首页> 外文期刊>Journal of Environmental Science and Health. A >PORE STRUCTURE AND METAL ADSORPTION ABILITY OF CHITOSANS PREPARED FROM FISHERY WASTES
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PORE STRUCTURE AND METAL ADSORPTION ABILITY OF CHITOSANS PREPARED FROM FISHERY WASTES

机译:渔业废弃物制备的壳聚糖的孔结构和金属吸附能力

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The degree of deactylation, molar mass, and the yield of chitonsans prepared from four fishery wastes (shrimp shell, lobster shell, crab shel, and cuttlebone) under the same conditions were compared. The adsorption capacities and rates of Cu(II), Ni(II), and Cd(II) from water on chitosans were measured at deg C.It was shown that the equilibrium isotherms of Cu(II) could be fitted by the Langmuir equaiton and those of Ni(II) and Cd(II) by the Freundlich equation. The rates of adsorption, analyzed by a plot of amount of adsorption vs. the square root of time, indicated different controlling mechanisms. The differences in metal adsorption among the four types of chitosans could be generally interpreted by their different pore structures such as pore size distribution and pore diameter.
机译:比较了在相同条件下由四种渔业废弃物(虾壳,龙虾壳,蟹壳和乌贼骨)制得的脱乙酰基度,摩尔质量和壳聚糖的收率。室温下测定了壳聚糖对水中Cu(II),Ni(II)和Cd(II)的吸附能力和吸附速率,表明Langmuir方程可以拟合Cu(II)的平衡等温线Freundlich方程表示的是Ni(II)和Cd(II)的那些。通过将吸附量与时间的平方根作图来分析吸附速率,表明了不同的控制机制。四种类型的壳聚糖之间金属吸附的差异通常可以通过其不同的孔结构(例如孔径分布和孔径)来解释。

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