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首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Quantification of a Mixture of Insoluble Submicrometer Particles and Dissolved Solids in Water using Membrane Filtration and Aerosolization Method
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Quantification of a Mixture of Insoluble Submicrometer Particles and Dissolved Solids in Water using Membrane Filtration and Aerosolization Method

机译:膜过滤和雾化法定量分析水中不溶性亚微米级颗粒和溶解固体的混合物

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摘要

Microfiltration (MF) and ultrafiltration (UF) membrane filtration and separation of insoluble particles and dissolved solid in water, aerosolization, and subsequent sizing and counting of airborne particles were used to determine the number concentration of insoluble particles (#/ml) and mass concentration of dissolved solids (ppm) in water. By using a variety of solutions and their mixtures, we determined the penetration of insoluble particles and dissolved solids via the MF and UF membranes, as well as established a relationship between particle quantity in water and air. Both sub-500 nm insoluble particles and most dissolved solids passed through the MF membrane, while only dissolved solids passed through the UF membrane, enabling separation of waterborne insoluble particles and dissolved solids. Accordingly, we estimated the submicrometer particle number concentration and dissolved species mass concentrations via the proposed technique with 15% and 16% accuracy, respectively. Further, we examined the effects of mixing insoluble particles and dissolved solids with aerosolized particles by using a mixture of silica particles (insoluble particles) and artificial sea-water (25,000 ppm) containing various dissolved ions. Afterward, we applied the proposed technique to quantify insoluble particles and dissolved solids in seawater. Concentrations of insoluble particles in MF membrane-filtrated seawater sampled from the cities of Pohang, Taean and Yeosu in Korea were 1.16 x 10~(12), 5.45 x 10~(11), and 4.82 x 10~(11) #/ml, respectively; mass concentrations of dissolved solids were 24362, 23358, and 24640 ppm, respectively, concurring closely with values measured by the Total Dissolved Solids (TDS) meter. Our quantification technique will be useful in monitoring both insoluble submicrometer particles and dissolved solids to examine water quality and primary marine aerosol formation in seawater more effectively.
机译:使用微滤(MF)和超滤(UF)膜过滤以及分离不溶性颗粒和水中溶解的固体,进行雾化以及随后对空气中的颗粒进行定尺寸和计数以确定不溶性颗粒的数量浓度(#/ ml)和质量浓度在水中的溶解固体(ppm)。通过使用各种溶液及其混合物,我们确定了不溶性颗粒和溶解的固体通过MF和UF膜的渗透率,并建立了水和空气中颗粒数量之间的关系。 500 nm以下的不溶颗粒和大多数溶解的固体都通过MF膜,而只有溶解的固体通过UF膜,从而可以分离出水性不溶颗粒和溶解的固体。因此,通过所提出的技术,我们分别以15%和16%的准确度估算了亚微米颗粒数浓度和溶解物质质量浓度。此外,我们通过使用二氧化硅颗粒(不溶性颗粒)和包含各种溶解离子的人造海水(25,000 ppm)的混合物,研究了将不溶性颗粒和溶解性固体与雾化颗粒混合的效果。之后,我们将提出的技术应用于量化海水中的不溶性颗粒和溶解性固体。从韩国浦项市,泰安市和丽水市的MF膜滤过海水中不溶性颗粒物的浓度分别为1.16 x 10〜(12),5.45 x 10〜(11)和4.82 x 10〜(11)#/ ml , 分别;溶解固体的质量浓度分别为24362、23358和24640 ppm,与通过总溶解固体(TDS)仪测量的值非常一致。我们的定量技术将可用于监测不溶性亚微米级颗粒和溶解性固体,从而更有效地检查海水中的水质和主要海洋气溶胶形成。

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