Nandy Lucy, Dutcher Cari S
Department of Mechanical Engineering , University of Minnesota-Twin Cities , Minneapolis , Minnesota 55455 , United States.
J Phys Chem B. 2018 Apr 5;122(13):3480-3490. doi: 10.1021/acs.jpcb.7b10655. Epub 2018 Feb 7.
Water-soluble organic acids such as dicarboxylic acids are known to form a significant fraction of organic aerosol mass, yet the chemical composition and interactions between components in an organic acid-inorganic salt mixed particle remain unclear. In this study, phase behavior of different mixing ratios of the salt and organic acids, here 3-methyl glutaric acid and 3-methyl adipic acid, are investigated with respect to their water activity. A microfluidic pervaporation approach is used to study different phase transitions of internally mixed aqueous droplets. Single droplets of varied compositions are trapped and stored in microfluidic wells until dehydration, where both the water content and the solution volume of the droplet decrease slowly with time. The volume is calculated by imaging techniques and correlated with the initial known concentration of the solution to determine concentrations at each time interval. The phase transitions of the droplets with changing concentrations are also observed under an inverted microscope. This study will help determine the concentration at which a mixture droplet, mimicking organic and inorganic atmospheric aerosols, changes phase.
已知水溶性有机酸(如二元羧酸)在有机气溶胶质量中占很大一部分,但有机酸盐 - 无机盐混合颗粒中各成分之间的化学组成和相互作用仍不清楚。在本研究中,针对盐与有机酸(此处为3 - 甲基戊二酸和3 - 甲基己二酸)不同混合比例的相行为,研究了它们的水分活度。采用微流控渗透蒸发方法研究内部混合水滴的不同相变。将不同组成的单滴捕获并储存在微流控孔中直至脱水,在此过程中,液滴的含水量和溶液体积均随时间缓慢减少。通过成像技术计算体积,并将其与溶液的初始已知浓度相关联,以确定每个时间间隔的浓度。还在倒置显微镜下观察浓度变化时液滴的相变。本研究将有助于确定模拟有机和无机大气气溶胶的混合液滴发生相变的浓度。