• Title/Summary/Keyword: 사육환경

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지자체 오리산업 전격해부 [경기도 AI 방역정책] - 가축전염병 예방 쾌적한 사육환경 중점

  • 한국오리협회
    • Monthly Duck's Village
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    • s.239
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    • pp.6-12
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    • 2023
  • 경기도는 올해 4월 기준 전국 사육 대비 2% 정도 규모인 12농가 15만마리의 오리를 사육하고 있으며 주로 안성 지역에 사육이 집중돼 있다. 경기도의 오리 정책은 가축전염병 예방과 쾌적한 사육환경 조성을 중점으로 오리 바이러스간염 예방약품 지원, 방역선진형 농장 조성, CCTV 등 방역인프라 지원, 동절기 가금농가 사육제한 휴업보상, 축사시설현대화, 사료구매 지원, 가금 경쟁력 강화사업 등을 추진하고 있다. 경기도의 조류인플루엔자(AI) 방역상황을 점검해 보고 오리 방역정책을 중점적으로 살펴보자.

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ANALYSIS ON THE ACTUAL CONDITION FOR THE MODEL DEVELOPMENT ON THE MECHANIZATION OF PIG FARM (양돈의 기계화모델 개발을 위한 실태분석)

  • 이성현;오권영;강창호
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 1997.11a
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    • pp.44-50
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    • 1997
  • 돼지의 사육농가 호수 및 총사육 두수는 1980년 503천호, 1,784천두에서 1995년 46천호, 6,461천두로 농가호수의 급격한 감소에 비해 전체사육두수는 3.62배나 증가하였다. 지난날 양돈업은 농가에서 식사후 남은 잔반을 주면서 사육하는 등 다수의 농가에서 소규모의 양돈업을 하는 형태였으나 지금의 상황은 대부분의 소규모 사육농가는 자취를 감추고 있으며 한 농가에서 다두의 양돈을 사육하고 있는 집약적인 밀식사육을 하고 있는 실정이다. (중략)

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A Study on Improvement of Protaetia brevitarsis Breeding Environment using Soil Sensor (토양센서를 이용한 흰점박이꽃무지 사육 환경 개선에 대한 연구)

  • Yoon, Ji-Hae;Kang, Sun-Kyoung
    • Journal of Convergence for Information Technology
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    • v.8 no.1
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    • pp.89-94
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    • 2018
  • Recently, interest and necessity for the insect industry has been increasing. Insects, which are referred to as the second food, are being used in various fields. Interest in mass production of insects has been increasing in various fields, and the need for research on environmental analysis for them is also increasing. In some countries in other developed countries, automated breeding systems have been developed that incorporate IoT. However, it is limited to be applied to many kinds of insects, and the price is so expensive that it has not been utilized in farm households. Therefore, we have carried out a study to make an optimal system that can be used practically in a farmhouse. Protaetia brevitarsis used for medicinal and edible purposes. It automatically checks the moisture of sawdust medium, which has the greatest influence on the environment of the slugs, which is the third larva of the grasshopper, and informs the result through the LED. It is applied to the environment to create an optimal breeding environment. I want to make it.

농장탐방 : 초가농장 - 육계농장 - 아름다운 농장 가꾸기 실현

  • Jang, Seong-Yeong
    • KOREAN POULTRY JOURNAL
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    • v.42 no.7
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    • pp.118-120
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    • 2010
  • 경기도 포천시에서 21년째 육계를 사육하는 농장이 있다. 4만5천수 사육에서 금년 초 11만수 규모의 최신식 무창계사를 신축해 첫 출하한 초가농장을 소개하고자 한다. 친환경 사육조건을 갖춰 청정육을 공급하고자 무항생제 인증과 HACCP인증을 준비 중인 이 농장은 최신식 계사 설비나 주변 환경 등 내 외부 청정화 사육환경을 조성해 아름다운농장 가꾸기를 실천하고 있다. 대한양계협회 포천채란지부장이자 포천축협 감사 등 지역 양계산업 발전을 위해 활동하는 초가농장 정영상 대표를 만나 보았다.

Current status and future of insect smart factory farm using ICT technology (ICT기술을 활용한 곤충스마트팩토리팜의 현황과 미래)

  • Seok, Young-Seek
    • Food Science and Industry
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    • v.55 no.2
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    • pp.188-202
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    • 2022
  • In the insect industry, as the scope of application of insects is expanded from pet insects and natural enemies to feed, edible and medicinal insects, the demand for quality control of insect raw materials is increasing, and interest in securing the safety of insect products is increasing. In the process of expanding the industrial scale, controlling the temperature and humidity and air quality in the insect breeding room and preventing the spread of pathogens and other pollutants are important success factors. It requires a controlled environment under the operating system. European commercial insect breeding facilities have attracted considerable investor interest, and insect companies are building large-scale production facilities, which became possible after the EU approved the use of insect protein as feedstock for fish farming in July 2017. Other fields, such as food and medicine, have also accelerated the application of cutting-edge technology. In the future, the global insect industry will purchase eggs or small larvae from suppliers and a system that focuses on the larval fattening, i.e., production raw material, until the insects mature, and a system that handles the entire production process from egg laying, harvesting, and initial pre-treatment of larvae., increasingly subdivided into large-scale production systems that cover all stages of insect larvae production and further processing steps such as milling, fat removal and protein or fat fractionation. In Korea, research and development of insect smart factory farms using artificial intelligence and ICT is accelerating, so insects can be used as carbon-free materials in secondary industries such as natural plastics or natural molding materials as well as existing feed and food. A Korean-style customized breeding system for shortening the breeding period or enhancing functionality is expected to be developed soon.

친환경축산을 위한 오리 사양관리

  • 한국오리협회
    • Monthly Duck's Village
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    • s.68
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    • pp.48-56
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    • 2009
  • 현대와 같이 산업사회로 발달되기 이전의 자연생태계는 행복하였다. 청정한 태양 빛 아래 맑은 공기, 물, 흙과 나무가 어우러진 자연의 환경에서 엄연한 먹이사슬질서 속에서 살아 왔었는데, 인구증가와 산업사회로 발전하면서 대량수요가 요구되면서 그들은 점차 행복한 삶의 터전이 없어지고, 강제로 억제시킨 극도의 열악한 집단사육환경에 적응하면서 살아갈 수밖에 없게 되면서 먹이사슬에서 부작용과 역기능이 발생되기 시작하였다. 집단사육장환경을 획기적으로 개선해야 된다. 태양빛이 완전 차단되고 밀폐된 공간에서 집단사육시키고 있는 닭, 오리, 돼지가 정상적으로 생장할 수 있도록 적어도 자연환경에 가까운 밝고 청정한 환경으로 개선시켜야 된다. 사육동물들이 정상적으로 생장할 수 있도록 자연환경과 버금가는 생태환경으로 개선시켜 주어야만 오리들이 건강하게 성장하고 면역력이 증강되어 조류인플루엔자와 같이 원인불명의 질병에 감염되지 않을 것이다. 현실적으로 모든 실내 생태계의 성장을 활성화시키면서 면역력을 증강시킬 수 있는 생명에너지 빛(Bioenergetic Rays)을 방사하는 차세대 조명기술로 집단사육장의 실내를 획기적으로 밝게 하고, 실내의 탁한 공기가 신선한 외부공기로 충분히 순환이 될 수 있도록 반 밀폐구조로 개조해야 한다. 그리고 한 마리 당 활동공간을 넓혀 주어야 한다.

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Application of Channel Type Aquaculture System to the Complex Facilities with Tilapia Rearing and Hydroponics (양어수경 복합시설에 수로형 사육시설의 적용)

  • 이병일;이준구;홍상근;홍석우;배용수;김기덕
    • Journal of Bio-Environment Control
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    • v.8 no.3
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    • pp.209-215
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    • 1999
  • In order to develop facility for complex farming with aquaculture and vegetable nutrient culture and to investigate growth of tilapia and water quality in the channel type aquaculture system, these experiments were carried out. When tilapia(Tilapia nilotica) was reared in the channel type aquaculture system, Quality of culture water and growth of tilapia were normal. And the growth of tilapia in the channel type and round type aquaculture system was much the same. Channel type aquaculture facilities was applicable to the dual culture system for aquaculture and vegetable culture. Channel type integrated system was composed of aquaculture and sandculture bed, and it was thought that suitable size of the system was about 1.4m(width) $\times$ 1m(height) $\times$ 20m(length).

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Effects of an Unexpected Change in Housing Environment on Stress in Poultry (급격한 사육환경의 변화가 가금의 생산성과 스트레스에 미치는 영향)

  • Kim, Jimin;Yoon, Hyung-sook;Hwangbo, Jong;Kim, Sang-Ho;Choi, Yang-Ho
    • Journal of Animal Environmental Science
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    • v.18 no.3
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    • pp.183-190
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    • 2012
  • The objective of this study was to evaluate the effects of an unexpected change in housing environment on stress in poultry. Laying hens (Hy-line Brown), adapted to a free-range housing system for more than a month, were randomly divided into two groups to be subjected to an unexpected change of their housing environment: one half of them were individually housed into conventional battery cages and the other continually left in the same housing system throughout the entire period of the study. The sudden change resulted in an increase in egg production and albumen height (P<0.05), but decrease in eggshell thickness (P<0.05). The change had tendency to increase Haugh unit ($P{\leq}0.061$) and to decrease eggshell color ($P{\leq}0.074$), but did not affect body weight for 5 days thereafter. No significant changes were detected in liver color. Plasma concentrations of corticosterone was acutely increased one day after the change (P<0.05), then returned to similar control levels. The results of the present study indicate that unexpected changes in housing environment cause acute increase in stress hormone concentrations, but interpretation of the results should be cautious due to the experimental conditions.