增强的活性炭可以实现近300m 3 H 1的有效通风率,如果将250kg置于1400 m3沙龙中,则达到近300m 3 H 1。

著录项

  • 来源
    《Building and Environment》 |2020年第1期|106499.1-106499.12|共12页
  • 作者单位

    Univ Colorado Dept Mech Engn 1111 Engn Dr UCB 427 Boulder CO 80309 USA;

    Univ Colorado Dept Phys 2000 Colorado Ave UCB 390 Boulder CO 80309 USA;

    Univ Colorado Dept Civil Environm & Architectural Engn 1111 Engn Dr UCB 428 Boulder CO 80309 USA;

    Univ Colorado Dept Civil Environm & Architectural Engn 1111 Engn Dr UCB 428 Boulder CO 80309 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Adsorption; Coco coir; Biochar; Passive removal; Active flow; Cosmetics;

    机译:吸附;Coco Coir;生物炭;被动移除;活跃流动;化妆品;
  • 入库时间 2022-08-18 21:37:11

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