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生物和大气系统中冰核的参数化。

Parameterizations for ice nucleation in biological and atmospheric systems.

机构信息

Department of Chemistry, Bielefeld University, Bielefeld, Germany.

出版信息

Phys Chem Chem Phys. 2009 Dec 14;11(46):10839-50. doi: 10.1039/b914289d. Epub 2009 Sep 30.

Abstract

Ice nucleation is an important process in numerous environmental systems such as atmospheric aerosol droplets or biological tissues. Here we analyze two widely used approaches for describing homogeneous ice nucleation in aqueous solutions with respect to their applicability to heterogeneous ice nucleation processes: the lambda approach and the water-activity-based approach. We study experimentally the heterogeneous ice nucleation behaviour of mineral dust particles and biological ice nuclei (Snomax; Pseudomonas syringae) in aqueous solutions as a function of solute concentration for various solutes (sulfuric acid, ammonium sulfate, glucose, and poly(ethylene glycol) with two different molar masses of 400 and 6000 g mol(-1)). We show that the ice nucleation temperature and the corresponding lambda values depend on both the type of ice nucleus and the type of solute, while the water-activity-based approach depends only on the type of ice nucleus when the solution water activity is known. Finally, we employ both approaches to the study of ice nucleation in biological systems such as the supercooling point of living larvae and insects. We show that the behaviour of freeze tolerant and freeze avoiding species can be described using the two approaches and we discuss how the analysis can be used to interpret experimental results of the freezing behaviour of living species.

摘要

成冰核化作用在很多环境系统中都非常重要,如大气气溶胶液滴或生物组织。在此,我们针对两种广泛应用于描述水溶液均相成冰核化作用的方法,分析了它们在异质成冰核化过程中的适用性:λ方法和水活度基础方法。我们实验研究了矿物粉尘颗粒和生物冰核(Snomax;丁香假单胞菌)在水溶液中的非均相成冰核化行为,研究了不同溶质(硫酸、硫酸铵、葡萄糖和两种不同摩尔质量的聚乙二醇(400 和 6000 g mol(-1)))的浓度对其的影响。我们表明,冰核化温度和相应的 λ 值取决于冰核类型和溶质类型,而水活度基础方法在已知溶液水活度时仅取决于冰核类型。最后,我们将这两种方法应用于研究生物系统中的成冰核化作用,如活体幼虫和昆虫的过冷点。我们表明,抗冻和避冻物种的行为可以用这两种方法来描述,并讨论了如何分析来解释活体物种冻结行为的实验结果。

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