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首页> 外文期刊>Fresenius environmental bulletin >MECHANISM OF Ni(II) UPTAKE STUDIES BY EPR, FTIR AND XRF: BIOSORPTION CHARACTERISTICS IN BATCH AND DYNAMIC FLOW MODE
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MECHANISM OF Ni(II) UPTAKE STUDIES BY EPR, FTIR AND XRF: BIOSORPTION CHARACTERISTICS IN BATCH AND DYNAMIC FLOW MODE

机译:EPR,FTIR和XRF研究Ni(II)吸收机理:间歇和动态流动模式下的生物吸附特征

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The present study aimed Ni(II) ion biosorption from synthetic wastewaters with the another pollutant matter (waste pomace of Rose damascena, WPORD) which are abundant, rather inexpensive and high metal binding capacity. Batch sorption kinetic experiments were performed in order to investigate adsorbent and adsorbat dose, solution pH, agitating speed and temperature. Adsorption equilibrium was reached within 60 min. The maximum Ni(II) adsorption was obtained at pH 4.0. The equilibrium data fit well the Langmuir isotherm. The monolayer adsorption capacities of WPORD at 60°C was found to be 22.37 mg g-1. The adsorption mechanism was examined by the FTIR, SEM, EPR and XRF techniques. The EPR and activation energy studies shows that Ni(II) adsorption on WPORD is of a physical nature and diffusion-controlled processes. The applicability of sorbent system was investigated in a continuous mode. Column studies were performed under different biosorbent dosage. The proposed sorbent system in dynamic flow-treatment mode was successfully used to remove the nickel ions from wastewater.
机译:本研究的目的是从合成废水中吸附Ni(II)离子,该废水具有另一种污染物质(玫瑰花大马士革玫瑰果渣,WPORD),该物质含量丰富,价格便宜且具有较高的金属结合能力。为了研究吸附剂和吸附剂的剂量,溶液的pH,搅拌速度和温度,进行了批量吸附动力学实验。 60分钟内达到吸附平衡。在pH 4.0下获得最大的Ni(II)吸附。平衡数据很好地拟合了朗缪尔等温线。发现WPORD在60℃下的单层吸附容量为22.37mg g-1。通过FTIR,SEM,EPR和XRF技术检查了吸附机理。 EPR和活化能研究表明,WPORD上的Ni(II)吸附具有物理性质且受扩散控制。以连续模式研究吸附剂系统的适用性。在不同的生物吸附剂剂量下进行柱研究。所提出的动态流动处理吸附剂系统已成功用于去除废水中的镍离子。

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