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Biosorptive Removal of Cadmium(II) and Copper(II) Using Microwave-Assisted Thiourea-Modified Sorghum bicolor Agrowaste

机译:使用微波辅助硫脲改性的高粱双子石(II)和铜(II)生物定位去除镉(II)和铜(II)Agrowaste

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Sorghum bicolor (S.B.) is used in this work for preparing chemically modified adsorbent for toxic metal ions, i.e., cadmium(II) and copper(II). Thiourea is selected for chemical modification of this plant waste by microwave solid fusion methodology, so that its chelating ability for metal ions can be enhanced in both acidic and basic conditions, in a cheaper and quicker way. Characterization was carried out by different physiochemical means using FT-IR, SEM, etc. An increase in pHpzc value was observed in TSB, which is confirmed by FT-IR analysis. The effect of biosorption process parameters was also studied and found that maximum removal of these toxic ions occurred in slightly acidic pH (5-6) conditions, following pseudo-second-order kinetic model. Boyd plots indicated that film dispersion mode was the rate-determining step. Langmuir model indicated that the maximum metal ion removal capacity of TSB was 17.241?mg/g and 15.151?mg/g for cadmium(II) and copper(II) ions. So, TSB can be used on a larger scale for toxic metal ion removal by Sorghum bicolor waste in a cleaner way.
机译:在该工作中使用高粱双色(S.B.),用于制备用于有毒金属离子的化学改性吸附剂,即镉(II)和铜(II)。选择硫脲通过微波固体融合方法选择该植物废物的化学改性,从而可以在酸性和基本条件下提高其金属离子的螯合能力,以便宜和更快的方式增强。表征通过使用FT-IR,SEM等进行不同的物理化学方法进行。在TSB中观察到PHPZC值的增加,该TSB通过FT-IR分析证实。还研究了生物吸附过程参数的影响,发现在伪二阶动力学模型之后,在微酸性pH(5-6)条件下,最大地去除这些毒性离子。 Boyd绘图表明,薄膜色散模式是速率确定步骤。 Langmuir模型表明,对于镉(II)和铜(II)离子,TSB的最大金属离子去除能力为17.241Ω·mg / g和15.151μmg/ g。因此,TSB可用于较大规模的毒性金属离子以清洁方式垃圾除去毒性金属离子。

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