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首页> 外文期刊>Water, Air, and Soil Pollution >Copper Ions Adsorption from Aqueous Medium Using the Biosorbent Sugarcane Bagasse In Natura and Chemically Modified
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Copper Ions Adsorption from Aqueous Medium Using the Biosorbent Sugarcane Bagasse In Natura and Chemically Modified

机译:使用Natura中的生物吸附剂甘蔗渣和化学改性剂从水介质中吸附铜离子

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This study evaluated the copper ion adsorption capacity of sugarcane bagasse in natura and chemically modified with citric acid and sodium hydroxide. Adsorption analyses in batch system were carried out in function of contact time with the adsorbent and adsorbate concentration. Flame atomic absorption spectrometry was used to determine the copper concentrations. Adsorption experimental data were fitted to Langmuir and Freundlich linear models, and the maximum adsorption capacity was estimated for copper ions in function of modifications. The chemical modifications were confirmed at 1,730 cm"1 peak in infrared spectra, referring to the carboxylate groups. The required time for the adsorption to reach equilibrium was 24 h and the kinetics follows the behavior described by the pseudo-second order equation. Besides, a significant improvement of the copper adsorption has been observed after the bagasse treatment, where the maximum adsorption capacity was 31.53 mg g ' for copper using modified bagasse with nitric acid according to Langmuir isotherm linear model. The high uptake of copper ions from aqueous medium verified by chemically modified sugarcane bagasse makes this material an attractive alternative for effluent treatment and avoids environmental contamination.
机译:这项研究评估了甘蔗渣在自然界中并用柠檬酸和氢氧化钠进行化学修饰的铜离子吸附能力。分批系统中的吸附分析是根据与吸附剂接触时间和吸附物浓度的函数进行的。火焰原子吸收光谱法用于测定铜浓度。将吸附实验数据拟合到Langmuir和Freundlich线性模型,并根据修饰函数估算了铜离子的最大吸附容量。在红外光谱中,相对于羧酸根基团,在1,730 cm“ 1的峰处确认了化学修饰。吸附达到平衡所需的时间为24 h,动力学遵循伪二级方程描述的行为。甘蔗渣处理后可观察到铜吸附的显着改善,根据Langmuir等温线模型,使用硝酸修饰的甘蔗渣对硝酸的最大吸附容量为31.53 mg g',证实了水介质中铜离子的高吸收通过化学修饰的甘蔗渣制成的这种材料使该材料成为污水处理的有吸引力的替代品,并且避免了环境污染。

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