Adsorption of phenols from olive oil waste waters on layered double hydroxide, hydroxyaluminium-iron-co-precipitate and hydroxyaluminium-iron-montmorillonite complex

被引:24
作者
De Martino, Antonio [1 ]
Iorio, Marianna [1 ]
Prenzler, Paul D. [2 ]
Ryan, Danielle [2 ]
Obied, Hassan K. [3 ,4 ]
Arienzo, Michele [5 ]
机构
[1] Univ Naples Federico II, Dipartimento Agr, I-80055 Portici, NA, Italy
[2] Charles Sturt Univ, Sch Agr & Wine Sci, Wagga Wagga, NSW, Australia
[3] Charles Sturt Univ, Sch Biomed Sci, Wagga Wagga, NSW, Australia
[4] Charles Sturt Univ, EH Graham Ctr Agr Innovat, Wagga Wagga, NSW, Australia
[5] DISTAR Dipartimento Sci Terra Ambiente & Risorse, I-80134 Naples, Italy
关键词
Olive mill wastewater; phenols; Adsorption; Layered double hydroxides; Phytoassay; MILL WASTE; ALUMINUM-IRON; SORPTION; HYDROTALCITE; REMOVAL; WASTEWATERS; ADSORBENTS; SURFACTANT; COMPONENTS; REDUCTION;
D O I
10.1016/j.clay.2013.01.014
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Olive mill waste water (OMWW) contains high concentrations of phenols that are responsible for the high toxicity of the effluent. A one step precipitation process of OMWW by cold methanol yielded a polymeric organic precipitate (polymerin) and a supematant (OMWW-S) rich in phenols, which were further concentrated in an ethyl acetate extract (OMWW-E). This extract was comparatively adsorbed on: i) a layered double hydroxide of magnesium and aluminium (LDH); ii) the LDH after calcination at 450 degrees C (LDH-450); iii) a hydroxyaluminium-iron-co-precipitate (HyAlFe); and iv) a hydroxy-aluminium-iron-montmorillonite complex (HyAlFe-Mt). Adsorption behaviour and kinetics of phenols with these materials were investigated. The Langmuir model better described adsorption (R-2 > 0.97) in comparison to the Freundlich model (R-2 > 0.89). Phenols were sorbed according to the following order: LDH-450 > LDH > HyAlFe > HyAlFe-Mt. Phenol adsorption on LDH matrices was strong, since desorption with simulated soil solution under dynamic conditions never exceeded 20%. Cyclic adsorption conducted with LDH-450 removed most phenols, -94% from OMVVW-E, consequently reducing its phytotoxicity. The study evidenced that calcined LDH represented an effective remediation process for OMWW. (C) 2013 Elsevier B.V. All rights reserved.
引用
收藏
页码:154 / 161
页数:8
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