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Biosorption of copper by biomass of extremophilic algae

机译:极端藻类生物量对铜的生物吸附

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摘要

Copper and lead are among the most important chemical pollutants of the environment including hydrosphere. Interaction of these heavy metals with biomass of aquatic plant organisms including algae is an area of active research in ecological chemistry. We investigated the interaction of the biomass of unique extremophilic (thermophilic) algae Galdieria sulphuraria with these heavy metals in aquatic environment using stripping voltammetry. Biosorption of copper by the studied biomass from aquatic medium has been discovered; however, no biosorption of another heavy metal from aquatic environment with the biomass has been detected. The experiments with the mortmass of Galdieria sulphuraria have revealed no sorption of the heavy metals as measured by stripping voltammetry. The difference in the interaction of copper and lead with the algal biomass is important for deeper understanding of the biosorption phenomenon. The new data stimulated further interest to the concept of biogenic migration of chemical elements that was proposed by V.I. Vernadskii. The results contributed to the scientific basis for innovative biotechnology to decontaminate water.
机译:铜和铅是包括水圈在内的最重要的化学污染物。这些重金属与包括藻类在内的水生植物生物量的相互作用是生态化学研究的一个活跃领域。我们使用溶出伏安法研究了水生环境中独特的极端(嗜热)藻类Galdieria sulfuraria生物量与这些重金属的相互作用。已发现研究的生物质从水生介质对铜的生物吸附作用。然而,没有检测到生物质从水生环境中吸附另一种重金属。用脱硫伏安法的加尔迪利亚硫菌的抵押物进行的实验表明,没有重金属吸附。铜和铅与藻类生物质之间相互作用的差异对于深入理解生物吸附现象很重要。新数据激发了V.I.提出的化学元素生物成因迁移概念的进一步兴趣。韦尔纳斯基(Vernadskii)。结果为创新的生物技术净化水提供了科学依据。

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