首页> 外文学位 >Cadmium biosorption and selectivity of Sargassum spp. and their alginates in relation to their alpha-L-guluronic acid content and conformation.
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Cadmium biosorption and selectivity of Sargassum spp. and their alginates in relation to their alpha-L-guluronic acid content and conformation.

机译:沼藻对镉的生物吸附和选择性。以及它们的藻酸盐与α-L-古洛糖醛酸含量和构象有关。

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摘要

A series of equilibrium cadmium-binding experiments with raw species of Sargassum was performed in order to extend the database on the biosorption performance of this brown algae. The results indicate that their maximum cadmium uptake ranges from approximately 0.7 to 1.0 mmol Cd/gram biomass. A classical method for the extraction of alginate from brown algae was modified and applied to Sargassum species under high-temperature alkaline conditions (80°C, 2.0% Na2CO3). It yields alginate samples of low viscosity suitable for chemical characterization by direct acquisition of well-resolved NMR spectra. This new method also allowed the identification of an acid-soluble fraction not previously isolated by traditional methods, yet capable of binding cadmium.; The 1H-NMR characterization of the alginates, extracted from Sargassum by the modified method, reveals a consistent and unusual enrichment in homopolymeric α-L-guluronic acid (G-blocks). These alginates display G-block diad frequency values (FGG) between 0.37 and 0.81. This translates into an enhanced selectivity for cadmium and calcium relative to monovalent ions such as sodium and the proton as well as smaller divalent ions such as magnesium. Results of competitive exchange experiments in the Cd-Ca-alginate system yield selectivity coefficients, K* CdCa, between 0.43 ± 0.10 and 1.32 ± 0.02 for a range of FGG, from 0.23 to 0.81. In contrast, much larger selectivity coefficients were obtained for the Mg-Ca-alginate (K*MgCa ≤ 18.0 ± 1.4) and Mg-Cd-alginate (K*MgCa ≤ 16.0 ± 0.9) systems with alginates extracted from Sargassum fluitans (FGG = 0.81) and Sargassum thunbergeii (F GG = 0.75). Selectivity studies with mixed-metal pair alginate systems, as opposed to the more common single metal methods, highlight the importance of the specific macromolecular conformation of the alginate polymer in determining metal binding behaviour in multiple-metal systems as well as the performance of Sargassum as an algal biosorbent. The unique composition of the alginates present in species of Sargassum and the resilience of the algae to degradation provide this bio-material with a distinct advantage over other brown algal species when considering its implementation for the strategic removal of toxic heavy metals from contaminated and industrial waste waters.
机译:进行了一系列 Sargassum 原始镉吸附平衡实验,以扩展该褐藻生物吸附性能的数据库。结果表明,它们的最大镉吸收量约为0.7至1.0 mmol Cd /克生物量。改进了从褐藻中提取藻酸盐的经典方法,并将其应用于高温碱性条件(80°C,2.0%Na 2 CO 3 )。通过直接采集良好解析的NMR谱图,可以得到适合于化学表征的低粘度藻酸盐样品。这种新方法还可以鉴定以前未通过传统方法分离出但仍能结合镉的酸溶级分。用改进方法从<斜体> Sargassum 中提取的藻酸盐的 1 H-NMR表征显示出一致且异常的富集α-L-古洛糖醛酸(G-嵌段) )。这些藻酸盐显示介于0.37和0.81之间的G块二元组频率值( F GG )。相对于诸如钠和质子的一价离子以及诸如镁的较小的二价离子,这转化为对镉和钙的增强的选择性。在Cd-Ca-海藻酸盐体系中竞争性交换实验的结果得出,对于范围,K * Cd Ca 的选择性系数在0.43±0.10和1.32±0.02之间> F GG ,从0.23到0.81。相反,对于Mg-Ca-藻酸盐(K * Mg Ca ≤18.0±1.4)和Mg-Cd-藻酸盐(K * < sub> Mg Ca ≤16.0±0.9)系统,其藻类从 Sargassum fluitans F GG = 0.81)和 Sargassum thunbergeii F GG = 0.75)。与更常见的单金属方法相反,使用混合金属对藻酸盐系统进行选择性研究,强调了藻酸盐聚合物的特定高分子构象对于确定多金属系统中金属结合行为以及<斜体的性能的重要性。 > Sargassum 作为藻类生物吸附剂。考虑到实施战略去除有毒物质时, Sargassum 物种中存在的藻酸盐的独特组成以及藻类对降解的抵抗力使该生物材料具有优于其他棕色藻类物种的明显优势。受污染和工业废水中的重金属。

著录项

  • 作者

    Davis, Thomas Andrew.;

  • 作者单位

    McGill University (Canada).;

  • 授予单位 McGill University (Canada).;
  • 学科 Biogeochemistry.; Environmental Sciences.; Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 p.121
  • 总页数 251
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物地球化学、气体地球化学;
  • 关键词

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