La-Al modified Fe3O4 adsorbent for adsorption performance and mechanism of low P concentration in water

被引:1
|
作者
Zhang, Guangming [1 ]
He, Hui [1 ]
Liu, Shiqi [1 ]
Du, Zhangping [1 ]
Lv, Longyi [1 ]
Sun, Li [1 ]
Zhang, Jie [1 ]
Liang, Jinsong [1 ]
机构
[1] Hebei Univ Technol, Sch Energy & Environm Engn, Tianjin 300401, Peoples R China
关键词
Low-concentration phosphate; Adsorption performance; Water treatment; La-2-Al@Fe3O4; EFFICIENT PHOSPHATE REMOVAL; AQUEOUS-SOLUTION; PHOSPHORUS REMOVAL; ACTIVATED CARBON; ALUMINUM-OXIDE; LANTHANUM; IRON; NANOPARTICLES; RECOVERY; COMPOSITES;
D O I
10.1016/j.jwpe.2024.106344
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Adsorbents of LaAl hydroxide (oxygen) species have been widely used for removal of phosphate (P) from water, but fewer studies were conducted on the removal of low P concentration. This study firstly fabricated a new composite material of LaAl modified Fe3O4 by co-precipitation method applied for removal of low P concentration in water. Results showed that the optimal adsorbent performance was at a La/Al molar ratio of 2:1 and an optimum dosage of 0.1 g/L. P removal was >99 % with a low initial P concentration (2 mg/L), and the residual P was only 0.02 mg/L. La-2-Al@Fe3O4 adsorbent was an irregular magnetic particle with a large specific surface area of 101.35 m(2)/g. Adsorption process primarily involved chemisorption and formation of multiple adsorption layers. The maximum adsorption capacity was 71.75 mg/g when the initial P concentration was 50 mg/L. Meanwhile, it showed good adsorption performance at pH 4.0-9.0, exhibited notable selectivity for P despite competing ions such as Cl-, HCO3-, SO42-, and NO3-, and was influenced by coexisting citric acid and humic acid. Also, La-2-Al@Fe3O4 showed good reproducibility and maintained 85.6 % of the original adsorption capacity after five adsorption and desorption cycles. Additionally, P concentration could be reduced to below 0.02 mg/L in actual water, and La-2-Al@Fe3O4 was friendly to the water environment based on the toxicity analysis of Chlorella vulgaris. The adsorption mechanism of P by La-2-Al@Fe3O4 mainly involved electrostatic adsorption and ligand exchange. This novel adsorbent shows great potential for application in low P concentration water treatment.
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页数:11
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