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首页> 外文期刊>Chemical engineering journal >Phosphorus adsorption onto green synthesized nano-bimetal ferrites: Equilibrium, kinetic and thermodynamic investigation
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Phosphorus adsorption onto green synthesized nano-bimetal ferrites: Equilibrium, kinetic and thermodynamic investigation

机译:绿色合成的纳米双金属铁氧体上的磷吸附:平衡,动力学和热力学研究

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摘要

Phosphorus (P) in natural aquatic environments is one of the most critical elements for causing eutrophi-cation. On the other hand, it is also an essential nutrient for organisms in broad ecosystems. Therefore, it has become an important issue in environmental and ecological sciences to remove and recover efficiently of P in various water bodies. This study investigates the feasibility of P removal/recovery using nano-bimetal ferrites (CuFe2O4), manufactured from industrial sludge. These new results reveal that a rapid P removal, from 9.9% to 99.9%, was observed when the solution pH decreased from 9.06 to 2.64. The maxima P adsorption capacity was found to be 13.5 mg g~(-1) at pH 2.64 (318 K), which is much higher than other available adsorbents. The observed negative changes in the standard free energy (AG ?-4.99,-5.47,-6.12,-7.21 kj mor~(-1) at 288, 298, 308, and 318 K, respectively) and the positive value of ΔH (1,92 kj mol~(-1))) demonstrate that the adsorption reaction is spontaneous and endothermic. Moreover, we observed also that the P adsorption increases with the increased of ionic strength from 0.001 to 1.0 N, suggesting important involvement of some inner-sphere mechanisms.
机译:天然水生环境中的磷(P)是引起富营养化的最关键元素之一。另一方面,它也是广泛生态系统中生物体的必需营养素。因此,有效去除和回收各种水体中的P已成为环境和生态科学中的重要问题。这项研究调查了使用工业污泥制造的纳米双金属铁氧体(CuFe2O4)去除/回收磷的可行性。这些新结果表明,当溶液的pH从9.06降至2.64时,磷的快速去除率从9.9%降至99.9%。在pH 2.64(318 K)下,最大P吸附容量为13.5 mg g〜(-1),远高于其他可用的吸附剂。观察到的标准自由能(分别为288、298、308和318 K时AGα-4.99,-5.47,-6.12,-7.21 kj mor〜(-1)的负变化)和正值ΔH( 1,92 kj mol〜(-1)))表明吸附反应是自发的并且是吸热的。此外,我们还观察到P吸附随着离子强度从0.001 N增加到1.0 N的增加而增加,表明某些内球机理的重要参与。

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