검색결과

검색조건
좁혀보기
검색필터
결과 내 재검색

간행물

    분야

      발행연도

      -

        검색결과 14

        1.
        2023.12 KCI 등재 구독 인증기관 무료, 개인회원 유료
        At Pyropia farms, organic acid treatments have enhanced productivity and quality by removing pest algae (such as Ulva spp. and diatoms) and reducing the occurrence of diseases. Ulva spp. attaches to the Pyropia nets competing for inorganic nutrients & space and diminishing productivity. Additionally, the presence of attached contaminants (such as diatoms and middy particles) on the Pyropia nets negatively affects the quality of Pyropia. This study investigated the effects of removing Ulva linza and washing the Pyropia yezoensis nets using an activating treatment agent (organic acid and highly saline solution) with an air bubble device. The results of measuring the dead cell ratios after treatment under different conditions showed that the dead cell ratio of U. linza did not significantly increase when the air bubble device combined the activating treatment agent with the activating treatment agent alone. When washing the P. yezoensis nets, the air bubble device was about 19-37% more effective than the activating treatment agent alone. The findings of this study suggest that the air bubble device enhances the efficacy of the activating treatment agent, resulting in the effective cleaning of the Pyropia nets.
        4,000원
        2.
        2023.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        This study aims to analyze the cost of climate change damages to laver and sea mustard aquaculture, which are considered to be highly vulnerable to climate change in Korea. For this purpose, the correlation between aquaculture production and climate factors such as water temperature, salinity, air temperature, and precipitation was estimated using a panel regression model. The SSP scenario was applied to predict the changes in production and damage costs due to changes in future climate factors. As a result of the analysis, laver production is predicted to decrease by 18.0-27.2% in 2050 and 20.6-61.6% in 2100, and damage costs are predicted to increase from 29.7-50.8 billion KRW in 2050 to 35.7-116.1 billion KRW in 2100. Sea mustard production is projected to decrease by 24.5-37.2% in 2050 and 24.0-34.5% in 2100, with similar damage costs of 41.1-61.8 billion KRW and 41.1-58.6 billion KRW, respectively. These damage costs are expected to occur in the short term as damage caused by fishery disasters such as high temperatures, and in the long term as a decrease in production due to changes in aquaculture sites. Therefore, measures such as strengthening the forecasting system to prevent high-temperature damage, developing high-temperature-resistant varieties, and relocating fishing grounds in response to changes in aquaculture sites will be necessary.
        4,600원
        3.
        2023.05 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Laver aquaculture, which occupies a large proportion in the aquaculture industry in Korea, is still highly dependent on human labor. Therefore, it is necessary to study the development of an automatic system to improve the working environment and increase the efficiency of aquaculture production systems. The purpose of this study is to evaluate the economic feasibility of an improved system in a study for the loading-unloading and automatic weighing systems in laver aquaculture industry. Economic analysis of the developed unloading and automatic weighing system were implemented under various conditions to calculate more accurate benefits and costs. As a result of this study, the economic feasibility was found to be very high in the three models: net present value (NPV), benefit-cost ratio (B/C), internal rate of return (IRR). Moreover, the results of sensitivity analysis showed that the economical efficiency of the automatic loading, unloading, and weighing system in laver aquaculture was very high.
        4,000원
        5.
        2021.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Global warming affects critical natural resources, one of which is the oceans that occupy 70% of the total cover of the earth. In other words, ocean warming is a subset of global warming which needs to be addressed urgently. Purple laver (pyropia spp.) is one of the most vulnerable items to climate change although it is a major export product of Korean fisheries. The purpose of this study is to analyze the causality of how climate change caused by global warming affects the increase or decrease of PLP (purple laver production). The target area for analysis was set to Maro-hae between Jindo-gun and Haenam-gun. We selected marine environmental factors and meteorologic factors that could affect PLP as variables, as well as co-integration tests to determine long-term balance, and the Granger causticity tests. As a result, PLP and marine environmental factors WT (water temperature), pH, and DO confirmed that long-term equilibrium relationships were established, respectively. However, there is only causality with WT and it is confirmed that there is only a correlation between pH and DO (dissolved oxygen). There was no long-term equilibrium relationship between PLP and HDD (heating degree days) and there is a causal effect that HDD affects PLP; however, it was less clear than that of WT. The relationship between PLP and RF (rainfall), WS (wind speed), SS (percentage of sunshine), and FF (farm facilities) was all balanced in the long term, and causality exists. Based on the results of the analysis, policy proposals were made.
        4,500원
        7.
        2020.08 KCI 등재 구독 인증기관 무료, 개인회원 유료
        We analyzed the cutting mechanism of laver harvesting machine in the sea area near Gooam Port in Goheung, Jeollanam-do, and investigated the change and efficiency of laver collecting operation in the working ship. The laver working ship slides uniformly from the bow to the upper part of the laver collecting machine on the deck and cuts the wet laver attached to the bottom of the net at the blade of the havesting machine. The laver farming net, which was loaded with laver turrets on the deck by gravity and collected primitives, consisted of a ship structure that led to the stern side and into the sea. The working ship operation is in harvesting process while driving in a S-shape that is separated by one space to efficiently collect the laver net. During laver working ship operation, the speed was 0.51 m/s in the access stage, 0.56 m/s in the havesting stage, and 0.52 m/s in the exit stage. Considering the cutting edge life and production efficiency of the laver harvesting machine, it is appropriate to harvest 1.15 to 1.26 kg/rpm by operating at a rotational speed of about 700 to 800 rpm rather than forcibly harvesting the product at high speed. On the deck of the working ship, 959.7 kg of starboard and 1048.7 kg of center were 964.7 kg of port side. Based on the starboard, 9.3% of the central part and 0.5% of the port side appeared. The reason for this was due to the difference in harvest time according to the turning direction of the working ship.
        4,000원
        8.
        2020.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        As a first step in obtaining the minimum level of data needed to develop smart cultivation technology for Korean seaweed gim (Pyropia yezoensis), farming tests have been carried out using onshore aquaculture facilities. The aquaculture facility was built on paddy farmland on the west coast of Chungnam and received seawater from nearby sea. In this paper, we report the overall process and results of the aquaculture trials attempted in Korea's first onshore gim aquaculture facilities. In addition, the industrial possibility of gim production using the onshore aquaculture system will be discussed through the analysis of all expenses incurred in the test form.
        4,000원
        10.
        2016.03 KCI 등재 구독 인증기관 무료, 개인회원 유료
        김 양식을 하고 있는 해역의 물리·화학적인 해양환경 특 성, 식물플랑크톤 색소 조성과 농도, 식물플랑크톤 및 방사 무늬김의 일차 생산력을 2014년 3월에 김 양식이 이루어지 고 있는 만호해역에서 조사를 하였다. 수온은 9.1~9.6℃, 염분은 32.5~33.1이었고, 투명도는 높 은 탁도로 인하여 유광층이 낮아져 0.7~1.5 m를 보였다. 수 층의 용존 무기질소, 용존 무기인 및 규산 규소 각각의 농도 는 3.59~5.73 μM, 0.16~0.41 μM, 12.41~13.94 μM이었다. 클로로필 a 농도는 0.51~1.25 μg L-1이었고, 0.7~20 μm 범 위의 nanoplankton의 클로로필 a 농도가 58%를 차지하였다. 규조류의 marker 색소인 fucoxanthin의 농도는 0.51~1.25 μg L-1로서 전 정점에서 높은 값이었고, 20~200 μm 범위의 fucoxanthin이 64%를 차지하였다. 식물플랑크톤에 의한 일 차 생산력은 57.72±4.67 (51.05~66.71) mg C m-2 d-1이었고, 0.7~20 μm 범위의 nanoplankton이 76.9%를 차지하였으며, 면적을 고려한 일차 생산력은 11,337 kg C d-1이었다. 방사무 늬김에 의한 평균 일차 생산력은 1,926±192 (1,102~2,597) mg C m-2 d-1이었고, 면적을 고려한 일차 생산력은 39,295 kg C d-1이었다. 식물플랑크톤과 방사무늬김에 의한 일차 생 산력을 토대로 계산된 만호해역의 일차 생산력은 50,632 kg C d-1로 나타났다. 만호해역의 식물플랑크톤에 의한 일차 생 산력이 다른 해역보다 낮고, 김의 일차 생산력이 식물플랑크 톤의 일차 생산력보다 약 3.5배 높았다.
        4,300원
        11.
        2014.09 KCI 등재 구독 인증기관 무료, 개인회원 유료
        신안군 압해도 남서해역에 위치하는 김 양식 어장의 해 양환경 특성을 파악하기 위하여 2013년 10월부터 2014 년 월까지 김 엽상체의 성육 단계인 유엽기, 중엽기 및 성엽기에 맞추어 3회에 거쳐 수질환경과 식물플랑크톤 군집 파악을 위한 현장조사를 실시하였다. 압해 김 양식장 은 수심의 얕은 천해역에 위치하여 바람과 조석혼합 등 물리적 교란에 의해 해저 표층퇴적물의 재부유가 심하게 발생하고 있다. 해저 표층퇴적물의 재부유는 영양염류의 공급과 함께 높은 총부유물질량에 의해 해수 중으로 투 과되는 빛을 방해하여, 겨울 김 성장시기에 김과 동일한 영양염류 흡수를 경쟁하는 식물플랑크톤 성장을 방해하 는 것으로 판단되었다. 이러한 압해 김 양식장 해양환경 은 최근 일본의 김 흉작과 변색에 의해 품질이 저하되는 원인인 김 성장기 질소원을 중심으로 하는 영양염류 부 족과 투명한 해수로 인한 충분한 광 투과로 김 보다 영 양흡수 효율이 좋은 대형 규조류가 겨울 규조적조를 발 생시키는 환경과 대조된다. 즉 압해도 김 양식장의 물리 적 교란에 따른 퇴적물 재부유로 인한 영양염 공급과 높 은 부유물질량에 따른 식물플랑크톤 성장 억제와 같은 해양환경이 우리나라 서해 남부 김 양식장의 높은 생산 량으로 연결하는 중요한 인자로 작용한다고 판단되었다.
        4,000원
        12.
        2012.09 KCI 등재 구독 인증기관 무료, 개인회원 유료
        본 연구에서는 CCl4 존재하에서 Cl2(g) and ultra violet(200~300nm) 파장으로 maleic anhydride 와 Cl2(g)을 반응시켜 α,β-dichlorosuccinic acid 를 합성하였다. 그리고 두 번째 반응은 N-(α,β-dichloro)succinic acid 함유 glucosamine 유도체(I)를 합성하는 것으로 methanol 함유 2% acetic acid 용매 하에서 glucosamine과 과량의 α,β-dichlorosuccinic anhydride을 넣은 후 온도를 70℃로 올리면서 반응시켰다. 우리는 합성한 유기산 유도체들이 해태 김 재배와 피부미용에 주로 유용하게 활용할 것으로 본다.
        4,500원
        14.
        2001.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        본 논문의 목적은 김 양식 있어서 무기산 또는 유기산 사용 문제와 김 양식 어업인들의 생산위험 회피행위를 고찰하기 위한 이론적 틀을 개발하고, 정책함의를 도출하는데 있다. 김 양식의 생산위험 또는 가격위험은 김 양식 어업인들이 직면하고 있는 가장 중요한 의사결정변수라고 할 수 있으며, 특히 문제가 되고 있는 무기산(또는 폐염산) 또는 유기산은 농업에 있어서 농약처럼 김 양식 어업인들이 생산위험을 최소화하기 위한 일종의 보험 생산요소(insurance p
        4,900원