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首页> 外文期刊>Chemical engineering journal >Surface modifications of Sargassum muticum algal biomass for mercury removal: A physicochemical study in batch and continuous flow conditions
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Surface modifications of Sargassum muticum algal biomass for mercury removal: A physicochemical study in batch and continuous flow conditions

机译:鼠尾藻藻生物质的表面改性以去除汞:间歇和连续流动条件下的物理化学研究

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摘要

Mercury elimination onto brown alga Sargassum muticum has been studied in order to enhance process performance and to go further in the analyses of the combined sorption-reduction mechanism that is taking place. Several chemical treatments of the natural biomass have improved material stability and diminished weight losses, as it was confirmed through TOC analyses. Fast kinetics and high mercury removal capacities (0.9 mmol g~(-1)) were found with native and treated material. Competition with dyes has shown that mercury uptake is not affected for these organic compounds in solution; in addition, high metal and dye elimination percentages were obtained simultaneously in mercury/Methylene Blue mixtures. Column experiments have confirmed that mercury interaction with biomass is a complex mechanism where nearly 70% of the metal is reduced and 30% is adsorbed onto material surface.
机译:为了提高工艺性能并进一步分析正在发生的结合吸附-还原机理,已经研究了褐藻中褐藻中的汞消除。如通过TOC分析所证实的,对天然生物质进行的几种化学处理提高了材料的稳定性并减少了重量损失。天然和处理过的材料具有快速动力学和高除汞能力(0.9 mmol g〜(-1))。与染料的竞争表明,溶液中这些有机化合物的汞吸收不会受到影响。此外,在汞/亚甲蓝混合物中同时获得了较高的金属和染料消除百分比。柱实验已证实汞与生物质的相互作用是一个复杂的机制,其中将近70%的金属被还原,而30%的金属被吸附到材料表面。

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