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改性磁性荔枝皮对水及果汁中砷的吸附效果及动力学分析

陈义伦 姚巧云 刘鲁强

农业工程学报2018,Vol.34Issue(1):267-272,6.
农业工程学报2018,Vol.34Issue(1):267-272,6.DOI:10.11975/j.issn.1002-6819.2018.01.036

改性磁性荔枝皮对水及果汁中砷的吸附效果及动力学分析

Adsorption effect of modified magnetic litchi peel for arsenic in water and fruit juice

陈义伦 1姚巧云 1刘鲁强2

作者信息

  • 1. 山东农业大学食品科学与工程学院,山东省高校食品加工技术与质量控制重点实验室,泰安 271018
  • 2. 天津市宝坻区市场和质量监督管理局,天津 301800
  • 折叠

摘要

Abstract

Natural plant by-product litchi peel was chosen as experimental material. Magnetic litchi peel, a kind of arsenic adsorption material, was prepared by co-precipitation technique, and inductively coupled plasma mass spectrometry was applied to measure arsenic content. Arsenic clearance rate was the judgment index. The adsorption effect and mechanism of magnetic litchi peel on trivalent arsenic and pentavalent arsenic were studied. The magnetic litchi peel and litchi peel were characterized by scanning electron microscopy and infrared spectroscopy. The results showed that the modified magnetic litchi peel surface contains powdery Fe3O4, some functional groups are increased, rough and loose structure makes the surface is more uneven, and the number of micropores is also increased. This structure is favorable for the adsorption. The clear rate of arsenic from magnetic litchi peel decreases with the increase of arsenic concentration. The clear rate of trivalent arsenic from magnetic litchi peel is 88% in aqueous solution with arsenic concentration of 0.20 mg/L. The clear rate of pentavalent arsenic from magnetic litchi peel is 90% in aqueous solution with arsenic concentration of 0.20 mg/L. The effect of magnetic litchi peel on the clear of arsenic is better because the loose and porous structure of the modified magnetic litchi peel increases the contact chance of arsenic ions and the adsorption site, and the adsorption rate is faster. After the magnetization of litchi peel, the active site is increased, and the adsorption activity of arsenic is enhanced. The clear rate of trivalent arsenic from magnetic litchi peel is 83% in apple juice with arsenic concentration of 0.20 mg/L. The clear rate of pentavalent arsenic from magnetic litchi peel is 93% in apple juice with arsenic concentration of 0.20 mg/L. The effect of pentavalent arsenic and trivalent arsenic adsorption in fruit juice is weaker than that in aqueous solution, due to the presence of organic matter and some ions such as phosphate ion in fruit juice, which are competitive for binding sites with pentavalent arsenic and trivalent arsenic. The correlation coefficient of Langmuir isotherm model of pentavalent arsenic and trivalent arsenic adsorption process is larger than that of Freundlich adsorption model. TheR2 value of isotherm model is more than 0.99, which means it can be described by Langmuir isotherm model. The pentavalent arsenic and trivalent arsenic from magnetic litchi peel are adsorbed on the monomolecular layer from the adsorption state. The adsorption kinetics of magnetic litchi peel on arsenic solution can be described by the pseudo second order adsorption kinetics model,R2 is higher than 0.99, and the theoretical and actual values approximate. In the process of the adsorption of trivalent arsenic and pentavalent arsenic by magnetic litchi peel, Gibbs free energy is less than zero, and the adsorption reaction is spontaneous. The Gibbs free energy of trivalent arsenic and pentavalent arsenic increases with temperature rising, and the adsorption process is easier to be carried out at low temperatures. In the process of the adsorption of trivalent arsenic and pentavalent arsenic by magnetic litchi peel, enthalpy change is less than zero, and the adsorption of 2 kinds of valence arsenic is exothermic reaction. The results can provide theoretical and data reference for the process of removing arsenic in fruit juice using modified litchi peel.

关键词

吸附/模型/动力学//等温线/磁性荔枝皮

Key words

adsorption/models/kinetics/arsenic/isotherm/magnetic litchi peel

分类

轻工纺织

引用本文复制引用

陈义伦,姚巧云,刘鲁强..改性磁性荔枝皮对水及果汁中砷的吸附效果及动力学分析[J].农业工程学报,2018,34(1):267-272,6.

基金项目

山东省科技发展计划项目(2014GSF120005) (2014GSF120005)

山东省(农业)重大应用技术创新项目(2130106) (农业)

山东省"双一流"奖补资金资助(SYT2017XTTD04) (SYT2017XTTD04)

农业工程学报

OA北大核心CSCDCSTPCD

1002-6819

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