{"type": "FeatureCollection", "features": [{"id": "10261/373580", "type": "Feature", "geometry": null, "properties": {"updated": "2026-08-25T16:22:03Z", "type": "Dataset", "title": "Data on the profile of organic contaminants in the L'Albufera Natural Park (2019\u20132020). Target and non-target screening", "description": "Open AccessPeer reviewed", "keywords": ["Sediments", "Surface waters", "Pharmaceuticals", "Spatial distribution", "Pesticides", "Industrial compounds"], "contacts": [{"organization": "Soriano, Yolanda, Do\u00f1ate, Emilio, Asins Velis, Sabina, Andreu P\u00e9rez, V., Pic\u00f3, Yolanda,", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10261/373580"}, {"rel": "self", "type": "application/geo+json", "title": "10261/373580", "name": "item", "description": "10261/373580", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10261/373580"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2024-01-01T00:00:00Z"}}, {"id": "10.1016/j.envpol.2017.12.116", "type": "Feature", "geometry": null, "properties": {"license": "Restricted", "updated": "2026-08-25T16:15:36Z", "type": "Journal Article", "created": "2018-01-11", "title": "Pharmaceutical concentration variability at sewage treatment plant outlets dominated by hydrology and other factors", "description": "A study was conducted in which the effluent at four small to medium sized sewage treatment plants (STP) in North Rhine-Westphalia, Germany was monitored for three pharmaceutical compounds (carbamazepine, diclofenac, metoprolol) over a period of four years. Grab sampling and auto sampling campaigns were accomplished with respect to various weather conditions in the catchment area. Flow volumes and hydraulic retention times (HRT) from various sampling dates which provide information on processes causing emission changes were additionally taken into account. Monitoring results showed that concentration scattering in the effluent is related to HRT in the sewage treatment plants. Dilution effects following rain events in the catchment area were analysed for the three investigated substances. Short-term emission changes explained by dilution only could be well determined by the mathematical relation between discharge and concentration, and for carbamazepine to be solely determined by the dilution effects at all HRTs. For metoprolol, a clear decrease in concentrations was observed at HRTs above 80\u202fh, and a significant contribution of biodegradation was supported by independent biodegradation tests. For three out of the four STPs, a decrease in concentrations of diclofenac was observed at hydraulic retention times above 80\u202fh, indicating removal, whereas the relationship between concentration and HRT of the other STP could be explained by dilution only. The study shows that emissions can vary with weather conditions, hampering the assessment of emissions and estimation of concentrations in surface waters from generic removal rates only. Furthermore, it illustrates the importance of HRT of rather stable substances in wastewater treatment.", "keywords": ["Diclofenac", "Sewage", "Dilution effects", "Rain", "0211 other engineering and technologies", "02 engineering and technology", "Wastewater", "Waste Disposal", " Fluid", "01 natural sciences", "6. Clean water", "Sewage treatment plants", "12. Responsible consumption", "Biodegradation", " Environmental", "Carbamazepine", "Pharmaceutical Preparations", "13. 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The most significant impact this can induce is the emergence of antibiotic resistance, which can lead to a global health emergency. It is important to note that the impact of pharmaceuticals in the aquatic environment is not limited to antibiotic resistance. Pharmaceuticals can also affect the behaviour and reproductive systems of aquatic organisms, with cascading effects on entire ecosystems. Numerous studies have reported the emergence of pharmaceuticals due to the uncontrolled disposal of polluted domestic, agricultural, and industrial wastewater in water bodies. This work discusses the potential of pharmaceuticals that on one hand are highly important for mankind, yet their non-judicious usage and disposal induce equally intriguing and problematic conditions to the health of aquatic systems. Pathways through which pharmaceutics can make their way into water bodies are discussed. Furthermore, the risk imposed by pharmaceuticals on aquatic life is also elaborated. The possible and pragmatic remediation methods through which pharmaceutical products can be treated are also discussed. Emphasis is placed on the potential of phytoremediation and advanced oxidative process, and the factors affecting the efficacy of these remediation methods are discussed.</p></article>", "keywords": ["Bioqu\u00edmica", "Remediation", " strategies", "0211 other engineering and technologies", "pharmaceuticals; aquatic ecosystems; hydrobiology; phytoremediation; advance oxidative processes", "phytoremediation", "TP1-1185", "02 engineering and technology", "pharmaceuticals", "Microbiolog\u00eda", "Biochemistry", "Microbiology", "01 natural sciences", "hydrobiology", "14. Life underwater", "QH540-549.5", "aquatic ecosystems", "0105 earth and related environmental sciences", "Ecology", "Chemical technology", "6. Clean water", "3. Good health", "Phytoremediation", "advance oxidative processes", "13. 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Among the many different technologies for water purification, photocatalysis is a very promising and environment-friendly approach. In this study, the photocatalytic activity of Sr0.9La0.1TiO3 (SLTO) and Sr0.25Ca0.25Na0.25Pr0.25TiO3 (SCNPTO) nano-sized powders were evaluated by degradation of pindolol in water. Pindolol is almost entirely insoluble in water due to its lipophilic properties. The synthesis of the SCNPTO was performed using the reverse co-precipitation method using nitrate precursors, whereas the SLTO was produced by spray pyrolysis (CerPoTech, Trondheim Norway). The phase purity of the synthesized powders was validated by XRD, while HR-SEM revealed particle sizes between 50 and 70 nm. The obtained SLTO and SCNPTO powders were agglomerated but had relatively similar specific surface areas of about 27.6 m2 g\u22121 and 34.0 m2 g\u22121, respectively. The energy band gaps of the SCNPTO and SLTO were calculated (DFT) to be about 2.69 eV and 3.05 eV, respectively. The photocatalytic performances of the materials were examined by removing the pindolol from the polluted water under simulated solar irradiation (SSI), UV-LED irradiation, and UV irradiation. Ultra-fast liquid chromatography was used to monitor the kinetics of the pindolol degradation with diode array detection (UFLC\u2013DAD). The SLTO removed 68%, 94%, and 100% of the pindolol after 240 min under SSI, UV-LED, and UV irradiation, respectively. A similar but slightly lower photocatalytic activity was obtained with the SCNPTO under identical conditions, resulting in 65%, 84%, and 93% degradation of the pindolol, respectively. Chemical oxygen demand measurements showed high mineralization of the investigated mixtures under UV-LED and UV irradiation.</p></article>", "keywords": ["application nanomaterials", "02 engineering and technology", "UV degradation", "pharmaceuticals", "01 natural sciences", "7. Clean energy", "Article", "6. Clean water", "0104 chemical sciences", "Chemistry", "13. Climate action", "0103 physical sciences", "UV degradation; pharmaceuticals; pindolol; application nanomaterials", "0210 nano-technology", "QD1-999", "pindolol"]}, "links": [{"href": "http://www.mdpi.com/2079-4991/12/23/4193/pdf"}, {"href": "https://doi.org/10.3390/nano12234193"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Nanomaterials", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.3390/nano12234193", "name": "item", "description": "10.3390/nano12234193", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.3390/nano12234193"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2022-11-25T00:00:00Z"}}, {"id": "10.3390/w10121861", "type": "Feature", "geometry": null, "properties": {"license": "Open Access", "updated": "2026-08-25T16:19:25Z", "type": "Journal Article", "created": "2018-12-14", "title": "Behavior of Organic Micropollutants During River Bank Filtration in Budapest, Hungary", "description": "<p>This paper summarizes results from a half-year sampling campaign in Budapest, when Danube River water and bank filtrate were analyzed for 36 emerging micropollutants. Twelve micropollutants were detected regularly in both river water and bank filtrate. Bisphenol A, carbamazepine, and sulfamethoxazole showed low removal (&lt;20%) during bank filtration on Szentendre Island and Csepel island, whereas 1H-benzotriazole, tolyltriazole, diclofenac, cefepime, iomeprol, metazachlor, and acesulfame showed medium to high removal rates of up to 78%. The concentration range in bank filtrate was much lower compared to river water, proving the equilibration effect of bank filtration for water quality.</p>", "keywords": ["organic micropollutants", "river bank filtration", "0211 other engineering and technologies", "02 engineering and technology", "pharmaceuticals", "01 natural sciences", "attenuation", "6. Clean water", "0105 earth and related environmental sciences"]}, "links": [{"href": "http://www.mdpi.com/2073-4441/10/12/1861/pdf"}, {"href": "https://doi.org/10.3390/w10121861"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Water", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.3390/w10121861", "name": "item", "description": "10.3390/w10121861", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.3390/w10121861"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2018-12-14T00:00:00Z"}}, {"id": "10259/7719", "type": "Feature", "geometry": null, "properties": {"updated": "2026-08-25T16:21:58Z", "type": "Journal Article", "created": "2023-06-14", "title": "Pharmaceuticals in Water: Risks to Aquatic Life and Remediation Strategies", "description": "<?xml version='1.0' encoding='UTF-8'?><article><p>The presence of pharmaceuticals in the aquatic environment presents a challenge to modern science. The most significant impact this can induce is the emergence of antibiotic resistance, which can lead to a global health emergency. It is important to note that the impact of pharmaceuticals in the aquatic environment is not limited to antibiotic resistance. Pharmaceuticals can also affect the behaviour and reproductive systems of aquatic organisms, with cascading effects on entire ecosystems. Numerous studies have reported the emergence of pharmaceuticals due to the uncontrolled disposal of polluted domestic, agricultural, and industrial wastewater in water bodies. This work discusses the potential of pharmaceuticals that on one hand are highly important for mankind, yet their non-judicious usage and disposal induce equally intriguing and problematic conditions to the health of aquatic systems. Pathways through which pharmaceutics can make their way into water bodies are discussed. Furthermore, the risk imposed by pharmaceuticals on aquatic life is also elaborated. The possible and pragmatic remediation methods through which pharmaceutical products can be treated are also discussed. Emphasis is placed on the potential of phytoremediation and advanced oxidative process, and the factors affecting the efficacy of these remediation methods are discussed.</p></article>", "keywords": ["Bioqu\u00edmica", "0211 other engineering and technologies", "pharmaceuticals; aquatic ecosystems; hydrobiology; phytoremediation; advance oxidative processes", "phytoremediation", "TP1-1185", "02 engineering and technology", "pharmaceuticals", "Microbiolog\u00eda", "Biochemistry", "Microbiology", "01 natural sciences", "hydrobiology", "14. Life underwater", "QH540-549.5", "aquatic ecosystems", "0105 earth and related environmental sciences", "Ecology", "Chemical technology", "6. Clean water", "3. Good health", "Phytoremediation", "advance oxidative processes", "13. 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Among the many different technologies for water purification, photocatalysis is a very promising and environment-friendly approach. In this study, the photocatalytic activity of Sr0.9La0.1TiO3 (SLTO) and Sr0.25Ca0.25Na0.25Pr0.25TiO3 (SCNPTO) nano-sized powders were evaluated by degradation of pindolol in water. Pindolol is almost entirely insoluble in water due to its lipophilic properties. The synthesis of the SCNPTO was performed using the reverse co-precipitation method using nitrate precursors, whereas the SLTO was produced by spray pyrolysis (CerPoTech, Trondheim Norway). The phase purity of the synthesized powders was validated by XRD, while HR-SEM revealed particle sizes between 50 and 70 nm. The obtained SLTO and SCNPTO powders were agglomerated but had relatively similar specific surface areas of about 27.6 m2 g\u22121 and 34.0 m2 g\u22121, respectively. The energy band gaps of the SCNPTO and SLTO were calculated (DFT) to be about 2.69 eV and 3.05 eV, respectively. The photocatalytic performances of the materials were examined by removing the pindolol from the polluted water under simulated solar irradiation (SSI), UV-LED irradiation, and UV irradiation. Ultra-fast liquid chromatography was used to monitor the kinetics of the pindolol degradation with diode array detection (UFLC\u2013DAD). The SLTO removed 68%, 94%, and 100% of the pindolol after 240 min under SSI, UV-LED, and UV irradiation, respectively. A similar but slightly lower photocatalytic activity was obtained with the SCNPTO under identical conditions, resulting in 65%, 84%, and 93% degradation of the pindolol, respectively. Chemical oxygen demand measurements showed high mineralization of the investigated mixtures under UV-LED and UV irradiation.</p></article>", "keywords": ["application nanomaterials", "02 engineering and technology", "UV degradation", "pharmaceuticals", "01 natural sciences", "7. Clean energy", "Article", "6. 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