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使用纳米材料的工业喷涂工艺中的颗粒排放

Particles Emission from an Industrial Spray Coating Process Using Nano-Materials.

作者信息

Del Secco Benedetta, Trabucco Sara, Ravegnani Fabrizio, Koivisto Antti Joonas, Zanoni Ilaria, Blosi Magda, Ortelli Simona, Altin Marko, Bartolini Gianni, Costa Anna Luisa, Belosi Franco

机构信息

CNR-ISAC, Institute of Atmospheric Sciences and Climate-National Research Council of Italy, Via Gobetti, 101, 40129 Bologna, Italy.

Air Pollution Management APM, Mattilanmäki 38, 33610 Tampere, Finland.

出版信息

Nanomaterials (Basel). 2022 Jan 18;12(3):313. doi: 10.3390/nano12030313.

Abstract

Industrial spray coating processes are known to produce excellent coatings on large surfaces and are thus often used for in-line production. However, they could be one of the most critical sources of worker exposure to ultrafine particles (UFPs). A monitoring campaign at the Witek s.r.l. (Florence, Italy) was deployed to characterize the release of TiO NPs doped with nitrogen (TiO-N) and Ag capped with hydroxyethyl cellulose (AgHEC) during automatic industrial spray-coating of polymethyl methacrylate (PMMA) and polyester. Aerosol particles were characterized inside the spray chamber at near field (NF) and far field (FF) locations using on-line and off-line instruments. Results showed that TiO-N suspension produced higher particle number concentrations than AgHEC in the size range 0.3-1 µm (on average 1.9 10 p/cm and 2.5 10 p/cm, respectively) after background removing. At FF, especially at worst case scenario (4 nozzles, 800 mL/min flow rate) for TiO-N, the spray spikes were correlated with NF, with an observed time lag of 1 minute corresponding to a diffusion speed of 0.1 m/s. The averaged ratio between particles mass concentrations in the NF position and inside the spray chamber was 1.7% and 1.5% for TiO-N and for AgHEC suspensions, respectively. The released particles' number concentration of TiO-N in the size particles range 0.3-1 µm was comparable for both PMMA and polyester substrates, about 1.5 and 1.6 10 p/cm. In the size range 0.01-30 µm, the aerosol number concentration at NF for both suspensions was lower than the nano reference values (NRVs) of 16·10 p/cm.

摘要

工业喷涂工艺以能在大面积表面上形成优异涂层而闻名,因此常用于流水作业生产。然而,它们可能是工人接触超细颗粒(UFP)的最关键来源之一。在意大利佛罗伦萨的Witek s.r.l.公司开展了一项监测活动,以表征在聚甲基丙烯酸甲酯(PMMA)和聚酯的自动工业喷涂过程中,掺杂氮的TiO纳米颗粒(TiO-N)和用羟乙基纤维素包覆的银(AgHEC)的释放情况。使用在线和离线仪器在喷雾室内近场(NF)和远场(FF)位置对气溶胶颗粒进行了表征。结果表明,在去除背景后,TiO-N悬浮液在0.3-1微米尺寸范围内产生的颗粒数浓度高于AgHEC(平均分别为1.9×10⁶个/立方厘米和2.5×10⁵个/立方厘米)。在远场,特别是对于TiO-N的最坏情况场景(4个喷嘴,800毫升/分钟流速),喷雾尖峰与近场相关,观察到的时间滞后为1分钟,对应扩散速度为0.1米/秒。TiO-N和AgHEC悬浮液在近场位置与喷雾室内颗粒质量浓度的平均比值分别为1.7%和1.5%。对于PMMA和聚酯基材,尺寸范围在0.3-1微米的TiO-N释放颗粒数浓度相当,约为1.5×10⁶个/立方厘米和1.6×10⁶个/立方厘米。在0.01-30微米尺寸范围内,两种悬浮液在近场的气溶胶数浓度均低于16×10⁶个/立方厘米的纳米参考值(NRV)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a952/8838285/7e78eadd65b7/nanomaterials-12-00313-g001.jpg

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