Sustainable Advances in Phosphorus Removal and Recovery from Industrial Wastewater

Phosphorus, an essential nutrient and a finite resource, poses significant environmental challenges when discharged into water bodies from industrial wastewater, contributing to eutrophication and ecosystem degradation. Concurrently, its recovery offers a sustainable pathway to address resource scarcity. This review critically evaluates recent progress in phosphorus removal and recovery technologies, emphasizing five widely recognized approaches: (i) biological processes, such as aerobic granular sludge and enhanced biological phosphorus removal (EBPR); (ii) chemical precipitation using agents like lime and metal salts; (iii) struvite crystallization; (iv) electrocoagulation (EC) and (v) Bioelectrochemical Systems (BES) for phosphorus recovery. The assessment focuses on these methods’ efficiency, feasibility, and sustainability, highlighting their strengths and limitations. These strategies can foster environmentally sustainable wastewater treatment, mitigate eutrophication risks, and reduce dependence on finite phosphate resources.

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Publication Details

Journal
Nature Environment and Pollution Technology
Published
2026-09-28
DOI
https://doi.org/10.46488/nept.2026.v25i04.b4437
Primary Topic
Phosphorus and nutrient management
Type
article
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article

Sustainable Advances in Phosphorus Removal and Recovery from Industrial Wastewater

Mohd Imran Siddiqui, Hasan Rameez, Farrukh Basheer, Izharul Haq Farooqi et al.
Nature Environment and Pollution Technology
Phosphorus and nutrient management
article

Sustainable Advances in Phosphorus Removal and Recovery from Industrial Wastewater

Mohd Imran Siddiqui, Hasan Rameez, Farrukh Basheer, Izharul Haq Farooqi, Md Adim
article en

Abstract

Phosphorus, an essential nutrient and a finite resource, poses significant environmental challenges when discharged into water bodies from industrial wastewater, contributing to eutrophication and ecosystem degradation. Concurrently, its recovery offers a sustainable pathway to address resource scarcity. This review critically evaluates recent progress in phosphorus removal and recovery technologies, emphasizing five widely recognized approaches: (i) biological processes, such as aerobic granular sludge and enhanced biological phosphorus removal (EBPR); (ii) chemical precipitation using agents like lime and metal salts; (iii) struvite crystallization; (iv) electrocoagulation (EC) and (v) Bioelectrochemical Systems (BES) for phosphorus recovery. The assessment focuses on these methods’ efficiency, feasibility, and sustainability, highlighting their strengths and limitations. These strategies can foster environmentally sustainable wastewater treatment, mitigate eutrophication risks, and reduce dependence on finite phosphate resources.

Nature Environment and Pollution TechnologyVol. 25(4)
Aligarh Muslim University (IN)
Responsible consumption and production
Openalex Percentile: Top 12%
Phosphorus and nutrient management
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Sustainable Advances in Phosphorus Removal and Recovery from Industrial Wastewater — Mohd Imran Siddiqui, Hasan Rameez, et al. · Nature Environment and Pollution Technology (2026) | TGRS Research Map | TGRS