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首页> 外文期刊>The Korean journal of chemical engineering >Biosorption of Cu(Ⅱ) from aqueous solution onto immobilized Ficus religiosa branch powder in a fixed bed column: Breakthrough curves and mathematical modeling
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Biosorption of Cu(Ⅱ) from aqueous solution onto immobilized Ficus religiosa branch powder in a fixed bed column: Breakthrough curves and mathematical modeling

机译:固定床固定化固定榕树分支粉上水溶液中Cu(Ⅱ)的生物吸附:突破曲线和数学模型

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摘要

We investigated the adsorption potential of powdered branches from Ficus religiosa, an abundantly available plant, for the removal of Cu(II) from aqueous solution via column studies. Biomass was used as silica immobilized form and characterized using available techniques, including Fourier transformed infrared spectroscopy (FTIR) and scanning electron microscope (SEM). Breakthrough curve approach was used to explain removal capacity of biomass in a continuous flow mode, using different operating parameters like bed height (5-30 cm), inlet metal concentration (100-300mg/L) and pH (3-5) of the solution, at a fixed flow rate of 2mL/min. Biosorption of Cu(II) favored with increased service time (breakthrough and exhaust time) of the column with an increase in pH of inlet solution. Maximum biosorption capacity (17.5mg/g) for Cu(II) was achieved at 5 cm bed height, pH 5 and 300 mg/L influent Cu(II) concentration. Findings suggested that Ficus religiosa branch powder takes less service time and thus triggers fast removal of metal ions. Bed depth service time (BDST), Thomas and Yoon-Nelson models were effectively applied to the breakthrough data. The study indicated that the immobilized powdered branches could be used for the effective removal of Cu(II) ions in a continuous flow mode.
机译:我们通过柱研究研究了榕树(一种丰富的植物)对粉末状分支的吸附潜能,以从水溶液中去除Cu(II)。生物质被用作固定化二氧化硅的形式,并使用现有技术进行表征,包括傅立叶变换红外光谱(FTIR)和扫描电子显微镜(SEM)。突破曲线法用于解释连续流模式下生物质的去除能力,使用不同的操作参数,例如床高(5-30 cm),进料口金属浓度(100-300mg / L)和pH值(3-5)溶液,固定流速为2mL / min。 Cu(II)的生物吸附有利于增加色谱柱的使用时间(突破时间和排气时间),并增加入口溶液的pH值。在5 cm床高,pH 5和300 mg / L进水Cu(II)浓度下,获得了对Cu(II)的最大生物吸附能力(17.5mg / g)。研究结果表明,榕果无花果分支粉可减少使用时间,从而触发金属离子的快速去除。床深服务时间(BDST),Thomas和Yoon-Nelson模型被有效地应用于突破性数据。研究表明,固定的粉末状分支可以连续流动模式用于有效去除Cu(II)离子。

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