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Artykuły w czasopismach na temat "Aquaculture pollution"

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PETIT, J. "Aquaculture : un problème pour l’environnement ?" INRAE Productions Animales 4, no. 1 (1991): 67–80. http://dx.doi.org/10.20870/productions-animales.1991.4.1.4319.

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L’aquaculture intensive est considérée comme une source de pollution. Les interactions étroites entre le milieu d’élevage et l’écosystème où est implanté l’élevage confèrent des caractères particuliers à cette pollution. Les formes de pollution par l’aquaculture sont variées : pollutions organique, chimique, bactériologique, génétique etc. Les flux polluants peuvent être importants localement et géographiquement. On estime que la production d’une tonne de saumons implique 1 km2 marin, et que les élevages norvégiens contribuent pour 8 % et 14 % de l’azote et du phosphore respectivement rejetés
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Bao-Ling, Wu. "Pollution has damaged coastal aquaculture." Marine Pollution Bulletin 22, no. 8 (1991): 371–72. http://dx.doi.org/10.1016/0025-326x(91)90329-q.

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Vo, Thi Thu Em, Seung-Mo Je, Se-Hoon Jung, Jaehyeon Choi, Jun-Ho Huh, and Han-Jong Ko. "Review of Photovoltaic Power and Aquaculture in Desert." Energies 15, no. 9 (2022): 3288. http://dx.doi.org/10.3390/en15093288.

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PV (photovoltaic) capacity is steadily increasing every year, and the rate of increase is also increasing. A desert area with a large equipment installation area and abundant solar radiation is a good candidate. PV power plants installed in the desert have advantages in themselves, but when combined with desert aquacultures, additional benefits can be obtained while compensating for the shortcomings of the aquaculture industry. The importance of the aquaculture industry is increasing, with aquaculture products approaching half of the total supply of marine products due to sea environmental pol
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Yuan, Hui, Jiahong Liu, Ye Tian, Shaoqiang Han, and Haojie Zhai. "A study on pollution emission flux estimation and tailwater for mariculture in the Tianjin, China." E3S Web of Conferences 625 (2025): 02001. https://doi.org/10.1051/e3sconf/202562502001.

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With the rapid development of marine aquaculture in Tianjin, the methods and types of aquaculture are constantly evolving and changing. Due to the presence of large amounts of pollutants such as nitrogen and phosphorus in aquaculture wastewater, it has gradually become a concern for marine environmental issues in the near sea. To understand the characteristics of pollution emissions from marine aquaculture in Tianjin, we evaluated the production data of marine aquaculture from 2014 to 2023 using the Pollution Coefficient Method (PCM). The results showed that the average pollution emission flux
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Schwitzguébel, Jean-Paul, and Hailong Wang. "Environmental impact of aquaculture and countermeasures to aquaculture pollution in China." Environmental Science and Pollution Research - International 14, no. 7 (2007): 452–62. http://dx.doi.org/10.1065/espr2007.05.426.

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Anderson, James L., Frank Asche, and Taryn Garlock. "Economics of Aquaculture Policy and Regulation." Annual Review of Resource Economics 11, no. 1 (2019): 101–23. http://dx.doi.org/10.1146/annurev-resource-100518-093750.

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Since the Blue Revolution began in the late 1960s, global aquaculture production has grown rapidly. Aquaculture now accounts for over half of the world's fish for direct human consumption and is expected to approach two-thirds by 2030. With aquaculture's growth, a number of high-profile concerns have arisen, including pollution, feeding practices, disease management and antibiotic use, habitat use, non-native species, food safety, fraud, animal welfare, impacts on traditional wild fisheries, access to water and space, market competition, and genetics. Managing these concerns requires thoughtfu
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Xu, Yue, Zhongwen Hu, Yinghui Zhang, Jingzhe Wang, Yumeng Yin, and Guofeng Wu. "Mapping Aquaculture Areas with Multi-Source Spectral and Texture Features: A Case Study in the Pearl River Basin (Guangdong), China." Remote Sensing 13, no. 21 (2021): 4320. http://dx.doi.org/10.3390/rs13214320.

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Aquaculture has grown rapidly in the field of food industry in recent years; however, it brought many environmental problems, such as water pollution and reclamations of lakes and coastal wetland areas. Thus, the evaluation and management of aquaculture industry are needed, in which accurate aquaculture mapping is an essential prerequisite. Due to the difference between inland and marine aquaculture areas and the difficulty in processing large amounts of remote sensing images, the accurate mapping of different aquaculture types is still challenging. In this study, a novel approach based on mul
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Yan, Wei, and Changbiao Zhong. "The Coordination of Aquaculture Development with Environment and Resources: Based on Measurement of Provincial Eco-Efficiency in China." International Journal of Environmental Research and Public Health 19, no. 13 (2022): 8010. http://dx.doi.org/10.3390/ijerph19138010.

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To resolve the environmental problems of China’s aquaculture industry, we must examine the current situation and comprehensively consider aquaculture growth, resource conservation and environmental protection. Using the unit investigation and evaluation method to evaluate the nonpoint source pollution of each province, this paper calculates eco-efficiency to evaluate the coordination of environment and aquaculture growth based on the slacks-based measure directional distance function dealing with undesirable outputs. The results reveal that the eco-efficiency of aquaculture in China from 2003
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M. Al-Hejuje, Makia, Prof Hamid Talib Al-Saad, and Najah A. Hussain. "Assessing the Organic Pollution and Aquaculture Activity of Surface water at Shatt-Al-Arab Estuary Southern of Iraq." ILMU KELAUTAN: Indonesian Journal of Marine Sciences 22, no. 4 (2017): 161. http://dx.doi.org/10.14710/ik.ijms.22.4.161-168.

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Surface water samples were collected monthly from December, 2012 to November, 2013 at the middle part of Shatt Al-Arab Estuary at Basrah city during the low tide period to assess the organic pollution status using the Organic Pollution Index (OPI), and the aquaculture activities using Minimum Operator Concept (MOC). Results of biological oxygen demand (BOD5), ammonium, nitrite and orthophosphate were used to calculate OPI, while dissolved oxygen (DO), total phosphate and turbidity were used to calculate MOC. Results showed that OPI values range from 4.5 - 4.75 referred to weak organic–non orga
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Yu, Young-Bin, Jae-Ho Choi, Ju-Hyeong Lee, et al. "Biofloc Application Using Aquaponics and Vertical Aquaculture Technology in Aquaculture: Review." Fishes 8, no. 11 (2023): 543. http://dx.doi.org/10.3390/fishes8110543.

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Some aspects of traditional aquaculture have negative impacts on the aquatic environment, leading to pollution and disease outbreaks in farmed organisms. Biofloc technology (BFT) is a closed aquaculture system that utilizes specific microbial communities to remove ammonia emitted from aquaculture organisms or adds carbon to the aquaculture system to improve water quality. BFT has benefits, such as increasing production and improving water quality, and reducing disease spread and pollution, without the need for water exchange. However, there are disadvantages, such as rapid changes in water qua
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Rozprawy doktorskie na temat "Aquaculture pollution"

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Sugiura, Shozo H. "Development of low-pollution feeds for sustainable aquaculture /." Thesis, Connect to this title online; UW restricted, 1998. http://hdl.handle.net/1773/5298.

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Du, Plessis Jan-Paul. "The Purification Works." Diss., University of Pretoria, 2018. http://hdl.handle.net/2263/63619.

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This dissertation aims to propose an appropriate architectural intervention within a site that requires both ecological restitution and the commemoration of industrial heritage. The Johannesburg Gasworks site serves as a clear example of how the Industrial Revolution and subsequent industrial technologies have both damaged the natural environment and left blighted legacies within ever developing urban conditions.The project aims to uphold the general significance of Industrial heritage as proposed by charters such as the Nizhny Tagil charter prepared by The International Council for the Commem
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Liu, Yajie. "An analysis of the management and economics of salmon aquaculture." Thesis, University of British Columbia, 2008. http://hdl.handle.net/2429/323.

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Salmon aquaculture can be a potential solution to bridge the gap between declining capture fisheries and increasing seafood demand. However, the environmental impacts it creates have generated criticism. The overall objectives of this dissertation are to examine the economic consequences of environmental issues associated with salmon aquaculture, and to explore policy implications and recommendations for reducing environmental impacts. These objectives are addressed in five main analyses. The growth of salmon aquaculture is analyzed based on farmed salmon production in the four leadin
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Neil, Luke L. "Bioassay assessment of mine pit lake water for aquaculture and biodiversity conservation." Thesis, Curtin University, 2007. http://hdl.handle.net/20.500.11937/2032.

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For decades, researchers have been working to better understand the effects of acid and metal toxicity to aquatic organisms and to develop ways to effectively mitigate these detrimental effects. Acid mine drainage (AMD) causes environmental pollution that affects many countries having historic or current mining industries. Both surface and underground mining have the potential to create AMD and therefore adversely affect the local and adjacent environments. Through malignant mining and farming practices, damming rivers and the changing climate, surface freshwater resources are rapidly being re
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Neil, Luke L. "Bioassay assessment of mine pit lake water for aquaculture and biodiversity conservation." Curtin University of Technology, Muresk Institute of Agriculture, Department of Applied Biosciences, 2007. http://espace.library.curtin.edu.au:80/R/?func=dbin-jump-full&object_id=17934.

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For decades, researchers have been working to better understand the effects of acid and metal toxicity to aquatic organisms and to develop ways to effectively mitigate these detrimental effects. Acid mine drainage (AMD) causes environmental pollution that affects many countries having historic or current mining industries. Both surface and underground mining have the potential to create AMD and therefore adversely affect the local and adjacent environments. Through malignant mining and farming practices, damming rivers and the changing climate, surface freshwater resources are rapidly being re
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Amisah, Stephen. "Impacts of anthropogenic activities on the fisheries of the Don, Rother and Dearne catchments." Thesis, University of Hull, 1998. http://hydra.hull.ac.uk/resources/hull:3797.

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Human uses and abuses of rivers have grown and diversified over the last few centuries with increasing urban development. With increasing population growth, there has been increasing demand for the use of rivers to satisfy a diverse range of human needs including solid waste disposal and the discharge of industrial, sewage and mining effluents. Rivers have been abstracted for agricultural and potable water supply and river channels have been modified for navigation, flood defences and hydro-electric power generation. These modifications to the river system disrupt the fabric of the aquatic eco
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Marshall, Shona. "The structure and functioning of the fish assemblage of the Humber Estuary, UK." Thesis, University of Hull, 1995. http://hydra.hull.ac.uk/resources/hull:3708.

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This study provides an assessment of the fish assemblage of the Humber estuary, using a quarterly sampling interval. Sampling 14 subtidal stations throughout the estuary, and two intertidal sites in the outer estuary, the principal aims of the study were to determine the structure and functioning of the assemblage and the environmental and biological factors influencing the fish distribution.
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Mustafa, Akhmad Biological Earth &amp Environmental Sciences Faculty of Science UNSW. "Improving acid sulfate soils for brackish water aquaculture ponds in South Sulawesi, Indonesia." Awarded by:University of New South Wales. Biological, Earth & Environmental Sciences, 2007. http://handle.unsw.edu.au/1959.4/40619.

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Brackish water aquaculture is one of the largest coastal industries in Indonesia. This farming system involves the construction of ponds m coastal sediments. Many ponds in Indonesia have been abandoned due to past development of ponds in acid 8ulfate soils (ASS); these soils produce sulfuric acid through the oxidation of pyrite du ring and after the sediments have been excavated. The soils also contain elevated concentrations of metal such as iron and aluminium which are harmful to farmed fish and shrimp. Acidification of pond soil causes recurrent fish and shrimp mortalities, poor growth rate
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Johansson, Torbjörn. "Phosphorus emissions from fish farms : observed and predicted effects /." Uppsala : Acta Universitatis Upsaliensis : Univ.-bibl. [distributör], 2001. http://publications.uu.se/theses/91-554-5114-4/.

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Dayras, Paul. "Paracyclopina nana : un petit copépode à fort intérêt en écotoxicologie et en aquaculture." Thesis, Lille 1, 2019. http://www.theses.fr/2019LIL1R074.

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Le copépode cyclopoïde Paracyclopina nana joue un rôle clé dans les chaînes trophiques des milieux aquatiques de l'Asie orientale. Il présente une petite taille au stade adulte (600 μm), un cycle de vie court, une fécondité élevée et peut être facilement cultivé sous une salinité moyenne (15 psu) et dans une large gamme de températures. Son génome entier a également été récemment séquencé, assemblé et annoté. Tous ces atouts lui confèrent un double potentiel très intéressant pour les recherches en cours : en tant qu’organisme d’essai pour l’évaluation des risques associés aux polluants aquatiq
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Książki na temat "Aquaculture pollution"

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India. Central Pollution Control Board. Pollution potential from coastal aquaculture. Central Pollution Control Board, Ministry of Environment & Forests, Govt. of India, 2005.

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M, Mohan Joseph, Asian Fisheries Society. Indian Branch., International Symposium "Environment-Aquaculture Interaction" (1996 : Cochin, India), and Indian Fisheries Forum (4th : 1996 : Cochin, India), eds. Aquaculture and the environment. Asian Fisheries Society, Indian Branch, 1999.

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1928-, Fingerman Milton, and Nagabhushanam Rachakonda, eds. Aquaculture. Science Publishers, 2000.

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Soley, Neill. Aquaculture pollution - Who pays? Who should pay?: An economic approach to pollution control. University of Portsmouth, Centre for Marine Resource Economics, 1992.

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1926-, Manna G. K., Jana B. B, University of Kalyani, and National Symposium on Environmental Impacts on Animals and Aquaculture (1988 : University of Kalyani), eds. Impacts of environment on animals and aquaculture. University of Kalyani, 1990.

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Midlen, Alex B. Environmental management for aquaculture. Chapman & Hall, 1998.

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Parent, Josée Marie. Managing risks to coastal aquaculture in the Maritime Provinces of Canada due to pollution and harmful algae. Oceans Institute of Canada, 1991.

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National Conference on Emerging Trends in Fisheries and Aquaculture (2012 Yogeshwari Mahavidyalaya). Emerging trends in fisheries and aquaculture. Edited by Sakhare, V. B. (Vishwas Balasaheb), 1974- editor of compilation, Vasanthkumar, B., 1968- editor of compilation, and Yogeshwari Mahavidyalaya. Department of Zoology. Daya Publishing House, 2013.

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1951-, Tucker C. S., and Hargreaves John A, eds. Environmental best management practices for aquaculture. Wiley-Blackwell, 2008.

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D, Charbonnier, and United Nations Environment Programme. Mediterranean Action Plan., eds. Pêche & aquaculture en Méditerranée: État actuel et perspectives. Economica, 1990.

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Części książek na temat "Aquaculture pollution"

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Mitra, Abhijit. "Pollution from Aquaculture." In Estuarine Pollution in the Lower Gangetic Delta. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-93305-4_7.

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Boyd, Claude E., and Craig S. Tucker. "Pollution." In Pond Aquaculture Water Quality Management. Springer US, 1998. http://dx.doi.org/10.1007/978-1-4615-5407-3_12.

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Kathijotes, Nicholas, Lubna Alam, and Artemis Kontou. "Aquaculture, coastal pollution and the environment." In Aquaculture Ecosystems. John Wiley & Sons, Ltd, 2015. http://dx.doi.org/10.1002/9781118778531.ch5.

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Imasha, H. U. E., and S. Babel. "Microplastic Sources, Contamination, and Impacts on Aquaculture Organisms." In Plastic Pollution. CRC Press, 2023. http://dx.doi.org/10.1201/9781003137740-7.

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Amin, Adnan, Monisa M. Malik, D. Pamanna, Imtiyaz Qayoom, and Adnan Abubakr. "Perspective of eDNA Application to Control Pollution in Freshwater Ecosystems." In Coldwater Fisheries and Aquaculture Management. Apple Academic Press, 2023. http://dx.doi.org/10.1201/9781003369905-13.

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Abril, Nieves, María José Prieto-Álamo, and Carmen Pueyo. "Functional Genomics Approaches in Marine Pollution and Aquaculture." In Environmental Problems in Marine Biology. CRC Press, 2017. http://dx.doi.org/10.1201/9781315119113-7.

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Kuzucu, Oguzhan, and Mikail Ozcan. "Development of Aquaculture in Karkamiş Dam Lake." In Recent Applications and Biological Activities in Aquaculture and Agriculture. Nobel Tip Kitabevleri, 2024. http://dx.doi.org/10.69860/nobel.9786053359319.4.

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Organic aquaculture involves the production of fish, shellfish and other aquatic creatures in aquatic ecosystems using natural methods, without the use of chemical fertilizers and synthetic pesticides. This cultivation method is of great importance in terms of protecting environmental sustainability and human health. Organic aquaculture contributes positively to ecosystem health. Compared to conventional methods, it preserves biodiversity, improves water quality and prevents the destruction of natural habitats. Avoiding the use of synthetic chemicals allows organisms and microorganisms to surv
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Qu, Jiangqi, Xiujian Zhang, Mu Yang, Jie Huang, and Qingjing Zhang. "Characteristics of Antibiotic Resistance Gene Pollution in Aquaculture Ponds." In Environmental Science and Engineering. Springer Nature Switzerland, 2025. https://doi.org/10.1007/978-3-031-86829-0_25.

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Chen, Lihong, Dongrong Zhang, Hui Yang, et al. "Spatial Distribution of Marine Aquaculture and Estimation of Aquaculture Pollution Load in Xincun Lagoon, Hainan, China." In Environmental Governance, Ecological Remediation and Sustainable Development. Springer Nature Switzerland, 2024. http://dx.doi.org/10.1007/978-3-031-52901-6_61.

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Hartnett, M., and A. M. Cawley. "Mathematical Modelling of the Effects of Marine Aquaculture Developments on Certain Water Quality Parameters." In Water Pollution: Modelling, Measuring and Prediction. Springer Netherlands, 1991. http://dx.doi.org/10.1007/978-94-011-3694-5_20.

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Streszczenia konferencji na temat "Aquaculture pollution"

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Fred-Ahmadu, Omowunmi H., Frederick O. Ahmadu, Funmilayo D. Adewumi, and Emmanuel G. Jolayemi. "Societal impacts of plastic pollution in aquaculture ecosystems – A Review." In 2024 IEEE 5th International Conference on Electro-Computing Technologies for Humanity (NIGERCON). IEEE, 2024. https://doi.org/10.1109/nigercon62786.2024.10926842.

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Беседина, А. В. "WATER POLLUTION AND ITS IMPACT ON THE CONDITION OF FISH." In DEVELOPMENT AND MODERN PROBLEMS OF AQUACULTURE. ООО "ДГТУ-Принт" Адресс полиграфического предприятия 344003 пл Гагарина, зд. 1, 2023. http://dx.doi.org/10.23947/aquaculture.2023.27-29.

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This article explores the issue of water pollution and its impact on the quality of fish. The authors draw attention to the level of water pollution due to industrial emissions, agriculture and other anthropogenic factors. They analyze the environment representing the fish ponds and evaluate the levels of various pollutants such as heavy metals, pesticides, plastics and other substances in the water.
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Cai, Huiwen, Sheng Zhao, Changwen Wu, Aiyi Zhu, Jing Yu, and Xueqing Zhang. "Environmental Pollution and Marine Aquaculture Ecosystem Health Assessment." In 2010 4th International Conference on Bioinformatics and Biomedical Engineering (iCBBE). IEEE, 2010. http://dx.doi.org/10.1109/icbbe.2010.5518091.

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Zitko, V. "Analytical Chemistry Solving Problems in Pollution and Aquaculture." In OCEANS '87. IEEE, 1987. http://dx.doi.org/10.1109/oceans.1987.1160621.

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Busto, Santiago Otamendi. "Off-Shore Aquaculture." In ASME 2002 21st International Conference on Offshore Mechanics and Arctic Engineering. ASMEDC, 2002. http://dx.doi.org/10.1115/omae2002-28249.

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A series of problems affecting the fish breedings, the littoral coast area and the companies’ balance sheet are starting to appear in the development of littoral acquaculture. The following document will analize the installation of the Off-Shore ship for the fattening and transport of 2.000 TN of pelagic fish. This ship of big dimensions carries out the breeding in deep waters and in areas far away from the coast so as not to affect the environmental changes (storms, pollution, red tides…). The energy needs of the ship are fulfilled by a windmill and a system that uses the waves’ oscillation e
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Гуськов, Г. Е. "AQUACULTURE AS A SOURCE OF DANGER OF BIOLOGICAL AND GENETIC POLLUTION OF NATURAL RESERVOIRS." In DEVELOPMENT AND MODERN PROBLEMS OF AQUACULTURE. ООО "ДГТУ-Принт" Адресс полиграфического предприятия 344003 пл Гагарина, зд. 1, 2023. http://dx.doi.org/10.23947/aquaculture.2023.30-33.

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Due to the growing anthropogenic load on the ichthyofauna of natural reservoirs and due to the gradual depletion of natural aquatic biological resources, the question of the widespread development of aquaculture, in particular mariculture, is becoming increasingly acute. However, non-compliance with the developed measures to regulate the introduction of aquaculture objects can negatively affect the ichthyocenosis of natural reservoirs and even contribute to the extinction of certain species of native ichthyofauna.
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Нейдорф, А. Р., А. Д. Бабичев-Ганага, and В. А. Божко. "PROSPECTS FOR BIOREMEDIATION OF SMALL RESERVOIRS BY CREATING ARTIFICIAL PHYTOCENOSES." In DEVELOPMENT AND MODERN PROBLEMS OF AQUACULTURE. ООО "ДГТУ-Принт" Адресс полиграфического предприятия 344003 пл Гагарина, зд. 1, 2023. http://dx.doi.org/10.23947/aquaculture.2023.76-78.

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The article discusses the principles and prospects of creating artificial phytocenoses for bioremediation of small reservoirs in the steppe climatic zone. Pollution of water bodies leads to an increase in the content of nutrients in the water, which leads to a deterioration of the hydrochemical and microbiological qualities of water. The use of plants accumulating biological pollutants and toxic substances can become an alternative for small reservoirs to the use of mechanical cleaning or the use of chemical detergents that suppress the accumulation of biogenic substances.
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Voskoboinikov, G. M. "THE ALGAE-MACROPHYTES IN THE SANITARY AQUACULTURE." In Development and Modern Problems of Aquaculture. ДГТУ-Принт, 2024. https://doi.org/10.23947/aquaculture.2024.42-43.

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The problem of oil and oil products pollution of the coastal waters and the lack of technologies for preventive and final purification from these toxicants served as the reason for developing the technology of the sanitary algae plantation (the SAP), based on the symbiotic association of algae macrophyte and hydrocarbon-oxidizing bacteria. The SAP helps to clean the coastal waters from oil products both on the surface and in the water column. The main types of algae used in this technology in the Barents Sea are Fucus vesiculosus and Saccharina latissima, which have shown the greatest efficien
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Peng, Yixing, Shigeru Tabeta, and Fengjun Duan. "Sustainability Assessment of Offshore Aquaculture System With Self-Sufficient Energy and Feed." In ASME 2024 43rd International Conference on Ocean, Offshore and Arctic Engineering. American Society of Mechanical Engineers, 2024. http://dx.doi.org/10.1115/omae2024-121132.

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Abstract Aquaculture is attracting considerable attention due to market growth and potential environmental benefits but traditional coastal aquaculture systems create pollution and threaten marine ecosystems. Hence, there’s a need for more environmentally-friendly aquaculture approaches. Also, the prices of fish feed are rising, impacting the cost of conventional aquaculture systems as well as energy price fluctuation. The multi-purpose platform integrating marine renewable energy production, fish aquaculture, microalgae cultivation, and processing facilities has been designed to be economical
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Jeong, S. J., J. K. Shin, J. Y. Lee, and J. H. Yoon. "Development of the New Aquaculture Fishcage for Open Ocean Areas." In 25th International Conference on Offshore Mechanics and Arctic Engineering. ASMEDC, 2006. http://dx.doi.org/10.1115/omae2006-92534.

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Until now, Korean aquaculture industry has been grown largely in quality and quantity. However, an increase of quantity has caused lots of problems like sea pollution lately. Nearly 82% of Korean aquaculture farms had been installed mainly at inshore of the southern sea, so, sewage, factory wastes, high density of farms at the limited area and autoinfection have deteriorated inshore fisheries. Now, the open sea has been on the rise for the solution to these problems since it has clear seawater that will expect to decrease the environmental pollution with much current. As a matter of fact, it i
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