Enhanced phosphate removal using nanostructured hydrated ferriczirconium binary oxide confined in a polymeric anion exchanger

被引:74
作者
Zhou, Kun [1 ]
Wu, Boran [1 ,2 ]
Su, Lianghu [3 ]
Xin, Wenshu [4 ]
Chai, Xiaoli [1 ]
机构
[1] Tongji Univ, Coll Environm Sci & Engn, State Key Lab Pollut Control & Resource Reuse, 1239 Siping Rd, Shanghai 200092, Peoples R China
[2] Colorado Sch Mines, Dept Civil & Environm Engn, 1500 Illinois St, Golden, CO 80401 USA
[3] Nanjing Inst Environm Sci, Minist Environm Protect, 8 Jiangwangmiao St, Nanjing 210042, Jiangsu, Peoples R China
[4] Jinan Municipal Engn Design & Res Inst Grp Co Ltd, Jinan 250101, Shandong, Peoples R China
关键词
Phosphate; Adsorption; Hydrated ferric oxide; Hydrated zirconium oxide; WASTE-WATER; AQUEOUS-SOLUTION; ADSORPTION MECHANISM; SELECTIVE REMOVAL; IRON-OXIDE; ARSENITE REMOVAL; ACTIVATED CARBON; HYBRID SORBENT; RECOVERY; ADSORBENT;
D O I
10.1016/j.cej.2018.01.091
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Phosphate removal is an important measure required to control eutrophication of water bodies as it inhibits excessive algal growth. Currently available phosphate removal methods have various limitations and function poorly under wide pH ranges. This study successfully prepared and characterized a novel nanocomposite adsorbent, nHFZO@I402, which has high capacity and specific affinity towards phosphate. The nHFZO@I402 constituted of nanostructured hydrated ferric oxide and hydrated zirconium oxide loaded on the surface and inside the pores of a polymeric anion exchanger. Batch experiments were conducted to investigate the effects of varied conditions on phosphate adsorption. The results demonstrated that nHFZO@I402 achieved high phosphate removal efficiencies over a wide pH range (4-11), which indicates higher adaptability towards varying environmental conditions. In addition, nHFZO@I402 exhibited enhanced phosphate adsorption capacity regardless of coexisting anions (chloride, nitrate, sulfate, and carbonate) at different concentrations. Kinetic analysis suggested that the adsorption process best-fitted with the pseudo-second-order kinetic model, suggesting chemical sorption mechanism. Furthermore, the underlying mechanism of phosphate adsorption by nHFZO@I402 was assessing through XPS analysis. Phosphate removal was effected by the replacement of hydroxyl groups by phosphate species and interaction between ammonium groups and phosphate. In general, these results indicated that nHFZO@I402 is a highly efficient adsorbent for phosphate removal with excellent adaptability to varying and undesirable environmental conditions.
引用
收藏
页码:640 / 647
页数:8
相关论文
共 43 条
  • [1] Enhanced phosphate removal by using La-Zr binary metal oxide nanoparticles confined in millimeter-sized anion exchanger
    Du, Yan
    Wang, Xiang
    Nie, Guangze
    Xu, Lingjun
    Hu, Yu
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2020, 580 : 234 - 244
  • [2] Removal and recovery of phosphate from municipal wastewaters using a polymeric anion exchanger bound with hydrated ferric oxide nanoparticles
    Martin, B. D.
    Parsons, S. A.
    Jefferson, B.
    WATER SCIENCE AND TECHNOLOGY, 2009, 60 (10) : 2637 - 2645
  • [3] Enhanced Phosphate Removal by Nanosized Hydrated La(III) Oxide Confined in Cross-linked Polystyrene Networks
    Zhang, Yanyang
    Pan, Bingcai
    Shan, Chao
    Gao, Xiang
    ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2016, 50 (03) : 1447 - 1454
  • [4] Enhanced Phosphate Removal by Hydrated Lanthanum Oxide-Modified Quaternized Polyaniline Nanocomposite: Performance and Mechanism
    Ji, Enhui
    Fang, Minglong
    Wu, Haixia
    SUSTAINABLE CHEMISTRY, 2024, 5 (04): : 258 - 272
  • [5] Performance analysis of hydrated Zr(IV) oxide nanoparticle-impregnated anion exchange resin for selective phosphate removal
    Trung Huu Bui
    Hong, Sung Pil
    Kim, Choonsoo
    Yoon, Jeyong
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2021, 586 : 741 - 747
  • [6] Removal of Phosphate by Using Copper-Loaded Poly(N-vinylimidazole) Hydrogels as Polymeric Ligand Exchanger
    Ozmen, Fulya
    Kavakli, Pinar Akkas
    Guven, Olgun
    JOURNAL OF APPLIED POLYMER SCIENCE, 2011, 119 (01) : 613 - 619
  • [7] Synthesis optimization of hybrid anion exchanger containing triethylamine functional groups and hydrated Fe(III) oxide nanoparticles for simultaneous nitrate and phosphate removal
    Wiriyathamcharoen, Surases
    Sarkar, Sudipta
    Jiemvarangkul, Pijit
    Trung Thanh Nguyen
    Klysubun, Wantana
    Padungthon, Surapol
    CHEMICAL ENGINEERING JOURNAL, 2020, 381
  • [8] Polymeric anion exchanger supported hydrated Zr(IV) oxide nanoparticles: A reusable hybrid sorbent for selective trace arsenic removal
    Padungthon, Surapol
    German, Michael
    Wiriyathamcharoen, Surases
    SenGupta, Arup K.
    REACTIVE & FUNCTIONAL POLYMERS, 2015, 93 : 84 - 94
  • [9] Removal of phosphate ions from polluted water using a hybrid anion exchanger
    Battah, Abdallah Said
    Shohaib, Ragaa El-Sheikh
    Abdelwahed, Mohammed Gammal
    Ezzeldin, Hesham Abdelhamid
    Ali, Mohamed E. A.
    DESALINATION AND WATER TREATMENT, 2020, 193 : 152 - 158
  • [10] Phosphate removal from aqueous solution using a hybrid impregnated polymeric sorbent containing hydrated ferric oxide (HFO)
    You, Xialei
    Guay, Diana
    Farran, Adriana
    Valderrama, Cesar
    Luis Cortina, Jose
    JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, 2016, 91 (03) : 693 - 704