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The removal of toxic heavy metals from aqueous solutions by algal extracellular polysaccharides

机译:藻类细胞外多糖去除水溶液中的有毒重金属

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摘要

This study investigated the possible use of algal extracellular polysaccharide as a biosorbent for removal of heavy metals (copper and lead) from aqueous solutions as a means of bioremediation for metal containing effluents. This biopolymer has good biosorbent properties and a potential to provide a cost effective, selective and efficient purification system. A variety of environmental conditions induce the production of extracellular polysaccharides in algae. The production of exopolysaccharides by Dunaliella cultures was induced by nitrogen deficient conditions. A high ratio of carbon to nitrogen source considerably enhanced the polysaccharide release. Purified extracellular polysaccharide samples exhibited a monosaccharide composition consisting of the following sugars: xylose, arabinose, 2-0-methyl mannose, mannose, glucose and galactose. The relative abundance (%) of these sugars were calculated relative to xylose. The major sugar constituent was 2-0-methyl mannose, which was present at approximately 160% relative to xylose. The percentage relative abundance of other sugars was as follows: 18.8; 86.8; 85.3 and 22.3% for arabinose; mannose; glucose and galactose respectively. The identity of the various constituents were confirmed by mass spectrometry. The ability of Dunaliella exopolysaccharides to accumulate metals was investigated. The following parameters were studied because they affect metal uptake: solution pH, biomass concentration, temperature, time and metal concentration. The uptake of both copper and lead were pH dependent. However, metal uptake was not significantly affected by temperature. Kinetic studies showed that Dunaliella extracellular polysaccharides exhibit good bioremediation properties. Metal uptake was rapid. In addition, the exopolysaccharide has good metal binding capacity with an uptake capacity for lead of 80 mg/g from a solution containing initial lead concentration of approximately 40 mg/l. Competition studies revealed that the presence of a second metal in solution inhibits uptake of the other metal compared to uptake in single metal solution of that particular metal. The presence of lead inhibited the uptake of copper from approximately 65% in single metal solution to 10% in binary metal solution. The presence of copper also inhibited lead uptake, though not to the same extent. Higher concentrations of lead could not completely prevent removal of copper from solution and visa versa. The same was true for lead which could not be displaced by a four-fold concentration of copper. Instead, a certain percentage of copper was always removed showing that lead did not compete with copper for these binding sites. In conclusion it appears that, copper and lead bind to different sites on Dunaliella exopolysaccharides and that they exhibit selective or preferential removal of lead.
机译:这项研究调查了藻类细胞外多糖作为生物吸附剂从水溶液中去除重金属(铜和铅)的可能性,作为生物修复含金属废水的手段。这种生物聚合物具有良好的生物吸附性能,并有潜力提供具有成本效益,选择性和高效的纯化系统。多种环境条件诱导藻类中细胞外多糖的产生。氮缺乏条件诱导了杜氏藻培养物中胞外多糖的产生。碳与氮源的高比例大大提高了多糖的释放。纯化的细胞外多糖样品表现出由以下糖组成的单糖组成:木糖,阿拉伯糖,2-0-甲基甘露糖,甘露糖,葡萄糖和半乳糖。计算这些糖相对于木糖的相对丰度(%)。主要的糖成分是2-0-甲基甘露糖,其相对于木糖的含量约为160%。其他糖类的相对丰度百分比如下:18.8; 86.8;阿拉伯糖为85.3和22.3%;甘露糖葡萄糖和半乳糖。通过质谱法确认了各种成分的身份。研究了杜氏杜氏藻胞外多糖积累金属的能力。研究了以下参数,因为它们会影响金属吸收:溶液的pH值,生物质浓度,温度,时间和金属浓度。铜和铅的吸收均与pH有关。但是,金属吸收不受温度的显着影响。动力学研究表明杜氏藻细胞外多糖具有良好的生物修复性能。金属吸收迅速。另外,胞外多糖具有良好的金属结合能力,并且从初始铅浓度约为40 mg / l的溶液中对铅的吸收能力为80 mg / g。竞争研究表明,与在特定金属的单金属溶液中吸收相比,溶液中第二种金属的存在会抑制另一种金属的吸收。铅的存在抑制了铜的吸收,从单金属溶液中的大约65%到二元金属溶液中的10%。铜的存在也抑制了铅的吸收,尽管程度不同。较高的铅浓度不能完全阻止溶液中铜的去除,反之亦然。对于不能被四倍浓度的铜取代的铅也是如此。取而代之的是,一定比例的铜总是被去除,这表明铅不与铜竞争这些结合位点。总之,看来铜和铅结合在杜氏藻外多糖上的不同位点,并且它们表现出对铅的选择性或优先去除。

著录项

  • 作者

    Selepe Mamaropeng Marcus;

  • 作者单位
  • 年度 1999
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  • 原文格式 PDF
  • 正文语种 English
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