Hellerich Lucas A, Nikolaidis Nikolaos P
Environmental Engineering Program, University of Connecticut, Storrs, CT 06269-2037, USA.
Water Res. 2005 Aug;39(13):2851-68. doi: 10.1016/j.watres.2005.05.003.
Laboratory experiments were conducted to characterize and quantify the capacity and kinetics of the combined effects of natural attenuation processes, such as adsorption, reduction, and precipitation, for hexavalent chromium [Cr(VI)] in a variable geochemical (i.e. fraction of organic carbon [foc], redox) environment of glaciated soils. Equilibrium attenuation terms: linear sorption (K(d)), estimated capacity, and non-linear Langmuir (K(L), Q) sorption parameters; varied over several orders of magnitude. The pseudo-first-order rate of disappearance of Cr(VI) from aqueous:soil slurries ranged from approximately 10(-5) to approximately 10(-1)/min. An operationally defined kinetic attenuation term, attenuation capacity (AC), describing the quantity of Cr(VI) disappearing from the slurries, ranged from 1.1 to approximately 12 microg Cr(VI)/g soil/7 days. The linear K(d)'s and estimated attenuation capacities were indirectly and directly related to increasing soil pH and foc, respectively. The AC values decreased and increased as a function of increasing soil pH and foc, respectively. The parameters determined in this work were used to evaluate the kinetics, capacity, and stability of chromium attenuation in the sub-wetland saturated soils in Hellerich (2004. A field, laboratory, and modeling study of natural attenuation processes affecting the fate and transport of hexavalent chromium in a redox variable groundwater environment. Ph.D. Dissertation, Department of Civil and Environmental Engineering, University of Connecticut-Storrs) using a statistical simulation framework.
开展了实验室实验,以表征和量化自然衰减过程(如吸附、还原和沉淀)对冰川土壤可变地球化学环境(即有机碳含量[foc]、氧化还原)中六价铬[Cr(VI)]的联合作用的能力和动力学。平衡衰减项:线性吸附(K(d))、估计容量和非线性朗缪尔(K(L)、Q)吸附参数;在几个数量级范围内变化。Cr(VI)从水:土壤浆液中消失的准一级速率范围约为10(-5)至约10(-1)/分钟。一个操作定义的动力学衰减项,衰减容量(AC),描述了从浆液中消失的Cr(VI)的量,范围为1.1至约12微克Cr(VI)/克土壤/7天。线性K(d)和估计的衰减容量分别与土壤pH值和foc的增加间接和直接相关。AC值分别随着土壤pH值和foc的增加而降低和增加。本研究确定的参数用于使用统计模拟框架评估赫勒里希(2004年。影响六价铬在氧化还原可变地下水环境中归宿和迁移的自然衰减过程的现场、实验室和建模研究。博士论文,康涅狄格大学斯托尔斯分校土木与环境工程系)亚湿地饱和土壤中铬衰减的动力学、容量和稳定性。