Academic literature on the topic 'PPCPs in water'

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Journal articles on the topic "PPCPs in water"

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Pei, Shasha, Binghua Li, Boxin Wang, Jingchao Liu, and Xuanying Song. "Distribution and Ecological Risk Assessment of Pharmaceuticals and Personal Care Products in Sediments of North Canal, China." Water 14, no. 13 (2022): 1999. http://dx.doi.org/10.3390/w14131999.

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The pollution of water bodies by pharmaceuticals and personal care products (PPCPs) has attracted widespread concern due to their widespread use and pseudo-persistence, but their effects on sediments are less known. In this study, solid-phase extraction-high performance liquid chromatography–tandem mass spectrometry (SPE-LC/MSMS) was used to investigate the occurrence and ecological risks of five typical pharmaceuticals and personal care products (PPCPs) in thirteen key reservoirs, sluices, dams, and estuaries in the Haihe River Basin. At the same time, the PPCP exchanges of surface water, gro
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Q., Wang, Dölle K., and Tong J. "Pharmaceuticals in Surface Water and Waste Water Treatment Plant Effluent around the World – A Review." Asian Journal of Environment & Ecology 3, no. 3 (2017): 1–17. https://doi.org/10.9734/AJEE/2017/33947.

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Pharmaceuticals and personal care products (PPCPs) are “Emerging Contaminants” which widely exist around the word in trace amounts. Evidence by researchers showed that PPCPs can have potential risk on humans and the environment. This paper reviews the occurrence of nine PPCPs for North America, Europe, Asia and Australia based on published literature. The study revealed that industrialized countries in North America and Europe have a higher concentration of PPCPs and with advanced techniques like GC/MS, LC-MS/MS, HPLC/UV and UPLC/MS/MS can precisely analyze the PPCPs from the surface water and
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Xiao, Menghua, Caijie Yang, Lei Wang, et al. "Distribution Characteristics and Ecological Risk Assessment of Pharmaceutical and Personal Care Products (PPCPs) in Different Water Sources, Soil Profiles and Rice Crops Under Rural Domestic Reclaimed Water Irrigations." Agronomy 15, no. 2 (2025): 343. https://doi.org/10.3390/agronomy15020343.

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Pharmaceutical and personal care products (PPCPs) have the characteristics of environmental persistence, bioaccumulation, and high toxicity, and their environmental behavior has attracted the attention in the process of sewage resource utilization in recent years. In this study, four kinds of irrigation water sources (the primary treated water of rural domestic sewage (RDS) R1, the secondary treated water of RDS R2, the ecological pond purified water R3 and river water (CK) and three kinds of water level regulations (low-, medium- and high-water level regulation of W1, W2, and W3) were set to
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Kim, I. H., H. Tanaka, T. Iwasaki, T. Takubo, T. Morioka, and Y. Kato. "Classification of the degradability of 30 pharmaceuticals in water with ozone, UV and H2O2." Water Science and Technology 57, no. 2 (2008): 195–200. http://dx.doi.org/10.2166/wst.2008.808.

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Experiments were conducted to assess the degradability of 30 PPCPs, selected on the basis of consumption and environmental relevance, by O3 process, UV process and AOPs consisting of UV/ H2O2, O3/UV and O3/H2O2. A batch reactor with volume of 22L of water including the PPCPs was used. For UV process, combination of UV and H2O2 or O3 that can generate OH radicals was capable of degrading the PPCPs faster than UV radiation alone. On the other hand, O3 process and O3-based/UV-based AOPs could remove a variety of the PPCPs effectively, while some PPCPs such as 2-QCA, DEET and cyclophosphamide show
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Harada, Arata, Koya Komori, Norihide Nakada, Kiyoaki Kitamura, and Yutaka Suzuki. "Biological effects of PPCPs on aquatic lives and evaluation of river waters affected by different wastewater treatment levels." Water Science and Technology 58, no. 8 (2008): 1541–46. http://dx.doi.org/10.2166/wst.2008.742.

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The existence of pharmaceuticals and personal care products (PPCPs) in the water environment is an emerging problem. In this study, we investigated the toxicity of eleven PPCPs through bioassays on bacteria, algae, crustaceans, amphibians and protozoa, and compared the toxicology indexes with the concentration of PPCPs in river water for ecotoxiclogical risk evaluation. Toxicity of the eleven PPCPs was observed and the values of EC50 or LC50 were in the order of mg/L. A distinctive finding is that antibacterial triclosan affected all aquatic lives tested. The effects of PPCPs varied according
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Jesus, Fátima, Eva Domingues, Carla Bernardo, Joana L. Pereira, Rui C. Martins, and João Gomes. "Ozonation of Selected Pharmaceutical and Personal Care Products in Secondary Effluent—Degradation Kinetics and Environmental Assessment." Toxics 10, no. 12 (2022): 765. http://dx.doi.org/10.3390/toxics10120765.

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The efficiency of ozonation depends on the water matrix and the reaction time. Herein, these factors were addressed by assessing the removal of five pharmaceutical and personal care products (PPCPs) by ozonation. The main aims were: (i) to assess the effects of the water matrix on the degradation kinetics of PPCPs, individually and in mixture, following ozonation; and (ii) to assess the ecotoxicological impact of the ozone reaction time on the treatment of a spiked municipal wastewater (MW) added the five PPCPs over several species. The degradation of the PPCPs was faster in ultrapure water, w
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Wu, Jin, Jingchao Liu, Zenghui Pan, Boxin Wang, and Dasheng Zhang. "Spatiotemporal distributions and ecological risk assessment of pharmaceuticals and personal care products in groundwater in North China." Hydrology Research 51, no. 5 (2020): 911–24. http://dx.doi.org/10.2166/nh.2020.001.

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Abstract The contamination of surface water by pharmaceuticals and personal care products (PPCPs) has attracted widespread attention, but data regarding their impacts on groundwater (GW) are sparse. In river–GW interaction areas, rivers are likely an important source of PPCPs in aquifers, especially rivers impacted by sewage treatment plant effluent. Understanding the characterization, transport, and risk is valuable for the effective protection of vital aquatic ecosystem services, environmental health, and drinking water supplies. To attain this objective, statistics with spatial analysis and
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Sudaryanto, A., R. O. Witama, K. Nosaki, et al. "Occurrence of emerging contaminants in Jakarta Bay, Indonesia: pharmaceuticals and personal care products." IOP Conference Series: Earth and Environmental Science 1137, no. 1 (2023): 012050. http://dx.doi.org/10.1088/1755-1315/1137/1/012050.

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Abstract Contamination by emerging contaminants of pharmaceutical and personal care products (PPCPs) has been a matter of global concern due to increasing their occurrence in the environment and their potential toxic effect. Despite the increasing number of publications on PPCPs in aquatic environments worldwide, only very few data are available in Indonesia. This study aims to determine PPCPs in the surface water of Jakarta Bay to understand their occurrence and distribution. Surface water was collected from 17 stations in September 2018. Samples were analyzed for 74 compounds of PPCPs using
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Lin, Pinyi, Zhuwei Liao, Gequan Wu, Liwei Yang, Jie Fu, and Yin Luo. "Recent Advances in Biofiltration for PPCP Removal from Water." Water 16, no. 13 (2024): 1888. http://dx.doi.org/10.3390/w16131888.

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As emerging pollutants, pharmaceuticals and personal care products (PPCPs) in water have attracted more and more attention because of their harmfulness to the ecosystem and human health. Due to the perpetual input from sewage/wastewater effluents, landfill leachates, urban/agricultural runoff, etc., PPCPs in the aquatic environment are generally “pseudo-persistent”. Conventional filtration in the water treatment process cannot effectively remove PPCPs, while biofiltration, a synergistic combination of adsorption and biodegradation, is an effective upgrade method that has received great attenti
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Zhang, Feng. "Application of Ozone-catalyzed Oxidation Process for Degradation of Pharmaceuticals and Personal Care Products." Frontiers in Science and Engineering 4, no. 8 (2024): 45–49. http://dx.doi.org/10.54691/q1af8g34.

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Pharmaceuticals and personal care products (PPCPs) continue to be detected in water sources with far-reaching negative impacts, and removing these emerging contaminants has become a top priority. Conventional water treatment technologies make it difficult to effectively remove these contaminants. As an advanced oxidation technology, ozone-catalyzed oxidation has attracted attention for its efficient degradation of PPCPs. This paper reviews the basic principles of the ozone-catalyzed oxidation process in removing PPCPs. Compared with homogeneous catalytic ozonation technology, multiphase cataly
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Dissertations / Theses on the topic "PPCPs in water"

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Fiss, Edward Matthew. "The Chlorination of Pharmaceuticals and Other Phenolic Compounds in the Presence of Iodide." Diss., Virginia Tech, 2009. http://hdl.handle.net/10919/37639.

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Pharmaceuticals and personal care products (PPCPs) include a wide range of chemicals such as prescription and overâ theâ counter drugs, fragrances, diagnostic agents, and a litany of other compounds commonly added to household products such as sunscreens, soaps, toothpastes, and deodorants. If present in natural waters, PPCPs can come into contact with disinfectants during drinking water treatment processes. PPCPs are already known to form a variety of disinfection byproducts (DBPs) when oxidized by free chlorine, including trihalomethanes (THMs) and haloacetic acids (HAAs), many of which ar
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Wang, Chengtao. "Assessment of the Occurrence and Potential Effects of Pharmaceuticals and Personal Care Products in South Florida Waters and Sediments." FIU Digital Commons, 2012. http://digitalcommons.fiu.edu/etd/689.

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A LLE-GC-MS method was developed to detect PPCPs in surface water samples from Big Cypress National Park, Everglades National Park and Biscayne National Park in South Florida. The most frequently found PPCPs were caffeine, DEET and triclosan with detected maximum concentration of 169 ng/L, 27.9 ng/L and 10.9 ng/L, respectively. The detection frequencies of hormones were less than PPCPs. Detected maximal concentrations of estrone, 17β-estradiol, coprostan-3-ol, coprostane and coprostan-3-one were 5.98 ng/L, 3.34 ng/L, 16.5 ng/L, 13.5 ng/L and 6.79 ng/L, respectively. An ASE-SPE-GC-MS method was
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Anim, Alfred Kwablah. "Occurrence and fate of selected organic contaminants in soils, sediment and estuarine water from south-east Queensland." Thesis, Queensland University of Technology, 2019. https://eprints.qut.edu.au/134389/1/Alfred_Anim_Thesis.pdf.

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This research contributed to the rather limited knowledge on the transport of organic contaminants in estuarine environments from South-East Queensland. Modelling studies were conducted to assess the fate of some current-use pesticides and pharmaceuticals in the Brisbane River estuary. The vertical transport of per- and polyfluoroalkyl substances (PFASs) in soils from a previous firefighting training ground was also assessed. The outcomes of this study contribute to the global stock taking of organic contaminants in the environments and are expected to be useful in designing effective containm
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Wang, Hong Yang. "Development of Combination Processes Consisting of Ozonation, Coagulation and Ceramic Membrane Filtration for Water Reclamation based on Evaluation of Risk and Energy." 京都大学 (Kyoto University), 2013. http://hdl.handle.net/2433/174904.

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Gonçalves, Eline Simões. "O uso da cafeína como indicador de contaminação por esgoto doméstico em águas superficiais." Niterói, 2017. https://appdesenv.uff.br/riuff/handle/1/3603.

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Submitted by Biblioteca de Pós-Graduação em Geoquímica BGQ (bgq@ndc.uff.br) on 2017-05-16T15:50:12Z No. of bitstreams: 1 Eline GonçalvesFinal.pdf: 2362766 bytes, checksum: 5ff7da387d547cd2c43ba7dfeb37be30 (MD5)<br>Made available in DSpace on 2017-05-16T15:50:12Z (GMT). No. of bitstreams: 1 Eline GonçalvesFinal.pdf: 2362766 bytes, checksum: 5ff7da387d547cd2c43ba7dfeb37be30 (MD5)<br>Universidade Federal Fluminense. Instituto de Química. Programa de Pós-Graduação em Geoquímica, Niterói, RJ<br>Estudos recentes em várias partes do mundo têm relatado a distribuição de produtos farmacêuticos e
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Arpin-Pont, Lauren. "Les produits pharmaceutiques et de soin personnel en milieu marin : prédiction des concentrations environnementales et étude des effets sur le métabolisme endogène d’organismes exposés." Thesis, Montpellier, 2015. http://www.theses.fr/2015MONTS172/document.

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La question de la contamination du milieu marin par les produits pharmaceutiques et de soin personnel (PPCP) se pose depuis une vingtaine d’années seulement. La principale source de contamination de ces substances se révèle être les stations d’épuration (STP) rejetant directement ou non leurs effluents traités en mer, les traitements employés dans ces stations n’étant pas toujours efficaces pour éliminer ces substances. Le premier objectif de la thèse a été d’évaluer l’état des lieux de la contamination du milieu marin par les PPCP, par une étude approfondie de la littérature, et ce dans les d
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Picot-Groz, Marina. "Contamination de l’environnement marin par des produits de soin et des produits pharmaceutiques : molécules mères et métabolites." Thesis, Montpellier, 2017. http://www.theses.fr/2017MONTT107.

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La contamination des milieux côtiers par des contaminants émergents est une préoccupation sociétale récente ce qui explique le peu de données disponibles, à ce jour dans ce milieu. Pourtant, certains de ces contaminants sont susceptibles de générer des effets écotoxiques sur les organismes aquatiques du milieu marin. Trois voies d’introduction de contaminants dans l’environnement marin sont communément identifiées : l’apport indirect depuis les bassins versants à travers les fleuves côtiers et les apports directs soit lors d’activités récréatives, soit par le rejet d’effluents d’eaux usées. Ce
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Ji, Yuefei. "Photochemical and photocatalytic degradation of pharmaceutical and personal care products (PPCPS) in aqueous solution : a case study of atenolol and 2-phenylbenzimidazole-5-sulfonic acid." Phd thesis, Université Claude Bernard - Lyon I, 2014. http://tel.archives-ouvertes.fr/tel-01058226.

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In this thesis, the photochemical and photocatalytic degradation of atenolol (ATL) and 2-phenylbenzimidazole-5-sulfonic acid (PBSA) have been investigated in aqueous solutions. Our results show that direct photolysis of ATL is weak and the indirect photolysis, e.g., induced by photosensitizers such as nitrate, may contributed to its major loss process in natural sunlit waters. In the case of PBSA, direct photolysis is found to be important while the indirect photolysis may play a less important role in its elimination in natural surface waters. The photolytic reactions (either direct or indire
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Sirés, Sadornil Ignacio. "Electrochemical Advanced Oxidation Processes for the Removal of the Drugs Paracetamol, Clofibric Acid and Chlorophene from Waters." Doctoral thesis, Universitat de Barcelona, 2007. http://hdl.handle.net/10803/2750.

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Paracetamol, clofibric acid and chlorophene are paradigms of NSAIDs, blood lipid regulators and antimicrobials, respectively, which are three of the top sales PPCPs therapeutical groups all throughout the world. During the last decades, the impact of chemical pollution has focused almost exclusively on the conventional 'priority' pollutants, mainly pesticides and industrial intermediates exhibiting persistence in the environment. Another group that has received comparatively little attention includes both human and veterinary pharmaceutical compounds and personal care products (PPCPs). Nowaday
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Arpin-Pont, Lauren. "Les produits pharmaceutiques et de soin personnel en milieu marin : prédiction des concentrations environnementales et étude des effets sur le métabolisme endogène d’organismes exposés." Electronic Thesis or Diss., Montpellier, 2015. http://www.theses.fr/2015MONTS172.

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La question de la contamination du milieu marin par les produits pharmaceutiques et de soin personnel (PPCP) se pose depuis une vingtaine d’années seulement. La principale source de contamination de ces substances se révèle être les stations d’épuration (STP) rejetant directement ou non leurs effluents traités en mer, les traitements employés dans ces stations n’étant pas toujours efficaces pour éliminer ces substances. Le premier objectif de la thèse a été d’évaluer l’état des lieux de la contamination du milieu marin par les PPCP, par une étude approfondie de la littérature, et ce dans les d
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Books on the topic "PPCPs in water"

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Vanderford, Brett J. Evaluation of analytical methods for EDCs and PPCPs via interlaboratory comparison. Water Research Foundation, 2012.

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McCullough, Michael D., and WERF. Attenuation of PPCP/EDCs Through Golf Courses Using Recycled Water. IWA Publishing, 2012.

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McCullough, Michael D. Attenuation of PPCP/EDCs Through Golf Courses Using Recycled Water. IWA Publishing, 2012.

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Climate Toolkits for Infrastructure PPPs - Water Production and Treatment Sector. Washington, DC: World Bank, 2023. http://dx.doi.org/10.1596/40023.

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Book chapters on the topic "PPCPs in water"

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Khan, Noor A., Kavita N. Gandhi, Vidyasagar Devtade, et al. "Existence of Pharmaceuticals and Personal Care Products (PPCPs) in the Conventional Water Treatment Process." In Environmental Challenges and Solutions. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-63422-3_20.

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Goel, Mukesh, and Ashutosh Das. "A Review on Treatment of Pharmaceuticals and Personal Care Products (PPCPs) in Water and Wastewater." In Handbook of Environmental Materials Management. Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-319-73645-7_41.

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Rahangdale, Dipali, G. Archana, Rita Dhodapkar, and Anupama Kumar. "Chitosan -Based Biosorbents: Modifications and Application for Sequestration of PPCPs and Metals for Water Remediation." In Handbook of Composites from Renewable Materials. John Wiley & Sons, Inc., 2017. http://dx.doi.org/10.1002/9781119441632.ch63.

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Goel, Mukesh, and Ashutosh Das. "A Review on Treatment of Pharmaceuticals and Personal Care Products (PPCPs) in Water and Wastewater." In Handbook of Environmental Materials Management. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-58538-3_41-1.

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Porika, Mahendar, Pabbati Ranjit, Radhika Tippani, and Kondakindi Venkateswar Reddy. "Advances in the Bioremediation of Pharmaceuticals and Personal Care Products (PPCPs): Polluted Water and Soil." In Microorganisms for Sustainability. Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-1947-2_15.

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Manna, Suvendu, Uttariya Roy, Anirban Biswas, Shubhalakshmi Sengupta, Piyali Basak, and Papita Das. "Review on Trends in the Removal of Pharmaceuticals and Personal Care Products (PPCPs) from Water and Wastewater." In Contaminants in Drinking and Wastewater Sources. Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-15-4599-3_10.

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Zumwalt, Michael C. "The Use of Accurate Mass, Isotope Ratios, and MS/MS for the Analysis of PPCPs in Water." In Liquid Chromatography Time-of-Flight Mass Spectrometry. John Wiley & Sons, Inc., 2008. http://dx.doi.org/10.1002/9780470429969.ch6.

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Mabhaudhi, Tafadzwanashe, T. L. Dirwai, C. Taguta, E. K. Kanda, L. Nhamo, and O. Cofie. "A Systematic Review of Irrigation Development and Agricultural Water Management in Mali." In Enhancing Water and Food Security Through Improved Agricultural Water Productivity. Springer Nature Singapore, 2025. https://doi.org/10.1007/978-981-96-1848-4_14.

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Abstract Rain-fed and irrigated agriculture are key to economic growth, job creation, food security, and livelihoods across Africa. Agriculture in Mali is mainly rain-fed and thus vulnerable to the country’s fluctuating climate, which undermines crop production and productivity. The PRISMA protocol and SPIDER framework were used to systematically review Mali’s irrigation development and agricultural water management. Mali invested in irrigated agriculture across scales to decouple agriculture from unreliable rainfall, but the potential for expansion still exists. The Malian government also dev
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Suryaningrum, Anis, Christiono Utomo, Eko Budi Santoso, and Silvianita. "‘Critical Success Factor for PPPs Infrastructure Project in Water Supply Systems: A Review." In Lecture Notes in Civil Engineering. Springer Nature Singapore, 2025. https://doi.org/10.1007/978-981-96-5654-7_22.

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Waqar-Un, Nisa, Luqman Riaz, Aansa Rukya Saleem, et al. "Lifecycle Assessment of Emerging Water Pollutants." In Emerging Water Pollutants: Concerns and Remediation Technologies. BENTHAM SCIENCE PUBLISHERS, 2022. http://dx.doi.org/10.2174/97897815040739122010010.

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Emerging pollutants (EPs), also known as contaminants of emerging concern, include pharmaceuticals and personal care products (PPCPs), surfactants, plasticizers, pesticides, etc., and the pharmaceuticals and personal care products are extensively used for therapeutic and non-therapeutic purposes in health care settings, livestock industry, and agriculture. Consumption and production of PPCPs have generated significant quantities of toxic waste in affluent entering the water streams, which poses a risk to aquatic life, public health, and the ecosystem. Given the potential toxicity impacts, cont
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Conference papers on the topic "PPCPs in water"

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Boyd, G. R. "Occurrence and Risk Management of EDCs and PPCPs in Surface Waters." In World Environmental and Water Resources Congress 2007. American Society of Civil Engineers, 2007. http://dx.doi.org/10.1061/40927(243)135.

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Suarez, S., F. Omil, and J. M. Lema. "Fate and removal of pharmaceuticals and personal care products (PPCPs) in a conventional activated sludge treatment process." In WATER POLLUTION 2010. WIT Press, 2010. http://dx.doi.org/10.2495/wp100221.

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Khunjar, Wendell O., Jolanta Skotnicka-Pitak, Nancy G. Love, Diana Aga, and Willie F. Harper, Jr. "Biotransformation of Pharmaceuticals and Personal Care Products (PPCPs) during Nitrification: The Role of Ammonia Oxidizing Bacteria versus Heterotrophic Bacteria." In World Environmental and Water Resources Congress 2008. American Society of Civil Engineers, 2008. http://dx.doi.org/10.1061/40976(316)162.

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Sheng, Chenguang, A. G. Agwu Nnanna, Yanghe Liu, and John D. Vargo. "Removal of Pharmaceutical Contaminants in Water." In ASME 2015 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2015. http://dx.doi.org/10.1115/imece2015-53240.

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Pharmaceutical contaminants in drinking water could potentially lead to increasing risks of heart attacks, organ damage, mental health and even cancer. Because their presence, frequency of occurrence, or source may not be known, the chemicals being discovered in water that previously had not been detected or are being detected at levels that may be significantly different than expected. Removal of emerging contaminants is considered recently to be one of the most important processes within advanced Waste Water Treatment Plants (WWTPs) system. EPA is working to improve its understanding of a nu
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Miller, C. J., S. Kumar, S. Jasim, and L. Schweitzer. "Hydraulic Modeling of PPCP Discharges in the Detroit River." In World Water and Environmental Resources Congress 2005. American Society of Civil Engineers, 2005. http://dx.doi.org/10.1061/40792(173)478.

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Wright, K. "Plasma Water Treatment and Oxidation of Organic Matter in Water." In 2019 IEEE Pulsed Power & Plasma Science (PPPS). IEEE, 2019. http://dx.doi.org/10.1109/ppps34859.2019.9009637.

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Sireli, Yesim. "A prelminary look at PPPs in the nexus of water-energy." In 2016 IEEE Global Humanitarian Technology Conference (GHTC). IEEE, 2016. http://dx.doi.org/10.1109/ghtc.2016.7857269.

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Akiyama, Masahioro, S. H. R. Hosseini, and Hidenori Akiyama. "PPPS-2013: Observation of electrical discharge in water using the high speed camera." In 2013 IEEE 40th International Conference on Plasma Sciences (ICOPS). IEEE, 2013. http://dx.doi.org/10.1109/plasma.2013.6635041.

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Handa, Taiki, Yasushi Minamitani, and Yoshio Higashiyama. "Decomposition of Brilliant Blue FCF in Water by Pulsed Power Discharge in a Water Droplets Spray." In 2007 IEEE Pulsed Power Plasma Science Conference. IEEE, 2007. http://dx.doi.org/10.1109/ppps.2007.4346054.

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Handa, T., Y. Minamitani, and Y. Higashiyama. "Decomposition of brilliant blue fcf in water by pulsed power discharge in a water droplets spray." In 2007 IEEE International Pulsed Power Plasma Science Conference (PPPS 2007). IEEE, 2007. http://dx.doi.org/10.1109/ppps.2007.4652410.

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Reports on the topic "PPCPs in water"

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Ross, Peter, Samantha Scott, and Marie Noël. A water quality snapshot of Grafton Lake, Bowen Island. Raincoast Conservation Foundation, 2025. https://doi.org/10.70766/31.2601.

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Water is essential for life, and steps are needed to understand, protect and restore its health throughout British Columbia (BC). The Raincoast Healthy Waters program (Raincoast Conservation Foundation) was launched in 2023 and conducts community-oriented water pollution monitoring in partnering BC watersheds. The Healthy Waters team conducted a one-time visit to sample water at the outflow from Grafton Lake on Bowen Island (Figure 1), BC, on October 8, 2024. This ‘snapshot’ assessment was used to compare against the more comprehensive sampling done in other watersheds, and contributes to an u
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Ross, Peter, Samantha Scott, Kim Lagimodiere, and Marie Noel. Anderson Creek watershed: Water quality report for the 2023/24 wet season. Raincoast Conservation Foundation, 2024. http://dx.doi.org/10.70766/16804.3.

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Water is essential for life, and steps are needed to understand, protect and restore its health in fish habitat throughout British Columbia. The Raincoast Healthy Waters program was launched in 2023 to establish community-oriented water pollution monitoring in select BC watersheds. Two Healthy Waters sampling events take place every year in each watershed, the first in the dry season (summer), and the second being in the wet season (winter). This report highlights results from the first wet (winter) season sampling carried out with the support and participation of Cowichan Tribes. Briefly, the
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Ross, Peter, Samantha Scott, Isabella Fiddes, and Marie Noel. Chemainus River watershed: Water quality report for the 2023/24 wet season. Raincoast Conservation Foundation, 2024. http://dx.doi.org/10.70766/2681.52.

Full text
Abstract:
Water is essential for life, and steps are needed to understand, protect and restore its health in fish habitat throughout British Columbia. The Raincoast Healthy Waters program was launched in 2023 to establish community-oriented water pollution monitoring in select BC watersheds. Two Healthy Waters sampling events take place every year in each watershed, the first in the dry season (summer), and the second being in the wet season (winter). This report highlights results from the first wet (winter) season sampling carried out with the support and participation of Halalt First Nation. Briefly,
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Ross, Peter, Samantha Scott, Marie Noel, and Jenn Blancard. Anderson Creek watershed: Water quality report for the 2023/24 wet season. Raincoast Conservation Foundation, 2024. http://dx.doi.org/10.70766/126.498.

Full text
Abstract:
Water is essential for life, and steps are needed to understand, protect and restore its health in fish habitat throughout British Columbia. The Raincoast Healthy Waters program was launched in 2023 to establish community-oriented water pollution monitoring in select BC watersheds. Two Healthy Waters sampling events take place every year in each watershed – the first in the dry season (summer), and the second being in the wet season (winter). This report highlights results from the first wet (winter) season sampling carried out with the support and participation of the Pender Harbour Ocean Dis
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Ross, Peter, Samantha Scott, Marie Noel, and Roxanne Kooistra. Sqwa:la (Hope Slough) watershed: Water quality report for the 2023 wet season. Raincoast Conservation Foundation, 2024. http://dx.doi.org/10.70766/81.8319.

Full text
Abstract:
Water is essential for life, and steps are needed to understand, protect and restore its health in fish habitat throughout British Columbia. The Raincoast Healthy Waters program was launched in 2023 to establish community-oriented water pollution monitoring in select BC watersheds. Two Healthy Waters sampling events take place every year in each watershed, the first in the dry season (summer), and the second being in the wet season (winter). This report highlights results from the first wet (winter) season sampling carried out with the support and participation of Pelólxw Tribe. Briefly, the H
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6

Ross, Peter, Samantha Scott, and Marie Noel. Tod Creek watershed: Water quality report for the 2023/24 wet season. Raincoast Conservation Foundation, 2024. https://doi.org/10.70766/76.9001.

Full text
Abstract:
Water is essential for life, and steps are needed to understand, protect and restore its health in fish habitat throughout British Columbia. The Raincoast Healthy Waters program was launched in 2023 to establish community-oriented water pollution monitoring in select BC watersheds. Two Healthy Waters sampling events take place every year in each watershed: the dry season (summer), and the wet season (winter). This report highlights results from one sampling event: the first wet (winter) season sampling, carried out with the support and participation of the Capital Regional District (CRD) and T
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7

Ross, Peter, Samantha Scott, Marie Noel, and Natasha Klasios. Green/Cheakamus watershed: Water quality report for the 2023 dry season. Raincoast Conservation Foundation, 2024. http://dx.doi.org/10.70766/955.423.

Full text
Abstract:
Water is essential for life, and steps are needed to understand, protect and restore its health in fish habitat throughout British Columbia. The Raincoast Healthy Waters program was launched in 2023 to establish community-oriented water pollution monitoring in select BC watersheds. Two Healthy Waters sampling events take place every year in each watershed – the first in the dry season (summer), and the second being in the wet season (winter). While the Healthy Waters program typically focuses its work within singular watersheds, this partnership featured two Whistler area watersheds: the Green
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Ross, Peter, Samantha Scott, and Marie Noel. Green/Cheakamus watershed: Water quality report for the 2023/2024 wet season. Raincoast Conservation Foundation, 2024. http://dx.doi.org/10.70766/9365.56.

Full text
Abstract:
Water is essential for life, and steps are needed to understand, protect and restore its health in fish habitat throughout British Columbia. The Raincoast Healthy Waters program was launched in 2023 to establish community-oriented water pollution monitoring in select BC watersheds. Two Healthy Waters sampling events take place every year in each watershed – the first in the dry season (summer), and the second being in the wet season (winter). While the Healthy Waters program typically focuses its work within singular watersheds, this partnership featured two Whistler area watersheds: the Green
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9

Navarro, Adoracion. Challenges and Opportunities in Subnational Public-Private Partnerships in the Philippines. Philippine Institute for Development Studies, 2024. https://doi.org/10.62986/dp2024.43.

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If designed and implemented well, public-private partnership (PPP) projects can fill the gaps in the public provision of infrastructure facilities and social services at the subnational level. The more than three decades of implementing subnational PPPs in the Philippines have highlighted many challenges, partly due to capacity gaps at the subnational level and fragmentation in previous legal frameworks. This fragmentation was characterized by varying and inconsistent local legislative council ordinances on PPPs and joint ventures for local government units, as well as nationally designed join
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A Governance Approach to Urban Water Public–Private Partnerships: Case Studies and Lessons from Asia and the Pacific. Asian Development Bank, 2022. http://dx.doi.org/10.22617/spr220100.

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This publication explores lessons from case studies on the governance of public–private partnerships (PPPs) in the water and sanitation sector in Asia and the Pacific. It aims to support governments and private practitioners in meeting the challenge of providing universal access to water and sanitation in the region’s fast-growing cities. The report suggests three key areas for action. First, governments can establish a water governance framework supported by capable public institutions, a buoyant revenue regime, and transparent targeted subsidies. Second, they can develop the enabling environ
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