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16 pages, 1918 KB  
Article
Urban Wetlands as Reservoirs of Non-Native Turtles: Linking Confiscation Records and Field Observations in a Tropical Urban Environment
by Juan Sebastían Cárdona-Corredor, Andrés Felipe Arana-Aguilar and Alan Giraldo
Diversity 2026, 18(7), 401; https://doi.org/10.3390/d18070401 - 1 Jul 2026
Viewed by 595
Abstract
Colombia hosts 28 species of freshwater and terrestrial turtles, yet anthropogenic pressures such as illegal trafficking and urban expansion have intensified risks. In Cali, non-native turtles are frequently introduced into wetlands through pet abandonment and confiscations, creating novel assemblages in urban ecosystems. To [...] Read more.
Colombia hosts 28 species of freshwater and terrestrial turtles, yet anthropogenic pressures such as illegal trafficking and urban expansion have intensified risks. In Cali, non-native turtles are frequently introduced into wetlands through pet abandonment and confiscations, creating novel assemblages in urban ecosystems. To examine this issue, ecological surveys were conducted in three urban wetlands during December 2024, complemented by enforcement records from the Wildlife Rescue Center (WRC) spanning 2015–2023 and reports from environmental authorities. Turtles were captured manually using natural baits placed in floating containers or along shoreline areas to attract individuals, then identified morphologically, measured for standard morphometric parameters, and released at the site of capture. WRC records were reviewed to assess species composition and causes of admission. Field sampling yielded 109 individuals representing four species (Trachemys callirostris, Podocnemis unifilis, Kinosternon leucostomum, Rhinoclemmys melanosterna). WRC records documented 2751 individuals across 11 species, with five taxa accounting for over 96% of admissions. Both datasets revealed a predominance of Trachemys callirostris. Morphometric data indicated multiple size classes, suggesting demographic heterogeneity within the turtle populations inhabiting the sampled wetlands. The overlap between confiscation records and wetland observations suggests potential links between illegal trade and species presence in urban wetlands, while the predominance of voluntary surrenders reflect the influence of enforcement activity and pet abandonment. Collectively, these findings demonstrate how urban wetlands facilitate the persistence of non-native turtles, reshaping species composition and underscoring the urgency of integrated strategies that combine enforcement, habitat management, veterinary protocols, and citizen education to safeguard native biodiversity. Full article
(This article belongs to the Special Issue Freshwater Turtles in Anthropogenic Landscapes)
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13 pages, 1430 KB  
Article
Integration of Floating Constructed Wetlands and Microbial Fuel Cells for Sustainable Wastewater Treatment and Bioelectricity Generation
by Eduardo Guevara Hernández, Alba Jocelyne Aldabalde Hernández, Fernando Andrés Rojas Aguilar, Efraín Martínez Prior, Luis A. Godínez, Víctor A. Ramírez and Francisco J. Rodríguez-Valadez
Recycling 2026, 11(7), 112; https://doi.org/10.3390/recycling11070112 - 24 Jun 2026
Viewed by 377
Abstract
Floating wetlands have emerged as a sustainable alternative for improving water quality, and although some studies have investigated their performance, there is still much to be understood regarding their integration with energy-generating technologies. This study evaluated a combined system of floating wetlands and [...] Read more.
Floating wetlands have emerged as a sustainable alternative for improving water quality, and although some studies have investigated their performance, there is still much to be understood regarding their integration with energy-generating technologies. This study evaluated a combined system of floating wetlands and microbial fuel cells (MFCs) for treating real wastewater and generating bioelectricity. Experiments were conducted in batch mode to simulate application in natural water bodies, using real wastewater collected on different dates. As a result of the natural variability of the influent, initial chemical oxygen demand (COD) concentrations of 405 and 289 mg/L were observed. Performance was assessed in terms of organic matter and nitrogen removal, as well as voltage generation. COD removal efficiencies reached 50% and 69% for the higher and lower organic loads, respectively, indicating improved treatment at reduced concentrations. Maximum removals of 56% for ammoniacal nitrogen (NH3-N) and 40% for total nitrogen (TN) were achieved, reflecting moderate nutrient removal capacity. Voltage generation was sustained for approximately 21 days, confirming stable bioelectrochemical activity, and power output was found to depend on the organic load serving as substrate for electrogenic microorganisms. Overall, the system represents a viable approach for wastewater treatment with the added benefit of energy recovery, although its performance is influenced by influent characteristics and operation conditions. Full article
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21 pages, 5682 KB  
Article
Field-Scale Spatial Organization of Water Quality During Floating-Island Operation in a Eutrophic Urban Lake
by Nevena Čule, Aleksandar Lučić, Marija Nešić, Goran Češljar, Ilija Đorđević, Jelena Božović and Vladan Popović
Water 2026, 18(12), 1485; https://doi.org/10.3390/w18121485 - 16 Jun 2026
Viewed by 311
Abstract
Eutrophication remains a persistent water-quality problem in shallow lakes, where external inputs interact with internal loading and biogeochemical cycling. Although floating treatment wetlands (FTWs) are increasingly promoted as nature-based solutions for water remediation, their field-scale interpretation in hydrologically complex eutrophic lakes remains challenging. [...] Read more.
Eutrophication remains a persistent water-quality problem in shallow lakes, where external inputs interact with internal loading and biogeochemical cycling. Although floating treatment wetlands (FTWs) are increasingly promoted as nature-based solutions for water remediation, their field-scale interpretation in hydrologically complex eutrophic lakes remains challenging. This study examined the spatial organization of water quality during the operation of a floating-island system in a eutrophic urban lake affected by polluted tributary inflow. The study was not designed to quantify isolated FTW removal efficiency, but to evaluate spatial water quality organization during FTW operation under real-use field conditions. Water quality was monitored over two growing seasons across six functionally defined zones, and spatial and temporal patterns were analyzed using descriptive statistics and linear mixed-effects models. The results showed parameter-specific spatial structuring rather than a uniform treatment response. The clearest inlet-lake contrasts were observed for electrical conductivity (EC), suspended matter (SM), and nitrate nitrogen (NO3-N), whereas biochemical oxygen demand (BOD5), ammonium nitrogen (NH4-N), and total organic carbon (TOC) showed lower values at the inlet and higher values in downstream zones. Dissolved oxygen (DO), oxygen saturation (SO), chemical oxygen demand (COD), nitrite nitrogen (NO2-N), and orthophosphate phosphorus (PO4-P) showed moderate or non-robust zonal effects. These findings indicate that FTWs in shallow eutrophic lakes should be evaluated through functional zoning and parameter-specific interpretation rather than as isolated units with uniform removal responses. Full article
(This article belongs to the Section Water Quality and Contamination)
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20 pages, 2659 KB  
Review
Characterization of Constructed Wetlands: A Safe and Sustainable Solution for Water Resources Treatment—An Overview
by Patrícia Gomes, Marta Pinheiro and José Martins
Environments 2026, 13(4), 219; https://doi.org/10.3390/environments13040219 - 17 Apr 2026
Cited by 1 | Viewed by 1528
Abstract
Water scarcity and pollution from anthropogenic activities are major challenges, increasing the need for sustainable wastewater treatment solutions. Constructed wetlands mimic natural wetland ecosystems using macrophytes and substrates, representing a possible nature-based solution aligned with circular economy principles and the United Nations Sustainable [...] Read more.
Water scarcity and pollution from anthropogenic activities are major challenges, increasing the need for sustainable wastewater treatment solutions. Constructed wetlands mimic natural wetland ecosystems using macrophytes and substrates, representing a possible nature-based solution aligned with circular economy principles and the United Nations Sustainable Development Goals. So, this revision integrates recent literature, providing an overview of natural wetlands and examining the design and operation of constructed wetland systems. Also, incorporates a case study that focuses on a constructed wetland implemented at an eco-friendly dog shelter in Portugal—a unique example globally—demonstrating practical wastewater treatment and small-scale water reuse, and offering insights for sustainable management. Performance assessment based on previous work indicates that the system effectively reduces most water quality parameters to levels compliant with national and European irrigation standards. Removal efficiencies exceeded 97% for chemical oxygen demand, total suspended solids, and turbidity, while maintaining low energy consumption and minimal maintenance. Overall, constructed wetlands emerge as a sustainable alternative to conventional wastewater treatment systems; however, several challenges remain to be addressed. Future research should focus on improved aeration strategies, optimized substrate–macrophyte combinations, and long-term monitoring under climate variability, with floating wetlands offering promising opportunities to further enhance treatment efficiency. Full article
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33 pages, 4975 KB  
Article
Strategic Engineering Framework for Water Quality Resilience: Synergizing Passive Tidal Flushing with Active Ecological Interventions in Urban Canals
by Sunghoon Hong, Jin Young Choi, Kyung Tae Kim, Soonchul Kwon, Jeongho Kim and Hak Soo Lim
J. Mar. Sci. Eng. 2026, 14(8), 731; https://doi.org/10.3390/jmse14080731 - 15 Apr 2026
Cited by 1 | Viewed by 533
Abstract
Urban micro-tidal canals frequently suffer from severe hypoxia due to restricted hydrodynamic exchange and untreated discharges. Field monitoring during a 2022 mass fish mortality event at the Dongsam tidal canal revealed that during the ‘tidal window gap’—a hydraulic stagnation period required for passive [...] Read more.
Urban micro-tidal canals frequently suffer from severe hypoxia due to restricted hydrodynamic exchange and untreated discharges. Field monitoring during a 2022 mass fish mortality event at the Dongsam tidal canal revealed that during the ‘tidal window gap’—a hydraulic stagnation period required for passive tidal flushing—bottom-layer dissolved oxygen (DO) plummeted to a lethal 0.44 mg/L. To address the limitations of passive tidal exchange, this study proposes a conceptual hybrid water purification framework integrating active ecological interventions: wall-mounted spiral flow aeration for continuous oxygenation and vertical bio-curtains for pollutant interception. By synergizing fluid mechanics with ecological engineering, core design parameters were systematically derived: an effective mixing width (Weff=2.2 h), longitudinal spacing (Ls = 13.6 ×Weff), an optimal root immersion ratio (Dr/h = 0.6), and climate-adaptive planting densities (ρp 12–32 plants/m2). Additionally, a corrosion-resistant FRP guide rail system was incorporated to facilitate autonomous adaptation to tidal fluctuations. The framework was conceptualized through a prototype design for the Dongsam canal and subsequently scaled to 15 international micro-tidal canals across diverse climatic zones. The optimized bilateral staggered configuration established a continuous 528 m2 ecological refuge, ensuring DO levels recover above the critical 3 mg/L threshold. Ultimately, this research presents a comprehensive methodological framework and a flexible engineering toolkit to guide water quality and ecological resilience enhancements in shallow urban waterways worldwide. Full article
(This article belongs to the Section Coastal Engineering)
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13 pages, 5999 KB  
Proceeding Paper
Evaluation of Different Spectral Indices for Assessment of Ecological Conditions in Harike Wetland (Ramsar Site) Using Remote Sensing and Geospatial Techniques
by Alka Kumari, Mohit Arora and Harpreet Singh Sidhu
Environ. Earth Sci. Proc. 2026, 40(1), 10; https://doi.org/10.3390/eesp2026040010 - 20 Mar 2026
Viewed by 1043
Abstract
Wetlands are highly productive ecosystems that play a vital role in maintaining ecological balance. This study presents a geospatial assessment of the Harike Wetland, Punjab, using hyperspectral (PRISMA) and multispectral (Landsat series) satellite data to analyze its ecological structure and water dynamics. Six [...] Read more.
Wetlands are highly productive ecosystems that play a vital role in maintaining ecological balance. This study presents a geospatial assessment of the Harike Wetland, Punjab, using hyperspectral (PRISMA) and multispectral (Landsat series) satellite data to analyze its ecological structure and water dynamics. Six spectral indices—Normalized Difference Vegetation Index (NDVI), Normalized Dif-ference Aquatic Vegetation Index (NDAVI), Normalized Difference Water Index (NDWI), Modified NDWI (MNDWI), Floating Algal Index (FAI), and Algal Bloom Detection Index (ABDI)—were employed to map terrestrial agricultural cropland (paddy), aquatic vegetation and surface water. Threshold-based classification of index outputs was used to estimate the spatial extent of major land cover types. NDVI and NDAVI effectively captured vegetation patterns, while NDWI and MNDWI improved surface water delineation. Additionally, Z-spectral analysis was applied to extract and compare the reflectance profiles of agricultural cropland, open water, and algae, as well as built-up areas, enhancing spectral contrast and classification accuracy, particularly in spectrally mixed zones. The integration of index-based mapping with detailed spectral profiling demonstrates the advantage of combining multispectral and hyperspectral data for wetland monitoring and provides valuable insights to support wetland conservation and sustainable water management. Full article
(This article belongs to the Proceedings of The 9th International Electronic Conference on Water Sciences)
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16 pages, 1620 KB  
Article
Impact of Distinct Management Regimes on Wintering Waterbird Communities in China’s Coal Mining Subsidence Wetlands
by Sen Yang, Kai Cao, Yuanyuan Wang, Wenning Shen, Tong Lin, Ningning Liu, Jing Li, Lingbo Ji, Huiping Chen, Yanying Xu, Bo Tang and Ying Li
Diversity 2026, 18(3), 146; https://doi.org/10.3390/d18030146 - 28 Feb 2026
Cited by 1 | Viewed by 1121
Abstract
Natural wetland loss constitutes a primary threat to waterbirds worldwide, increasingly forcing them to rely on expanding artificial wetlands. Extensive underground coal mining across the North China Plain has created numerous subsidence wetlands, which could serve as important alternative habitats for migratory and [...] Read more.
Natural wetland loss constitutes a primary threat to waterbirds worldwide, increasingly forcing them to rely on expanding artificial wetlands. Extensive underground coal mining across the North China Plain has created numerous subsidence wetlands, which could serve as important alternative habitats for migratory and wintering waterbirds. However, the effects of different management regimes on waterbirds in these novel artificial wetlands remain poorly understood, hindering effective strategies for reconciling human development with waterbird conservation. Here, we conducted a long-term field survey (2017–2025) of wintering waterbirds across 15 subsidence wetlands under four distinct human management regimes in the Huaibei coal mining area. We recorded 22,712 waterbirds of 45 species. We found that high-intensity aquaculture and floating photovoltaic systems were associated with reduced waterbird diversity, increased community dissimilarity, altered species composition, and the loss of multiple threatened species from survey records. We also found that ecological aquaculture and unutilized wetlands may serve as favorable habitats as alternatives to natural wetlands. Our findings demonstrate that subsidence wetlands can provide vital wintering habitats when managed sustainably, but intensive development severely compromises their conservation value. Future research should integrate habitat variables and year-round surveys to optimize management strategies for these expanding artificial ecosystems. Full article
(This article belongs to the Special Issue Wetland Biodiversity and Ecosystem Conservation)
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14 pages, 3283 KB  
Article
Growth of Chrysopogon zizanioides in Floating Treatment Wetlands with Different Substrates for the Remediation of an Urban River
by Luis Alfredo Hernández-Vásquez, Mauricio Rojas-Ascensión, Sergio Reyes Rosas, Rubén Daniel Hernández Cruz, Miguel Ángel Vega-Ortega, Gregorio Hernández-Salinas, Marco Antonio Benítez-Espíndola and Luis Carlos Sandoval Herazo
Limnol. Rev. 2026, 26(1), 7; https://doi.org/10.3390/limnolrev26010007 - 20 Feb 2026
Viewed by 1619
Abstract
Urban river degradation demands remediation strategies that are both environmentally sustainable and technically feasible. This study evaluated the performance of Floating Treatment Wetlands (FTWs) vegetated with Chrysopogon zizanioides (vetiver) and incorporating four substrate configurations: leaf litter (LL), red volcanic rock (RVR), corn cobs [...] Read more.
Urban river degradation demands remediation strategies that are both environmentally sustainable and technically feasible. This study evaluated the performance of Floating Treatment Wetlands (FTWs) vegetated with Chrysopogon zizanioides (vetiver) and incorporating four substrate configurations: leaf litter (LL), red volcanic rock (RVR), corn cobs (CC), and a composite mixture of all three, for the rehabilitation of the “Paseo de Los Ahuehuetes” River in Veracruz, Mexico. Over a 182-day monitoring period, in situ water quality parameters and plant growth responses were systematically assessed. The results indicate that substrate selection is a decisive design factor governing the establishment and development of C. zizanioides in FTWs. Among the substrates tested, LL exhibited the most favorable performance, achieving the highest plant survival (82%), enhanced shoot elongation (71.5 ± 12.1 cm), greater root development (49.7 ± 10.0 cm), and the highest relative growth rate (0.028 g g−1 d−1), with statistically significant differences (p < 0.05) compared to CC. Additionally, localized improvements in water quality within the FTW zone were observed, including an increase in dissolved oxygen (2.07%) and a reduction in total dissolved solids (5.65%), likely associated with intensified rhizospheric processes. Overall, these findings identify leaf litter as a low-cost, locally available, and environmentally sustainable substrate that enhances vetiver establishment in FTWs. The study provides practical, evidence-based criteria for the design of nature-based phytoremediation systems aimed at the restoration of urban river ecosystems. Full article
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19 pages, 7804 KB  
Article
Wetland Landscape Response to Partially Treated Sewage in Unconstrained Systems
by R. Eugene Turner, James E. Bodker and Christopher Schulz
Water 2026, 18(3), 418; https://doi.org/10.3390/w18030418 - 5 Feb 2026
Cited by 1 | Viewed by 660
Abstract
We conducted a long-term assessment of how natural free-water surface (FWS) wetlands respond to sustained loads of partially treated municipal effluent. We quantified the effects on vegetative cover, ammonium concentration, and fecal coliform bacteria densities and compared them to constructed wetlands with hydrologically [...] Read more.
We conducted a long-term assessment of how natural free-water surface (FWS) wetlands respond to sustained loads of partially treated municipal effluent. We quantified the effects on vegetative cover, ammonium concentration, and fecal coliform bacteria densities and compared them to constructed wetlands with hydrologically defined flows. Variations in the area of open water and floating vegetation converted from emergent marsh, shrub or bottomland hardwood forest (0 to 124.6 ha) were directly proportional to the nitrogen loading at all eight sites (range 5.4 to 24.6 thousand Kg N yr−1). Trees exposed to effluent at five locations sometimes died in the first year, or they took decades to die. At the one location with fecal coliform data, their densities were directly related to ammonium concentrations, which were within the concentration range of untreated municipal sewage water. Ammonium levels exceeded US EPA chronic toxicity standards at three locations and aquatic toxicity levels developed by independent scientists at all eight locations. The loss of organic peat and habitat has multiple consequential effects that may be quick to happen or subtle, and be slow to restore, if at all. Compared to constructed wetland treatment systems, FWS systems are more difficult to constrain, have much reduced predictabilities and bring unwelcome consequences. Full article
(This article belongs to the Special Issue Water Quality, Wastewater Treatment and Water Recycling, 2nd Edition)
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21 pages, 4969 KB  
Article
Analysis of Temporal Changes in the Floating Vegetation and Algae Surface of the Water Bodies of Kis-Balaton Based on Aerial Image Classification and Meteorological Data
by Kristóf Kozma-Bognár, Angéla Anda, Ariel Tóth, Veronika Kozma-Bognár and József Berke
Geomatics 2026, 6(1), 3; https://doi.org/10.3390/geomatics6010003 - 3 Jan 2026
Cited by 1 | Viewed by 940
Abstract
Climate change and related weather extremes are increasingly having an impact on all aspects of life. The main objective of the research was to analyze the impact of the most important meteorological elements and the image data of various water bodies of the [...] Read more.
Climate change and related weather extremes are increasingly having an impact on all aspects of life. The main objective of the research was to analyze the impact of the most important meteorological elements and the image data of various water bodies of the Kis-Balaton wetland, Hungary. The primary question was which meteorological elements have a positive or negative influence on vegetational surface cover. Drones have facilitated the visual surveying and monitoring of challenging-to-reach water bodies in the area, including a lake and multiple channels. The individual channels had different flow conditions. Aerial surveys were conducted monthly, based on pre-prepared flight plans. Images captured by a Mavic 3 drone flying at an altitude of 150 m and equipped with a multispectral sensor were processed. The time-series images were aligned and assembled into orthophotos. The image details relevant to the research were segregated and classified using Maximum Likelihood classification algorithm. The reliability of the image data used was checked by Shannon entropy and spectral fractal dimension measurements. The results of the classification were compared with the meteorological data collected by a QLC-50 automatic climate station of Keszthely. The investigations revealed that the surface cover of the examined water bodies was different in the two years but showed a kind of periodicity during the year. In those periods, where photosynthetic organisms multiplied in a higher proportion in the water body, higher monthly average air temperatures and higher monthly global solar radiation sums were observed. Full article
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19 pages, 2021 KB  
Review
Floating Treatment Wetlands: A Review of Design, Performance, and Application for Sustainable Water and Wastewater Management
by Szymon Kilian and Katarzyna Pawęska
Sustainability 2025, 17(24), 11327; https://doi.org/10.3390/su172411327 - 17 Dec 2025
Cited by 3 | Viewed by 4073
Abstract
Nature-Based Solutions (NBSs) have proven to be effective and reliable for climate change adaptation and risk reduction. Among these, Floating Treatment Wetlands (FTWs) have recently gained significant attention. FTWs are floating NBS systems that enhance the biological self-cleaning capacity of aquatic environments. Since [...] Read more.
Nature-Based Solutions (NBSs) have proven to be effective and reliable for climate change adaptation and risk reduction. Among these, Floating Treatment Wetlands (FTWs) have recently gained significant attention. FTWs are floating NBS systems that enhance the biological self-cleaning capacity of aquatic environments. Since the performance of FTWs is derived from the rhizosphere suspended beneath a buoyant frame and the interactions between biofilm and macrophytes (rhizosphere), it is crucial to operate and design FTWs in a way that supports the specific pollutant removal pathways of FTWs. Key parameters to consider are plant selection, choice of planting medium, length of plant establishment phase, treatment medium depth, surface coverage ratio, hydraulic retention time (HRT), and placement of FTWs. Despite recent advances, there is a lack of established guidelines for FTW development, which has led to diverse construction and operational practices. This review aims to collate the latest advances in FTW research, identify gaps, and suggest a coherent classification and construction framework. By highlighting best practices, performance factors, and operational parameters, this review seeks to guide the future development and implementation of FTWs. Full article
(This article belongs to the Topic Sustainable Technologies for Water Purification)
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27 pages, 2345 KB  
Article
Freshwater Phenanthrene Removal by Three Emergent Wetland Plants
by Madeline J. Stanley, Aidan Guttormson, Lisa E. Peters, Thor Halldorson, Gregg Tomy, José Luis Rodríguez Gil, Blake Cooney, Richard Grosshans, David B. Levin and Vince P. Palace
Water 2025, 17(22), 3327; https://doi.org/10.3390/w17223327 - 20 Nov 2025
Viewed by 949
Abstract
The use of floating wetlands has been receiving increased attention as a minimally invasive method for oil spill remediation, but the species of vegetation incorporated in floating wetlands may influence the success of oil degradation. Therefore, a freshwater microcosm experiment was conducted at [...] Read more.
The use of floating wetlands has been receiving increased attention as a minimally invasive method for oil spill remediation, but the species of vegetation incorporated in floating wetlands may influence the success of oil degradation. Therefore, a freshwater microcosm experiment was conducted at the IISD Experimental Lakes Area, Canada to assess the potential of common wetland plants Typha sp., Carex utriculata, and C. lasiocarpa, to remove phenanthrene, a polycyclic aromatic hydrocarbon ubiquitously found at oil spill sites. Triplicate microcosms containing 3L of lake water were established with either Typha sp., Carex utriculata, or C. lasiocarpa and then treated with nominal concentration of 1 mg/L phenanthrene and monitored over 21 days. Two types of reference microcosms were also included: one set with the same plant allocations but not treated with phenanthrene and another with water only and no plants or phenanthrene. Phenanthrene declined by over 89.30% in all microcosms that received the compound, but the decline was more rapid in microcosms that included Typha sp. and C. lasiocarpa, than those with C. utriculate or no plants. Declining phenanthrene concentrations in microcosms without plants may have resulted from biofilm stimulation. Specific conductivity and pH were influenced by plant type but not phenanthrene, while dissolved oxygen was influenced by both. There was no influence of phenanthrene on plant growth rates or root biofilm bioactivity, measured by adenosine triphosphate or oxygen consumption. Results indicate there may be plant-specific factors influencing remediation success which should be explored in future research. Full article
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19 pages, 5566 KB  
Article
The Influence of a Floating Wetland on Nitrate and Phosphate Reduction in Urban Waterways: A 5-Year Case Study of the North Branch Canal, Chicago, Illinois, USA
by Daniel Chukwudi, Eric W. Peterson and Phil Nicodemus
Urban Sci. 2025, 9(11), 482; https://doi.org/10.3390/urbansci9110482 - 16 Nov 2025
Cited by 1 | Viewed by 1966
Abstract
Urban streams often suffer from poor water quality, in part due to nutrient pollution, especially in highly developed areas. Poor water quality, driven by high concentrations of nitrate and phosphate entering waterways from runoff, wastewater, and stormwater systems, contributes to urban stream syndrome. [...] Read more.
Urban streams often suffer from poor water quality, in part due to nutrient pollution, especially in highly developed areas. Poor water quality, driven by high concentrations of nitrate and phosphate entering waterways from runoff, wastewater, and stormwater systems, contributes to urban stream syndrome. This study evaluates the long-term performance of a floating wetland (FW) system installed in a canal of the North Branch of the Chicago River near Goose Island, an area heavily impacted by urban runoff. From 2018 to 2023, surface and subsurface water samples were collected upstream and downstream of a 90 m2 FW system and analyzed for nitrate as nitrogen (NO3-N) and phosphate (PO43−) using ion chromatography. A paired t-test and two-way ANOVA revealed statistically significant reductions (p < 0.001) in NO3-N (mean: 1.31 mg/L surface, 1.02 mg/L at 0.3 m) and PO43− (mean: 0.64 mg/L surface, 0.57 mg/L at 0.3 m) between waters entering and exiting the FW, with no significant seasonal differences in removal efficiency. These results highlight the FW’s consistent, year-round nutrient mitigation performance driven by plant uptake and microbial processes. Over the five-year period of the study, the FW served as a means of improving the water quality, delivering a sustainable, low-maintenance solution for urban stream management with broader implications for ecological resilience and water quality enhancement. Full article
(This article belongs to the Special Issue Urban Water Resources Assessment and Environmental Governance)
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23 pages, 3001 KB  
Article
Horizontal Flow Floating Treatment Wetlands (HFFTWs) for Reclaiming Safer Irrigation Water from Tannery Effluent
by Aisha Nazir, Haiqa Tanveer, Muhammad Shafiq, Muhammad Ihsan, Tasmia Maqbool and Micklas Scholz
Water 2025, 17(18), 2720; https://doi.org/10.3390/w17182720 - 14 Sep 2025
Cited by 2 | Viewed by 1483
Abstract
Untreated tannery wastewater (UTW) poses unprecedented threats to the aquatic and irrigation systems due to severely limited pollution removal efficiency (RE %) by the limited capacity and design of wastewater treatment plants in developing countries. An exploitation of treatment wetlands (TWs) like floating [...] Read more.
Untreated tannery wastewater (UTW) poses unprecedented threats to the aquatic and irrigation systems due to severely limited pollution removal efficiency (RE %) by the limited capacity and design of wastewater treatment plants in developing countries. An exploitation of treatment wetlands (TWs) like floating treatment wetlands (FTWs) face hydraulic performance and survivability and establishment challenges of transplanted hydrophytes in the severely toxic UTW. Such challenges were overcome by designing a horizontal flow floating treatment wetland (HFFTW) and diluting UTW at 0, 25, 50, and 75 with harvested rainwater (HRW), viz. UTW:HRW (% v:v) for lowering phytotoxicity to the phytotolerance range of the tested hydrophytes, viz. Eichhornia crassipes (EC) and Pistia stratiotes (PS) in the HFFTW, i.e., EC-HFFTW and PS-HFFTW. Both hydrophytes showed heavy metals’ translocation factor being ≥1, i.e., and acted as excellent hyperaccumulators of heavy metals. The average metal RE (%) was 64 (Cr), 61 (Cd), 45 (Pb), 44 (Cu), and 50.1 (BOD) for E. crassipes, and 44 (Cr), 54 (Cd), 42.2 (Pb), 42 (Cu), and 40 (BOD) for P. stratiotes. Significant reductions in the organic pollution load witnessed by significant drops in BOD and COD made UTW a safer irrigation medium for Petunia hybrida while inducing an increase in the bioconcentration factor (BCF) of PS and EC. The study concluded that the designed HFFTW showed significantly greater RE (%) and yield of reclaimed water than conventional FTWs based on its hydraulic performance. The design HFFTW carries a field scale application capacity for improvising treatment efficiency of the combined effluent plant of KTWMA (Kasur Tannery Waste Management Agency), Kasur, Pakistan. Full article
(This article belongs to the Section Wastewater Treatment and Reuse)
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26 pages, 730 KB  
Review
Nature-Based Approaches for Managing Bioavailable Phosphorus in Aquatic Ecosystems
by Marcela Pavlíková, Klára Odehnalová, Štěpán Zezulka, Eliška Maršálková, Adéla Lamaczová and Blahoslav Maršálek
Hydrology 2025, 12(9), 236; https://doi.org/10.3390/hydrology12090236 - 10 Sep 2025
Cited by 1 | Viewed by 3685
Abstract
High levels of phosphorus cause eutrophication, leading to water blooms and making the water undesirable in aquatic environments. Surface water pollution by phosphorus (P) is caused by both point and diffuse sources. Despite the recent technological advancements in wastewater phosphorus removal, this element [...] Read more.
High levels of phosphorus cause eutrophication, leading to water blooms and making the water undesirable in aquatic environments. Surface water pollution by phosphorus (P) is caused by both point and diffuse sources. Despite the recent technological advancements in wastewater phosphorus removal, this element persists in aquatic ecosystems, particularly in sediments, often in non-bioavailable forms (in the case of precipitation by aluminum salts) or within biomass associated with high concentrations of heavy metals, rendering it unsuitable for reuse. In this paper, we review the measures and methods commonly used for reducing or removing bioavailable phosphorus, with a focus on the strategies and methods for direct in situ phosphorus removal or reuse, including the use of microbial biofilms and aquatic macrophytes, natural and constructed wetlands, and biotised (biologically enhanced) solid-phase sorbents or woodchip bioreactors. This paper also highlights the significance of bioavailable phosphorus from both the hydrochemical perspectives, examining phosphorus speciation, solubility, and the geochemical interactions influencing mobility in water and sediments, and the biological perspectives, which consider phosphorus uptake, bioaccumulation in aquatic organisms, and the role of microbial and plant communities in modulating phosphorus cycling. This overview presents sustainable phosphorus management approaches that are key to reducing eutrophication and supporting ecosystem health. Full article
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