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Original Articles

Innovative Strategies to Achieve Low Total Phosphorus Concentrations in High Water Flows

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Pages 409-441 | Published online: 05 Feb 2013

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Read on this site (5)

Rubina Altaf, Bo Sun, Huijie Lu, Heping Zhao & Dezhao Liu. (2023) Removal and recovery of phosphonates from wastewater via adsorption. Critical Reviews in Environmental Science and Technology 53:9, pages 1032-1058.
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Yuqian Jia, Shuhui Sun, Shu Wang, Xing Yan, Jieshu Qian & Bingcai Pan. (2023) Phosphorus in water: A review on the speciation analysis and species specific removal strategies. Critical Reviews in Environmental Science and Technology 53:4, pages 435-456.
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Kevin George Kelly Vargas & Zhiming Qi. (2019) P immobilizing materials for lake internal loading control: A review towards future developments. Critical Reviews in Environmental Science and Technology 49:6, pages 518-552.
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Suriyanarayanan Sarvajayakesavalu, Yonglong Lu, Paul. J. A. Withers, Paulo Sergio Pavinato, Gang Pan & Pisit Chareonsudjai. (2018) Phosphorus recovery: a need for an integrated approach. Ecosystem Health and Sustainability 4:2, pages 48-57.
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M. Perez-Ameneiro, X. Vecino, L. Vega, R. Devesa-Rey, J.M. Cruz & A.B. Moldes. (2014) Elimination of micronutrients from winery wastewater using entrapped grape marc in alginate beads. CyTA - Journal of Food 12:1, pages 73-79.
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Articles from other publishers (57)

Sainan Sun, Meng Qiao, Guanghua Huang, Junke Zhang, Bo Yang & Xu Zhao. (2024) An electrochlorination process integrating enhanced oxidation of phosphonate to orthophosphate and elimination: Verification of matrix chloridion-induced oxidation mechanism. Water Research 249, pages 120735.
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Chunlin Fan, Bing Li, Weiquan Li, Weiting Chen, Weizhao Yin, Ping Li & Jinhua Wu. (2023) Promoted iron corrosion and enhanced phosphate removal by micro-electric field driven zero-valent iron. Chemosphere 341, pages 140066.
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Justin M. Hutchison, Faten B. Hussein & Brooke K. Mayer. (2023) Evaluating Sustainable Development Pathways for Protein- and Peptide-Based Bioadsorbents for Phosphorus Recovery from Wastewater. Environmental Science & Technology 57:43, pages 16317-16326.
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C. Belloni, L. Korving, G.J. Witkamp, E. Brück, P. de Jager & A.I. Dugulan. (2023) FeOOH and (Fe,Zn)OOH hybrid anion exchange adsorbents for phosphate recovery: A determination of Fe-phases and adsorption–desorption mechanisms. Chemical Engineering Journal 473, pages 145287.
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Kendric Aaron Tee, Saeed Ahmed, Mohammad A. H. Badsha, Ka Chun James Wong & Irene M. C. Lo. (2023) Comprehensive review and future research directions on using various lanthanum-based adsorbents for selective phosphate removal. Clean Technologies and Environmental Policy 25:6, pages 1783-1805.
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C. Belloni, L. Korving, G.J. Witkamp, E. Brück, P. de Jager & A.I. Dugulan. (2023) FeOOH and (Fe,Zn)OOH hybrid anion exchange adsorbents for phosphate recovery: A determination of fe-phases and adsorption–desorption mechanisms. Chemical Engineering Journal, pages 144683.
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Hao Wang, Jiangyue Dai, Huilun Chen, Fei Wang, Yangchen Zhu, Jia Liu, Beihai Zhou & Rongfang Yuan. (2022) Adsorption of phosphate by Mg/Fe-doped wheat straw biochars optimized using response surface methodology: Mechanisms and application in domestic sewage. Environmental Engineering Research 28:2, pages 210602-0.
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Peng Cheng, Yu Liu, Lei Yang, Qinting Ren, Xue Wang, Yanbin Chi, Honglin Yuan, Shaobin Wang & Yong-Xiang Ren. (2023) Phosphate adsorption using calcium aluminate decahydrate to achieve low phosphate concentrations: Batch and fixed-bed column studies. Journal of Environmental Chemical Engineering 11:2, pages 109377.
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David Gómez-Carnota, José L. Barriada, Pilar Rodríguez-Barro, Manuel E. Sastre de Vicente & Roberto Herrero. (2023) Sustainable Low-Cost Phosphorus Recovery Using Nanostructured Materials with Reusability Potential. Nanomaterials 13:7, pages 1167.
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Xiuxiu Jia, Xue Zhao, Yingtang Zhou, Fan Li, Wen Liu, Yimin Huang, Hucai Zhang, Jinxing Ma & Guangzhi Hu. (2023) Tri-functional lanthanum-based biochar for efficient phosphorus recovery, bacterial inhibition, and soil fertility enhancement. Biochar 5:1.
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Xiaoxu Jing, Yungui Li, Yi Shen, Qingqing Li & Qile Fang. (2023) Constructing 3D flower-like LaFe bimetal oxides with abundant mesoporous and controllable active sites for high-efficient phosphorus removal: Synthesis, mechanism, and application. Science of The Total Environment 859, pages 160334.
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Dexin Fang, Liping Huang, Hong Xiao, Ganxue Wu, Zhenxing Zeng, Xiaojing Wang, Gang Yang, Fei Shen, Shihuai Deng & Fangying Ji. (2023) Layered double hydroxide membranes for advanced removal of phosphate from wastewater. Chemical Engineering Journal 451, pages 138600.
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Peng Cheng, Yu Liu, Lei Yang, Xue Wang, Yanbin Chi, Honglin Yuan, Shaobin Wang & Yong-Xiang Ren. (2022) Adsorption and recovery of phosphate from aqueous solution by katoite: Performance and mechanism. Colloids and Surfaces A: Physicochemical and Engineering Aspects 655, pages 130285.
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Xinfei Ge, Lijun Wang & Wenjun Zhang. (2022) Molecular-scale determination of facet- and adsorbent-dependent phosphate adsorption by metal-based adsorbents. Environmental Science: Nano 9:9, pages 3372-3384.
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Pingping Dong, Xiaoxu Jing, Yungui Li, Yi Shen, Qingqing Li & Qile Fang. (2022) “Twin Lotus Flower” Adsorbents Derived from LaFe Cyanometallate for High-Performance Phosphorus Removal. Separation and Purification Technology 291, pages 120924.
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Faten B. Hussein & Brooke K. Mayer. (2022) Fixed-bed column study of phosphate adsorption using immobilized phosphate-binding protein. Chemosphere 295, pages 133908.
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Kendric Aaron Tee, Mohammad A.H. Badsha, Musharib Khan, Ka Chun James Wong & Irene M.C. Lo. (2022) Lanthanum carbonate nanoparticles confined within anion exchange resin for phosphate removal from river water: Batch and fixed-bed column study. Process Safety and Environmental Protection 159, pages 640-651.
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Yanyang Zhang, Chao Shan, Jieshu Qian & Bingcai Pan. (2021) Scenario oriented strategies for phosphorus management by using environmental nanotechnology. Current Opinion in Chemical Engineering 34, pages 100720.
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Kaushik Venkiteshwaran, Erin Wells & Brooke K. Mayer. (2020) Immobilized phosphate‐binding protein can effectively discriminate against arsenate during phosphate adsorption and recovery. Water Environment Research 93:8, pages 1173-1178.
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Brooke K. Mayer. (2021) Editorial: Let's talk about P(ee). Water Environment Research 93:5, pages 656-657.
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Vahid Ghodsi, Siva R. Sarathy, John R. Walton, Ian Watson, Elsayed Elbeshbishy & Domenico Santoro. (2020) Enhancing sludge dewaterability and phosphate removal through a novel chemical dosing strategy using ferric chloride and hydrogen peroxide. Water Environment Research 93:2, pages 232-240.
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Nicholas B. Tooker, Ce Gao, Annalisa Onnis‐Hayden & April Z. Gu. (2020) Impact of oxidation processes on the composition and biodegradability of soluble organic nutrients in wastewater effluents. Water Environment Research 93:2, pages 217-231.
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Yanyan YANG, Yongguo LI, Xiaowen ZHU, Xiao DU, Xuli MA & Xiaogang HAO. (2021) Potential Induced Reversible Removal/Recovery of Phosphate Anions with High Selectivity Using an Electroactive NiCo-layered Double Oxide Film. Journal of Inorganic Materials 36:3, pages 292.
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Xin Zhao, Yanyang Zhang, Siyuan Pan, Xiaolin Zhang, Weiming Zhang & Bingcai Pan. (2021) Utilization of gel-type polystyrene host for immobilization of nano-sized hydrated zirconium oxides: A new strategy for enhanced phosphate removal. Chemosphere 263, pages 127938.
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Chenghui Ma, Xiaoting Zhang, Kang Wen, Rong Wang & Runping Han. (2021) Facile synthesis of polyethyleneimine@Fe3O4 loaded with zirconium for enhanced phosphate adsorption: Performance and adsorption mechanism. Korean Journal of Chemical Engineering 38:1, pages 135-143.
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Marlena Cristina Monea, Carsten Meyer, Heidrun Steinmetz, Harald Schönberger & Asya Drenkova-Tuhtan. (2020) Phosphorus recovery from sewage sludge – phosphorus leaching behavior from aluminum-containing tertiary and anaerobically digested sludge. Water Science and Technology 82:8, pages 1509-1522.
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Kaushik Venkiteshwaran, Erin Wells & Brooke K. Mayer. (2020) Kinetics, Affinity, Thermodynamics, and Selectivity of Phosphate Removal Using Immobilized Phosphate-Binding Proteins. Environmental Science & Technology 54:17, pages 10885-10894.
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Holly E. Gray, Tony Powell, Suyoung Choi, D. Scott Smith & Wayne J. Parker. (2020) Organic phosphorus removal using an integrated advanced oxidation-ultrafiltration process. Water Research 182, pages 115968.
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Claudia Santiviago Petzoldt, Juan Peralta Lezcano & Iván López Moreda. (2020) Removal of orthophosphate and dissolved organic phosphorus from synthetic wastewater in a combined struvite precipitation-adsorption system. Journal of Environmental Chemical Engineering 8:4, pages 103923.
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Faten B. Hussein, Kaushik Venkiteshwaran & Brooke K. Mayer. (2020) Cell surface-expression of the phosphate-binding protein PstS: System development, characterization, and evaluation for phosphorus removal and recovery. Journal of Environmental Sciences 92, pages 129-140.
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S. M. Ashekuzzaman, Marzena Kwapinska, J. J. Leahy, Karl Richards & Owen Fenton. (2019) Novel Use of Dairy Processing Sludge Derived Pyrogenic Char (DPS-PC) to Remove Phosphorus in Discharge Effluents. Waste and Biomass Valorization 11:4, pages 1453-1465.
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Yang Lei, Michel Saakes, Renata D. van der Weijden & Cees J.N. Buisman. (2020) Electrochemically mediated calcium phosphate precipitation from phosphonates: Implications on phosphorus recovery from non-orthophosphate. Water Research 169, pages 115206.
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Wen-Jing Xia, Lian-Zeng-Ji Xu, Lin-Qian Yu, Quan Zhang, Yi-Heng Zhao, Jin-Rui Xiong, Xiao-Yan Zhu, Nian-Si Fan, Bao-Cheng Huang & Ren-Cun Jin. (2020) Conversion of municipal wastewater-derived waste to an adsorbent for phosphorus recovery from secondary effluent. Science of The Total Environment 705, pages 135959.
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Baile Wu, Jun Wan, Yanyang Zhang, Bingcai Pan & Irene M. C. Lo. (2019) Selective Phosphate Removal from Water and Wastewater using Sorption: Process Fundamentals and Removal Mechanisms. Environmental Science & Technology 54:1, pages 50-66.
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Prashanth Suresh Kumar, Leon Korving, Mark C.M. van Loosdrecht & Geert-Jan Witkamp. (2019) Adsorption as a technology to achieve ultra-low concentrations of phosphate: Research gaps and economic analysis. Water Research X 4, pages 100029.
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Kaushik Venkiteshwaran, Nilisha Pokhrel, Faten Hussein, Edwin Antony & Brooke K. Mayer. (2018) Phosphate removal and recovery using immobilized phosphate binding proteins. Water Research X 1, pages 100003.
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Kaushik Venkiteshwaran, Patrick J. McNamara & Brooke K. Mayer. (2018) Meta-analysis of non-reactive phosphorus in water, wastewater, and sludge, and strategies to convert it for enhanced phosphorus removal and recovery. Science of The Total Environment 644, pages 661-674.
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Katrina A. Macintosh, Brooke K. Mayer, Richard W. McDowell, Stephen M. Powers, Lawrence A. Baker, Treavor H. Boyer & Bruce E. Rittmann. (2018) Managing Diffuse Phosphorus at the Source versus at the Sink. Environmental Science & Technology 52:21, pages 11995-12009.
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Hanlu Yan, Qiuwen Chen, Jinhua Liu, Yong Feng & Kaimin Shih. (2018) Phosphorus recovery through adsorption by layered double hydroxide nano-composites and transfer into a struvite-like fertilizer. Water Research 145, pages 721-730.
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Yi Luo, Han Li, Ya-Rong Huang, Tian-Lei Zhao, Qi-Zhi Yao, Sheng-Quan Fu & Gen-Tao Zhou. (2018) Bacterial mineralization of struvite using MgO as magnesium source and its potential for nutrient recovery. Chemical Engineering Journal 351, pages 195-202.
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Fengping Hu, Min Wang, Xiaoming Peng, Fengxian Qiu, Tao Zhang, Hongling Dai, Zhanmeng Liu & Zan Cao. (2018) High-efficient adsorption of phosphates from water by hierarchical CuAl/biomass carbon fiber layered double hydroxide. Colloids and Surfaces A: Physicochemical and Engineering Aspects 555, pages 314-323.
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S.M. Ashekuzzaman & Jia-Qian Jiang. (2017) Strategic phosphate removal/recovery by a re-usable Mg–Fe–Cl layered double hydroxide. Process Safety and Environmental Protection 107, pages 454-462.
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Yiran Tong, Patrick J. McNamara & Brooke K. Mayer. (2017) Fate and impacts of triclosan, sulfamethoxazole, and 17β-estradiol during nutrient recovery via ion exchange and struvite precipitation. Environmental Science: Water Research & Technology 3:6, pages 1109-1119.
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T. Al-Tahmazi & A.O. Babatunde. (2016) Mechanistic study of P retention by dewatered waterworks sludges. Environmental Technology & Innovation 6, pages 38-48.
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Feihu Li, Wenhao Wu, Renying Li & Xiaoru Fu. (2016) Adsorption of phosphate by acid-modified fly ash and palygorskite in aqueous solution: Experimental and modeling. Applied Clay Science 132-133, pages 343-352.
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Yu Yang, Wendy Ballent & Brooke K. Mayer. (2016) High-affinity phosphate-binding protein (PBP) for phosphorous recovery: proof of concept using recombinant Escherichia coli . FEMS Microbiology Letters 363:20, pages fnw240.
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Daniel E. Carey, Yu Yang, Patrick J. McNamara & Brooke K. Mayer. (2016) Recovery of agricultural nutrients from biorefineries. Bioresource Technology 215, pages 186-198.
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Yunsheng Jia, Huoyan Wang, Xuesong Zhao, Xiaowei Liu, Yiliu Wang, Qunlong Fan & Jianmin Zhou. (2016) Kinetics, isotherms and multiple mechanisms of the removal for phosphate by Cl-hydrocalumite. Applied Clay Science 129, pages 116-121.
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Brooke K. Mayer, Lawrence A. Baker, Treavor H. Boyer, Pay Drechsel, Mac Gifford, Munir A. Hanjra, Prathap Parameswaran, Jared Stoltzfus, Paul Westerhoff & Bruce E. Rittmann. (2016) Total Value of Phosphorus Recovery. Environmental Science & Technology 50:13, pages 6606-6620.
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Hugo R. Sindelar, Jacquline Lloyd, Mark T. Brown & Treavor H. Boyer. (2016) Transformation of dissolved organic phosphorus to phosphate using UV/H 2 O 2 . Environmental Progress & Sustainable Energy 35:3, pages 680-691.
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D. E. Carey, P. J. McNamara & D. H. Zitomer. (2015) Biochar from Pyrolysis of Biosolids for Nutrient Adsorption and Turfgrass Cultivation. Water Environment Research 87:12, pages 2098-2106.
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A. T. Williams, D. H. Zitomer & B. K. Mayer. (2015) Ion exchange-precipitation for nutrient recovery from dilute wastewater. Environmental Science: Water Research & Technology 1:6, pages 832-838.
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Manzoor Qadir, Javier Mateo-Sagasta, Blanca Jiménez, Christina Siebe, Jan Siemens & Munir A. Hanjra. 2015. Wastewater. Wastewater 55 72 .
S.M. Ashekuzzaman & Jia-Qian Jiang. (2014) Study on the sorption–desorption–regeneration performance of Ca-, Mg- and CaMg-based layered double hydroxides for removing phosphate from water. Chemical Engineering Journal 246, pages 97-105.
Crossref
Pingping Dong, Xiaoxu Jing, Yungui Li, Yi Shen, Qingqing Li & Qile Fang. (2022) “Twin Lotus Flower” Adsorbents Derived from Lafe Cyanometallate for High-Performance Phosphorus Removal. SSRN Electronic Journal.
Crossref
Faten Hussein & Brooke K. Mayer. (2021) Fixed-Bed Column Study of Phosphate Adsorption Using Immobilized Phosphate-Binding Proteins. SSRN Electronic Journal.
Crossref
Pingping Dong, Xiaoxu Jing, Yungui Li, Yi Shen, Qingqing Li & Qile Fang. (2021) "Twin Lotus Flower" Adsorbents Derived from Lafe Cyanometallate for High-Performance Phosphorus Removal. SSRN Electronic Journal.
Crossref

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