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首页> 外文期刊>Water Science and Technology >Effects of pH on chromate(VI) adsorption by Spirulina platensis biomass: Batch tests and FT-IR studies
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Effects of pH on chromate(VI) adsorption by Spirulina platensis biomass: Batch tests and FT-IR studies

机译:pH对螺旋藻生物质吸附铬酸根(VI)的影响:批处理试验和FT-IR研究

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Raw and methylated biomass of Spirulina platensis was employed in chromate batch adsorption tests at pH range 1-7. The acid conditions seemed to favour the removal of chromium (Cr) with a yield of 87.0 and 97.6% by using raw and methylated biomass, respectively. However, the chromate and total chromium determination, carried out in the same sample, evidenced that a fraction of the initial chromate present in solution was reduced to Cr(III). This was ascribed to the presence of reducing groups on the biomass surface, active in the acid medium. The data showed that the methylated biomass was able to operate an effective Cr(VI) removal only. In fact, the biomass treatment allowed a lowering of the amount of negative functional groups, making the biomass surface available to bind the anions. The real best efficiency of Cr(VI) removal (83.5%) was obtained by methylated biomass of S. platensis at pH about 7.0. The nature of the biomass/chromate interactions was investigated by Fourier transform infrared spectroscopy (FT-IR) analysis. The bands ascribing to the adsorbed Cr(VI) species were well evident in the spectra of the biomass after adsorption, confirming this experimental finding.
机译:螺旋藻的原始和甲基化生物量用于pH范围为1-7的铬酸盐批量吸附测试中。酸性条件似乎有利于通过使用原始生物质和甲基化生物质分别去除铬(Cr),产率分别为87.0和97.6%。但是,在同一样品中进行的铬酸盐和总铬的测定表明,溶液中存在的一部分初始铬酸盐被还原为Cr(III)。这归因于在酸性介质中具有活性的生物质表面上存在还原基。数据显示,甲基化的生物质仅能有效去除Cr(VI)。实际上,生物质处理降低了负官能团的数量,使生物质表面可用于结合阴离子。通过在约7.0的pH值条件下,钝化链霉菌的生物量甲基化,可获得Cr(VI)去除的真正最佳效率(83.5%)。通过傅立叶变换红外光谱(FT-IR)分析研究了生物质/铬酸盐相互作用的性质。吸附后的生物质能谱图中很明显地表明了吸附Cr(VI)的谱带,从而证实了这一实验发现。

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