Klučáková Martina, Věžníková Kateřina
Materials Research Centre, Faculty of Chemistry, Brno University of Technology, Purkyňova 118/464, Brno 612 00, Czech Republic.
Molecules. 2016 Oct 27;21(11):1410. doi: 10.3390/molecules21111410.
The molecular organization of humic acids in different aqueous solutions was studied over a wide concentration range (0.01-10 g·dm). Solutions of humic acids were prepared in three different media: NaOH, NaCl, and NaOH neutralized by HCl after dissolution of the humic sample. Potentiometry, conductometry, densitometry, and high resolution ultrasound spectrometry were used in order to investigate conformational changes in the humic systems. The molecular organization of humic acids in the studied systems could be divided into three concentration ranges. The rearrangements were observed at concentrations of ~0.02 g·dm and ~1 g·dm. The first "switch-over point" was connected with changes in the hydration shells of humic particles resulting in changes in their elasticity. The compressibility of water in the hydration shells is less than the compressibility of bulk water. The transfer of hydration water into bulk water increased the total compressibility of the solution, reducing the ultrasonic velocity. The aggregation of humic particles and the formation of rigid structures in systems with concentrations higher than 1 g·dm was detected.
在较宽的浓度范围(0.01 - 10 g·dm)内研究了腐殖酸在不同水溶液中的分子组织。腐殖酸溶液在三种不同介质中制备:NaOH、NaCl以及腐殖样品溶解后用HCl中和的NaOH。为了研究腐殖体系中的构象变化,采用了电位滴定法、电导率测定法、密度测定法和高分辨率超声光谱法。所研究体系中腐殖酸的分子组织可分为三个浓度范围。在浓度约为0.02 g·dm和约1 g·dm时观察到了重排。第一个“转换点”与腐殖颗粒水化壳的变化有关,导致其弹性发生变化。水化壳中水的可压缩性小于本体水的可压缩性。水化水向本体水的转移增加了溶液的总可压缩性,降低了超声速度。在浓度高于1 g·dm的体系中检测到了腐殖颗粒的聚集和刚性结构的形成。