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Artykuły w czasopismach na temat "Aquaculture – Indonesia"

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Alfiansah, Yustian Rovi. "Aggregates in aquatic ecosystems and implications for aquacultures." Marine Research in Indonesia 45, no. 2 (December 31, 2020): 87–96. http://dx.doi.org/10.14203/mri.v45i2.584.

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Agglomerations of suspended particulate matter serve various roles in aquatic ecosystems. They participate in nutrient and energy fluxes and are involved in important food web processes. While comprehensive studies on aggregates are available from natural freshwater and marine ecosystems, little is known about the roles of aggregates in aquacultures, particularly in shrimp pond farming. As particle-rich systems, shrimp ponds and marine aquaculture (mariculture) areas constitute interesting objects for aggregate studies, particularly as a source of natural feed, particle fluxes, microbial commu
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Yarmoshuk, Aaron N. "Aquaculture in Indonesia." Ocean Yearbook Online 11, no. 1 (1994): 144–56. http://dx.doi.org/10.1163/221160094x00078.

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Setyono, Dwi Eny Djoko. "KARAKTERISTIK BIOLOGI KUDA LAUT (Hippocampus spp) SEBAGAI PENGETAHUAN DASAR BUDIDAYANYA." OSEANA 45, no. 1 (April 28, 2020): 70–81. http://dx.doi.org/10.14203/oseana.2020.vol.45no.1.57.

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Many species of marine organisms live in Indonesian waters have a potential for aquaculture (fishes, crustaceans, mollusc, echinoderm, and algae). They are cultured for food resources, the basis for cosmetic and natural medicine, and also as ornamental fish for marine aquarium. Seahorse (Syngnathidae: Hippocampus) is a marine fish which has high ecological and economic value. Fishing pressure of wild seahorse increased significantly when buyers offering an attractive price for the catch. High levels of fishing effort keep the wild stocks of seahorses well below the level that could be supporte
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Senff, Paula, Stefan Partelow, Lisa Fajar Indriana, Nurliah Buhari, and Andreas Kunzmann. "Improving pond aquaculture production on Lombok, Indonesia." Aquaculture 497 (December 2018): 64–73. http://dx.doi.org/10.1016/j.aquaculture.2018.07.027.

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Zikra, Muhammad, Haryo Dwito Armono, and Fahrizal Pratama. "Wave Modeling for the Establishment Potential Area of Offshore Aquaculture in Indonesia." Fluids 5, no. 4 (December 1, 2020): 229. http://dx.doi.org/10.3390/fluids5040229.

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Aquaculture is expected to further improve in the future and can provide 57 percent of fish for human consumption by 2025. In Indonesia, the aquaculture sector produced 5.77% of the world total production in 2014 and increases annually by, on average, 0.62%. Prigi Bay, located in the south of east Java, is one potential area to develop sustainable aquaculture in Indonesia. This study presents numerical wave modeling to investigate the potential area for offshore aquaculture in Prigi Bay. The method used Delft3D Flow and CG WAVE model to simulate wave and current. The superimposed analysis is u
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A. Rimmer, Michael. "MARICULTURE DEVELOPMENT IN INDONESIA: Prospects and Constraints." Indonesian Aquaculture Journal 5, no. 2 (December 31, 2010): 187. http://dx.doi.org/10.15578/iaj.5.2.2010.187-201.

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Mariculture is an important component of Indonesian fisheries and aquaculture production, directly contributing an estimated US$ 320 million in 2008. Because most mariculture production is focussed on producing for export markets, mariculture production is an important source of foreign earnings for the Indonesian economy. This paper reviews the current status and prospects for continuing development of mariculture in Indonesia. Currently the major mariculture commodity in Indonesia is seaweed for carrageenan production. Seaweed production accounts for 98% of total Indonesian mariculture produ
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Lukman, Kevin Muhamad, Yuta Uchiyama, and Ryo Kohsaka. "Sustainable aquaculture to ensure coexistence: Perceptions of aquaculture farmers in East Kalimantan, Indonesia." Ocean & Coastal Management 213 (November 2021): 105839. http://dx.doi.org/10.1016/j.ocecoaman.2021.105839.

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Oktopura, A. A. D., A. Fauzi, K. Sugema, and H. Mulyati. "Aquaculture performance in Indonesia: economics and social perspectives." IOP Conference Series: Earth and Environmental Science 493 (June 19, 2020): 012003. http://dx.doi.org/10.1088/1755-1315/493/1/012003.

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Hastuti, Dwi, Akbar Kurniawan, and Juhriyansyah Dalle. "DECISION SUPPORT SYSTEM FOR DETERMINING TYPE OF FISH BASED ON WATER QUALITY." Fish Scientiae 7, no. 2 (December 18, 2017): 216. http://dx.doi.org/10.20527/fs.v1i2.4547.

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Indonesia is an archipelagic country with an area of 5.8 million km2 or equivalent to 2/3 in Indonesia, The territorial waters of Indonesia have been recognized as the Nation's Insight by the United Nations Convention on the Law of the Sea (UNCLOS) in 1982, but with the vast waters of Indonesia, do not make Indonesia free from imported fish from various countries. Inappropriate aquaculture production can result in financial losses, energy, time, and others. So knowledge of intensive aquaculture production is needed. Knowledge of aquaculture production that can be obtained by fish farmers and r
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BUDIHARJO, AGUNG. "Selection and potential aquaculture of “wader” fish of the Genus Rasbora." Biodiversitas, Journal of Biological Diversity 3, no. 2 (July 1, 2002): 225–30. http://dx.doi.org/10.13057/biodiv/d030203.

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Rozprawy doktorskie na temat "Aquaculture – Indonesia"

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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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-, Tarunamulia Biological Earth &amp Environmental Sciences Faculty of Science UNSW. "Application of fuzzy logic, GIS and remote sensing to the assessment of environmental factors for extensive brackishwater aquaculture in Indonesia." Publisher:University of New South Wales. Biological, Earth & Environmental Sciences, 2008. http://handle.unsw.edu.au/1959.4/41444.

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Extensive brackishwater aquaculture, which is a dominant land-based aquaculture system in Indonesia, has experienced variable success in most farming locations in the country due to poor understanding of spatial assessment of environmental factors and rudimentary site selection criteria. Despite tremendous potential, the application of GIS and remote sensing in spatial assessment has tended to focus on Boolean (Crisp) logic that is often unable to effectively handle the complexity and spatial variability of key environmental factors for the development of aquaculture. This study explored the
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Abdul, Baten Mohammed. "Property rights in mangroves : A case study of the Mahakam Delta, East Kalimantan, Indonesia." Thesis, Stockholms universitet, Stockholm Resilience Centre, 2009. http://urn.kb.se/resolve?urn=urn:nbn:se:su:diva-50952.

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Mangroves represent an important source of livelihood for many poor people acrossthe world. However, insufficient policy responses relating to mangrove conservation,combined with the lack of clearly defined property rights contribute extensively to theconversion of mangroves to alternative uses, in particular shrimp aquaculture. On thebasis of relevant theoretical perspectives on property rights, this Master’s thesisanalyses various formal and informal institutions and existing governancemechanisms that determine natural resources management in the Mahakam delta, EastKalimantan, Indonesia. By
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Munzir, Abdullah. "Technical efficiency performance of small fish farmers' production in West Sumatra, Indonesia : a stochastic frontier analysis on floating net cage aquaculture development /." Beuren ; Stuttgart : Grauer, 2001. http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&doc_number=009999212&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA.

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Rahmania, Rinny. "Etude des mangroves à partir de l’analyse des changements dans les images de canopée à très haute résolution spatiale pour une meilleure gestion des côtes indonésiennes." Thesis, Montpellier, 2016. http://www.theses.fr/2016MONTT168/document.

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La situation des mangroves dans le monde reste préoccupante malgré la prise de conscience de leur rôle dans le maintien de la biodiversité côtière. Les pratiques non durables de l’aquaculture extensive sont toujours majoritairement mises en cause. Le besoin d’une meilleure gestion côtière se fait sentir depuis une vingtaine d’années. Il faut reconnaitre que les avancées restent insuffisantes, particulièrement en Indonésie. Ce travail de thèse a été réalisé dans le cadre du projet INDESO. Ses objectifs étaient de décrire les changements dans les mangroves en termes de superficie, de structurati
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Gusmawati, Niken Financia. "Which remote sensing indicators to survey shrimp farms in activity and to rehabilitate abandoned sites?" Thesis, Nouvelle Calédonie, 2017. http://www.theses.fr/2017NCAL0008/document.

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La production de crevettes en Indonésie est en constante augmentation de part sa surface et l'intensification de ses élevages. Cette filière contribue au développement économique en milieu rural, à la sécurité alimentaire nationale, à l'emploi et au commerce extérieur. Cependant, ce développement rapide s'est accompagné d'effets écologiques et sociaux négatifs. Le développement de maladies dans les élevages ainsi que la dégradation de l'environnement côtier a conduit à l'abandon de 250 000 hectares de bassins dans le pays. Leur réhabilitation dans le cadre d'une activité durable est aujourd'hu
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Gozali, Andriyanto, and 吳德成. "BUSINESS MODEL ANALYSIS ON IOT-BASED AQUACULTURE INDUSTRY IN INDONESIA." Thesis, 2019. http://ndltd.ncl.edu.tw/handle/2kg5jf.

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碩士<br>國立臺灣科技大學<br>管理學院MBA<br>107<br>Nowadays, fish is considered as a good source of protein alongside chicken, beef, pork, and lamb. However, the consumption rate is lower as compared to the others. Even though the consumption rate is relatively low, the number is rising annually and projected to increase in the future. Fishery products come from two sources, open fishing and aquaculture. In the aquaculture industry, Indonesia is the third biggest producer in the world. Indonesian fishery industry is filled with some challenges, such as ineffective production and limited access to technology.
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YussacTallar, Robby, and 蔡約信. "STUDY ON INTEGRATED EVALUATION METHODOLOGY FOR AQUACULTURE LAKES PRESERVATION IN INDONESIA." Thesis, 2015. http://ndltd.ncl.edu.tw/handle/45422956131066975872.

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博士<br>國立成功大學<br>水利及海洋工程學系<br>103<br>The relationship between land use and water quality was complex and likely to be site-specific, and more work was required to quantify this. This paper first reviewed the water quality status using three WQI methods, and analyzed by using Principle Component Analysis (PCA) and Cluster Analysis (CA) to reduce data of some water quality parameters, as well as to group the various waterbodies based on their water quality characteristics. It thus presented a comprehensive assessment of watershed and waterbody conditions in Depok Area, and their relationship with
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Cheng, Wen-Sheng, and 鄭文生. "The Investment Strategy of Taiwanese Grouper Aquaculture in Indonesia: A Case Study of Bali Island Area." Thesis, 2012. http://ndltd.ncl.edu.tw/handle/82479593411782996500.

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碩士<br>國立屏東科技大學<br>農企業管理系所<br>100<br>As aquaculture development in Taiwan is limited by the natural environments, to invest business of grouper culture in Indonesia might be a favorable choice due to the advantage of low production cost. Some Taiwanese investments of grouper aquaculture in Indonesia are successful but some are not. The objective of this study is to investigate the investment strategy of Taiwanese grouper aquaculture in Bali Island area, Indonesia. That global grouper aquaculture and grouper aquaculture industry in Indonesia are analyzed is followed by two case studies of Ta
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Afero, Farok, and 艾飛洛. "BIOECONOMIC ANALYSIS OF TIGER GROUPER (Epinephelus fuscoguttatus) AND HUMPBACK GROUPER (Cromileptes altivelis) COMMERCIAL CAGE AQUACULTURE IN INDONESIA." Thesis, 2010. http://ndltd.ncl.edu.tw/handle/67878723626229670066.

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博士<br>國立臺灣海洋大學<br>水產養殖學系<br>98<br>This study presents an economic analysis of tiger and humpback groupers at different locations and production scales in Indonesia. The results highlight Bali incurs cumulative cash flow USD 30,086.25, net present value USD 17,095.68, B/C > 1 and the best location with regard profitability. Large-scale farming is economically viable enterprise with a 5 year projected cumulative cash of USD 64,340.63; a NPV of USD 36,981.98; a benefit cost ratio of 1.33; an internal rate of return of 157%; and a payback period of 0.57 year. Financial analysis of humpback grouper
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Książki na temat "Aquaculture – Indonesia"

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Indonesia. Departemen Kelautan dan Perikanan. ACIAR activities in fisheries & aquaculture in Indonesia, 2006-2007. Jakarta]: Departemen Kelautan dan Perikanan, 2007.

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Symposium on Coastal Zone Management (1992 Boger, Indonesia). Proceedings of the Symposium on Coastal Zone Management: With emphasis on brackishwater aquaculture, Bogor, Indonesia, 3-5 March 1992. Edited by Davis Derrin and Sukimin Sutrisno. Bogor, Indonesia: Southeast Asian Regional Centre for Tropical Biology, 1992.

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Regional, Workshop on Preparedness and Response to Aquatic Animal Health Emergencies (2004 Jakarta Indonesia). Regional workshop on preparedness and response to aquatic animal health emergencies in Asia: 21-23 September 2004, Jakarta, Indonesia. Rome: Food and Agriculture Organization of the United Nations, 2005.

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Symposium on Tropical Fish Health Management in Aquaculture (1991 Bogor, Indonesia). Proceedings of the Symposium on Tropical Fish Health Management in Aquaculture, Bogor, Indonesia, 14-16 May 1991. Edited by Langdon Jeremy S, Enriquez Gloria L, and Sukimin Sutrisno. Bogor, Indonesia: Southeast Asian Regional Centre for Tropical Biology, 1992.

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Symposium, on Fish Genetics and Its Application to Aquaculture and Fishery Management (1992 Bogor Indonesia). Proceedings of the Symposium on Fish Genetics and Its Application to Aquaculture and Fishery Management, Bogor, Indonesia, 8-10 December 1992. Bogor, Indonesia: Southeast Asian Regional Centre for Tropical Biology, 1993.

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Sudradjat, Achmad. Glosarium akuakultur. Bandung: Yrama Widya, 2011.

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Indonesian Aquaculture (2007 Bali, Indonesia). Indonesian aquaculture 2007, 30 July-2 August 2007, Hotel Inna Grand Bali Beach, Sanur: Sustainable aquaculture and food safety. [Jakarta]: Directorate General of Aquaculture, Ministry of Marine Affairs and Fisheries, Republic of Indonesia, 2007.

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Indonesian, Aquaculture (2007 Sanur Indonesia). Indonesian Aquaculture 2007: 30 July-2 August 2007, Hotel Inna Grand Bali Beach, Sanur : sustainable aquaculture and food safety. [Jakarta]: Ministry of Marine Affairs and Fisheries, 2007.

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A, Costa-Pierce Barry, and Soemarwoto Otto 1926-, eds. Reservoir fisheries and aquaculture development for resettlement in Indonesia. Jakarta, Indonesia: Perusahaan Umum Listrik Negara, 1990.

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A. H. M. Bouwmans (Editor), ed. Aquacultural Research in Asia: Management Techniques and Nutrition. Proceedings of the Asian Seminar on Aquaculture, Malang Indonesia,November 1988. Center Agricultural Pub & Document, 1989.

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Części książek na temat "Aquaculture – Indonesia"

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Tuwo, Ambo, and Joeharnani Tresnati. "Sea Cucumber Farming in Southeast Asia (Malaysia, Philippines, Indonesia, Vietnam)." In Echinoderm Aquaculture, 331–52. Hoboken, NJ, USA: John Wiley & Sons, Inc, 2015. http://dx.doi.org/10.1002/9781119005810.ch15.

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Jones, Clive M., Tuan Le Anh, and Bayu Priyambodo. "Lobster Aquaculture Development in Vietnam and Indonesia." In Lobsters: Biology, Fisheries and Aquaculture, 541–70. Singapore: Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-32-9094-5_12.

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Dahril, Tengku. "A study of the freshwater rotifer Brachionus calyciflorus in Pekanbaru, Riau, Indonesia." In Live Food in Aquaculture, 211–15. Dordrecht: Springer Netherlands, 1997. http://dx.doi.org/10.1007/978-94-017-2097-7_33.

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Sugama, Ketut. "Public Policy for Sustainable Development of Milkfish (Chanos Chanos) Aquaculture in Indonesia." In Species and System Selection for Sustainable Aquaculture, 347–56. Ames, Iowa, USA: Blackwell Publishing, 2007. http://dx.doi.org/10.1002/9780470277867.ch23.

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Devic, Emilie. "Insect production and utilization of insect products in Asia." In Insects as animal feed: novel ingredients for use in pet, aquaculture and livestock diets, 72–74. Wallingford: CABI, 2021. http://dx.doi.org/10.1079/9781789245929.0009.

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Abstract This chapter describes the production, processing, nutritive value and use of insects as feed for pets and livestock in China, Cambodia, Indonesia, Thailand, Malaysia and other Asian countries.
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Collier, William L. "Aquaculture and Artisanal Fisheries." In Agricultural and Rural Development in Indonesia, 275–94. Routledge, 2019. http://dx.doi.org/10.4324/9780429048364-23.

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Snellen, W. "Aquaculture, anophelines and environmental solutions from Indonesia." In Water Resources. Spon Press, 1999. http://dx.doi.org/10.4324/9780203027851.ch13.

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"Aquaculture, anophelines and environmental solutions from Indonesia." In Water Resources, 217–29. CRC Press, 1998. http://dx.doi.org/10.4324/9780203027851-47.

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Boyd, Claude E., and Lauren N. Jescovitch. "Penaeid Shrimp Aquaculture." In Fisheries and Aquaculture, 233–58. Oxford University Press, 2020. http://dx.doi.org/10.1093/oso/9780190865627.003.0010.

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Aquaculture supplies about 60% of the current market demand for shrimp. The entire increase for future demands must come from aquaculture since the capture from natural waters is not expected to increase. Shrimp aquaculture is conducted in many tropical and subtropical countries, but six countries—China, Indonesia, Vietnam, India, Ecuador, and Thailand—produce about 85% of cultured shrimp. Shrimp aquaculture relies on penaeid shrimp species, and two species, Litopenaeus vannamei and Penaeus monodon, account for most of the production. Shrimp aquaculture had an annual value of USD23.6 billion in 2014, making it a major item in international trade. Shrimp are produced almost exclusively in coastal ponds filled with estuarine or seawater. Small shrimp for stocking in ponds are produced in hatcheries mostly from farm-reared broodstock. Production intensity in ponds ranged from 200 to 500 kg/ha/crop in fertilized ponds to 5,000–10,000 kg/ha/crop in ponds with feeding and mechanical aeration. Up to three crops per year may be produced depending upon the location, species, and culture method. Shrimp culture can be seriously affected by viral diseases, and new diseases have been a constant threat to production success. The future of shrimp aquaculture is bright, but for it to reach its full potential, improved broodstock, high health, specific pathogen-free shrimp for stocking, better biosecurity for prevention of disease epidemics, better pond management practices, and more attention to avoiding negative environmental impacts will be necessary.
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Muluk, Chairul, and Conner Bailey. "Social and Environmental Impacts of Coastal Aquaculture in Indonesia." In Aquacultural Development, 193–209. Routledge, 2019. http://dx.doi.org/10.4324/9780429046773-11.

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Streszczenia konferencji na temat "Aquaculture – Indonesia"

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Gunadi, Bambang, Adam Robisalmi, and Joni Haryadi. "Evaluation of growth performance of three strains Tilapia in brackish water pond in West Java, Indonesia." In The International Conference on Fisheries and Aquaculture. The International Institute of Knowledge Management, 2021. http://dx.doi.org/10.17501/23861282.2020.6102.

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Zainudin, Agus, Hadi Sudarmo, and Helvi Ardana Reswari. "PRODUCTION AND OIL CONTENT OF PHYSIC NUT (Jatropha curcas L.) FOR THE FIRST AND SECOND HARVEST YEARS IN EAST NUSA TENGGARA-INDONESIA." In International Conference on Fisheries and Aquaculture. TIIKM, 2016. http://dx.doi.org/10.17501/icoaf.2016.2104.

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Sachoemar, Suhendar I., Suhendar I. Sachoemar, Tetsuo Yanagi, Tetsuo Yanagi, Mitsutaku Makino, Mitsutaku Makino, Akihiko Morimoto, Akihiko Morimoto, Ratu Siti Aliah, and Ratu Siti Aliah. "IMPLEMENTATION OF SUSTAINABLE AQUACULTURE AS A MODEL OF SATO UMI TO IMPROVE PRODUCTIVITY WITHIN COASTAL AREA OF INDONESIA." In Managing risks to coastal regions and communities in a changing world. Academus Publishing, 2017. http://dx.doi.org/10.21610/conferencearticle_58b4316061289.

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The development of sustainable model of aquaculture by applying Sato Umi concept within coastal area of Indonesia has expanded from the center of first experiment in the northern coastal area of west Java to central Java (western Indonesia) and Bantaeng in the South Sulawesi of central Indonesia. The similar program has also been proposed for Maluku Province in the eastern part of Indonesia. In the next 5 years, Indonesia is developing the Techno Parks Program in some areas, in which aquaculture and fisheries activities development on the base of Sato Umi concept in the coastal area are involv
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Sachoemar, Suhendar I., Suhendar I. Sachoemar, Tetsuo Yanagi, Tetsuo Yanagi, Mitsutaku Makino, Mitsutaku Makino, Akihiko Morimoto, Akihiko Morimoto, Ratu Siti Aliah, and Ratu Siti Aliah. "IMPLEMENTATION OF SUSTAINABLE AQUACULTURE AS A MODEL OF SATO UMI TO IMPROVE PRODUCTIVITY WITHIN COASTAL AREA OF INDONESIA." In Managing risks to coastal regions and communities in a changing world. Academus Publishing, 2017. http://dx.doi.org/10.31519/conferencearticle_5b1b9409abd501.00752468.

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The development of sustainable model of aquaculture by applying Sato Umi concept within coastal area of Indonesia has expanded from the center of first experiment in the northern coastal area of west Java to central Java (western Indonesia) and Bantaeng in the South Sulawesi of central Indonesia. The similar program has also been proposed for Maluku Province in the eastern part of Indonesia. In the next 5 years, Indonesia is developing the Techno Parks Program in some areas, in which aquaculture and fisheries activities development on the base of Sato Umi concept in the coastal area are involv
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Firman, Firman, Nuddin Harahab, Amin Leksono, and Hasnidar Hasnidar. "Coastal Water Quality Analysis for Brackish Water Aquaculture Development in Pasangkayu Regency." In Proceedings of the 13th International Interdisciplinary Studies Seminar, IISS 2019, 30-31 October 2019, Malang, Indonesia. EAI, 2020. http://dx.doi.org/10.4108/eai.23-10-2019.2293018.

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Maftuhah, Diesta Iva, Putu Dana Karningsih, Yeyes Mulyadi, and Silvianita. "Social Mapping Framework to Identify Readiness of Sustainable Community based Offshore Aquaculture: Case Study - South Coast of Malang, Indonesia." In International Conference on Industrial Technology. SCITEPRESS - Science and Technology Publications, 2019. http://dx.doi.org/10.5220/0009424401500156.

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Septiani, Stevia, Dikky Indrawan, and Wita Ermawati. "Analysis of e-readiness on fish disease diagnosis applications and e-commerce applications to improve the competitiveness of the aquaculture sector in Indonesia." In Proceedings of the Conference of the International Society for Economics and Social Sciences of Animal Health - South East Asia 2019 (ISESSAH-SEA 2019). Paris, France: Atlantis Press, 2019. http://dx.doi.org/10.2991/isessah-19.2019.32.

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Fariedah, Fani, Maulina Nela, and Ahmad Abtokhi. "The Use of Concrete Ponds As a Medium to Spiny Lobster Rearing In Marine Aquaculture Installation Boncong, Tuban." In Proceedings of the 2nd International Conference on Quran and Hadith Studies Information Technology and Media in Conjunction with the 1st International Conference on Islam, Science and Technology, ICONQUHAS & ICONIST, Bandung, October 2-4, 2018, Indonesia. EAI, 2020. http://dx.doi.org/10.4108/eai.2-10-2018.2295404.

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Eto, Hiroaki, Ryo Sekiguchi, Hitomi Kashima, Tomoki Ikoma, Yasuhiro Aida, and Koichi Masuda. "A Fundamental Study on Motion Characteristics of the Large-Scale Floating Coal Transshipment Station by Elastic Mooring Lines." In ASME 2020 39th International Conference on Ocean, Offshore and Arctic Engineering. American Society of Mechanical Engineers, 2020. http://dx.doi.org/10.1115/omae2020-18958.

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Abstract This paper describes the motion characteristics and cargo handling efficiency of the Large-Scale Floating Coal Transshipment Station (LFTS). Indonesia is the main country supplying coal in the Asia-Pacific region, it is important to ensure stable coal supply to Japan. Because the topography of the seabed near East Kalimantan Island, Indonesia’s main coal production area, is shallow, it is difficult for bulk carriers to reach the coast. And then, Large-scale Floating Transposition Station for Loading Coal (hereafter LFTS) was proposed, which will be used as a transposition station betw
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