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首页> 外文期刊>Environmental Science and Pollution Research >Development of bark-based magnetic iron oxide particle (BMIOP), a bio-adsorbent for removal of arsenic (III) from water
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Development of bark-based magnetic iron oxide particle (BMIOP), a bio-adsorbent for removal of arsenic (III) from water

机译:基于树皮的磁性氧化铁颗粒(BMIOP),一种生物吸附剂,用于从水中除去砷(III)的生物吸附剂

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Novel low-cost bark-based magnetic iron oxide particles (BMIOPs) were synthesized and investigated for the removal of As(III) in drinking water. The synthesized BMIOP had a saturation magnetization value of 38.62?emug_(?1)which was found to be enough for the magnetic separation of exhausted BMIOP after As(III) adsorption. Parameters like agitation speed, adsorbent dosage, contact time, pH, temperature, and initial concentration were thoroughly investigated. Langmuir, Freundlich, and Dubinin–Radushkevich isotherms were used for the modeling of experiments and observed a maximum adsorption (19.61?mg?g_(?1)) of As(III) by Langmuir isotherm. Kinetics of As(III) sorption were well correlated with the coefficients in pseudo-first-order than the pseudo-second-order rate equation. Thermodynamic parameter investigation revealed that As(III) sorption process is endothermic, feasible, and spontaneous. BMIOP emerged as less expensive adsorbent for the abatement of arsenic ion from the drinking water. BMIOP showed 13.58?mg?g_(?1)adsorption capacity when As(V) alone is present, while it is 9.43 and 7.04?mg?g_(?1)for As(V) and As(III), respectively, when present together in the water. Graphical Abstract ?.
机译:合成新型低成本树皮的磁性氧化铁颗粒(BMIOPS),并研究以去除饮用水中的(III)。合成的BMIOP具有38.62Ω的饱和磁化强度值为38.62Ω·(α1),其被发现足以以在(III)吸附之后的排出的BMIOP磁分离。彻底研究了搅拌速度,吸附剂剂量,接触时间,pH,温度和初始浓度等参数。朗缪尔,Freundlich吸附,和杜比宁-Radushkevich等温线被用于实验的建模和通过Langmuir等温观察为(III)的最大吸附(19.61?毫克?克_(θ1))。作为(III)吸附的动力学与比伪二阶速率方程的伪第一阶的系数相比很好地相关。热力学参数调查显示,如(iii)吸附过程是吸热的,可行和自发的。 BMIOP作为从饮用水中削减砷离子的较低昂贵的吸附剂。 BMIOP显示为(v)单独的13.58Ω·克(α1)吸附容量,而作为(v)和作为(iii)分别为9.43和7.04Ωmg?g _(α1)在水中存在。图形概要 ?。

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