Chair of Biotechnology and Molecular Biology, Opole University, Opole, Poland.
Bioelectrochemistry. 2012 Oct;87:65-70. doi: 10.1016/j.bioelechem.2011.12.007. Epub 2011 Dec 30.
Sorption of copper ions by the alga Spirogyra sp. was investigated to determine the influence of experimental conditions and the methods of sample preparation on the process. The experiments were carried out both under the static and the dynamic conditions. Kinetics and equilibrium parameters of the sorption were evaluated. In addition, the influence was studied of the algae preparation methods on the conductivity of demineralized water in which the algae samples were immersed. The static experiments showed that the sorption of Cu(2+) ions reached equilibrium in about 30 min, with approximately 90% of the ions adsorbed in the initial 15 min. The sorption capacity determined from the Langmuir isotherms appeared highly uncertain (SD=±0.027 mg/g dry mass or ±11%, for the live algae). Under static conditions, the slopes of the Langmuir isotherms depended on the ratio of the alga mass to the volume of solution. The conductometric measurements were proven to be a simple and fast way to evaluate the quality of algae used for the experiments.
采用静态和动态条件下的实验,研究了铜离子在水绵(Spirogyra sp.)上的吸附,以确定实验条件和样品制备方法对该过程的影响。评估了吸附的动力学和平衡参数。此外,还研究了藻类样品制备方法对浸泡在其中的去矿物质水中电导率的影响。静态实验表明,Cu(2+)离子的吸附在大约 30 分钟内达到平衡,约 90%的离子在前 15 分钟内被吸附。从 Langmuir 等温线确定的吸附容量似乎非常不确定(对于活藻,SD=±0.027mg/g 干质量或±11%)。在静态条件下,Langmuir 等温线的斜率取决于藻类质量与溶液体积的比例。电导率测量被证明是评估用于实验的藻类质量的一种简单快速的方法。