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铬(VI)和铬(III)物种在干燥的耳叶满江红生物质上的相关吸附机制研究。

Study of the involved sorption mechanisms of Cr(VI) and Cr(III) species onto dried Salvinia auriculata biomass.

作者信息

Módenes Aparecido Nivaldo, de Oliveira Ana Paula, Espinoza-Quiñones Fernando R, Trigueros Daniela Estelita Goes, Kroumov Alexander Dimitrov, Bergamasco Rosângela

机构信息

Postgraduate Program of Chemical Engineering, West Paraná State University, Rua da Faculdade 645, Jd. Santa Maria, 85903-000, Toledo, PR, Brazil.

Postgraduate Program of Chemical Engineering, Maringá State University, Av. Colombo 5790, 87020-900, Maringá, PR, Brazil.

出版信息

Chemosphere. 2017 Apr;172:373-383. doi: 10.1016/j.chemosphere.2017.01.038. Epub 2017 Jan 5.

Abstract

Removal of Cr(VI) species by dried biomass of the aquatic macrophyte Salvinia auriculata was studied in order to understand the involved sorption mechanisms. Kinetic tests were carried out under the conditions such as concentration range of Cr(VI) from 50 to 250 mg L and a temperature of 30 °C. Modification of the biosorbent by the presence of Cr(VI) species was assessed by analysis of its porosity, density and infrared molecular absorption spectrum. A series of experimental approaches involving directed chemical modifications on the biosorbent surface was performed. The main functional groups involved in the sorption mechanisms were identified. The gas sorption analyser was applied and proved that a strong chemical effect of Cr(VI) species on the surface took place, resulting in a leaching organic matter with an obvious and significant increase in the porosity parameters. The intra-particle diffusion model revealed different mass transfer zones into the adsorbent during Cr(VI) removal. New combined Langmuir and Dubinin-Radushkevich isotherm was the best to fit the equilibrium data of Cr(VI) species removal. Finally, Cr(VI) removal was mainly mediated by a redox process where Cr(III) species were formed.

摘要

为了解所涉及的吸附机制,研究了用耳叶满江红水生大型植物的干燥生物质去除六价铬(Cr(VI))的情况。在六价铬浓度范围为50至250 mg/L以及温度为30°C等条件下进行了动力学测试。通过分析其孔隙率、密度和红外分子吸收光谱来评估六价铬对生物吸附剂的改性。进行了一系列涉及对生物吸附剂表面进行定向化学改性的实验方法。确定了吸附机制中涉及的主要官能团。应用气体吸附分析仪证明,六价铬对表面有强烈的化学作用,导致浸出有机物,孔隙率参数明显且显著增加。颗粒内扩散模型揭示了在去除六价铬期间吸附剂内不同的传质区。新的朗缪尔和杜比宁-拉杜舍维奇组合等温线最适合六价铬去除的平衡数据。最后,六价铬的去除主要由形成三价铬(Cr(III))的氧化还原过程介导。

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