• Title/Summary/Keyword: waste fishing nets

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Development of Upcycling Fashion Using Marine Waste - Focusing on Discarded Fishing Nets - (해양폐기물을 활용한 업사이클링 패션 디자인 개발 - 폐어망 활용을 중심으로 -)

  • Haemil Kim;Chahyun Kim
    • Journal of the Korea Fashion and Costume Design Association
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    • v.26 no.2
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    • pp.73-86
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    • 2024
  • Addressing the environmental impact of textile waste, this study explores upcycling as a sustainable fashion solution, particularly focusing on the upcycling of discarded fishing nets, which are a significant source of marine pollution. In 2018, South Korea alone produced 193.3 tons of clothing waste, refelcting a global trend, where textile waste exceedsed 92 million tons. The research methodology involved a literature review and case studies on upcycled fashion, focusing on discarded fishing nets. Designs for three outfits targeting women in their twenties were proposed and a survey was carried out to assess the their perception of upcycled fashion and the design's appeal and practicality. Under the theme, 'Marine Spirit,' the study aimed to raise awareness of marine pollution, drawing inspiration from the ocean's vibrant life. The designs diverge from the monotonous 'Casual Glam' trend, and incorporate vivid colors and asymmetrical structures for visual appeal. The practical application of fishing nets varied across the pieces, serving as fillers in transparent PVC padded coats and decorative elements in skirts and puff dresses. The distinctive properties of fishing nets provide a unique aesthetic, which resonated well with the target audience. Despite challenges in adopting eco-friendly dyeing methods and assessing mass production feasibility, the study underscores the need for continued research in sustainable textile processing. The study reaffirms the importance of sustainable fashion, highlighting the creative potential of fishing nets as a material.

A Study on the Basic Properties of Polymer Repair Mortar Using Waste Fishing Nets as Fibers (폐어망을 섬유로 활용한 폴리머 보수 모르타르의 기초 특성 연구)

  • Kim, Jin-Young;Park, Jong-Ho
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2023.11a
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    • pp.83-84
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    • 2023
  • In this study, in order to utilize waste fishing net as a building materail, the possibility of replacing the fiber used in polymer repair mortar with waste fishing net fiber was confirmed. As for basic characteristics, flow, compressive strength, and flexural strength tests were performed to compare and analyze fiber performance, and the test results showed performance equal to or better than existing fibers.

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Feasibility Study of Fiber Reinforced Concrete Using Waste Fishing Net (폐어망을 이용한 섬유보강 콘트리트의 적용성 연구)

  • Kweon, Gichul;Kim, Heeyun
    • International Journal of Highway Engineering
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    • v.16 no.6
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    • pp.87-93
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    • 2014
  • PURPOSES : To evaluate the feasibility of cut waste fishing net as a reinforced fiber for concrete. METHODS : Strength characteristics of fiber reinforced concrete using waste fishing net were investigated. The cut waste fishing nets with 4~5cm length were putted into the soil-cement and cement concrete for pavement slab. RESULTS : Compression and tensile strength of fiber reinforced concrete using waste fishing net were increased. CONCLUSIONS : It was concluded that cut waste fishing net can be used as a reinforced fiber for cement concrete. However, sometimes using cut waste fishing net leads to decrease the strength; therefore, further researches are needed for real project.

A Study on Development of a Pyrolysis Characteristics for Combustible Ocean waste (가연성 해양폐기물 열분해 특성에 대한 연구)

  • 김용섭;김도영;황기연
    • Journal of Ocean Engineering and Technology
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    • v.15 no.2
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    • pp.130-134
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    • 2001
  • Recently environmental pollution at sea becomes serious, so every governmental organization makes its effort to solve this problem. Combustible ocean wastes as of ropes, fishing nets, and tires are usually highly polymerized compound materials. The problem of ocean waste treatment can be solved by using the pyrolysis method. Pyrolysis characteristics of ocean waste was examined to get the basic data for the production system of fuel from the ocean waste. Thermogravimetric experiment showed that residual mass rate decreases as the velocity of temperature-rising becomes lower. The pyrolysis of waste rope and fishing net occurs at 300~450$^{\circ}C $ and the waste tire does at 350~450$^{\circ}C $. Pyrolysis time is estimated about 15 to 20 minutes in the temperature range when lively act of pyrolysis temperature reached.

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Analysis of the Generation Amount of Abandoned Marine Waste from Ships in the Northwest Sea of Jeju Island (제주 북서해역 선박기인 해양폐기물 발생량 분석)

  • Kim, Byung-Yeob;Joo, Hye-Min;Lee, Chang-Heon;Kim, Kwang-Il
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.27 no.1
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    • pp.81-87
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    • 2021
  • Many merchant ships sail in the waters surrounding Jeju Island and many fishing vessels catch fish using gill nets, trolling lines, and so on. Meanwhile, marine waste has collected in the coastal waters of Jeju Island. However, there has been little research on the collection of marine waste in coastal waters. In this study, marine waste deposited in Jeju Island's northwest sea was collected using Jeju National University's training ship, and related vessels were analyzed for each gear type. According to the results, most coastal waters had abandoned fishing grounds, which were from fishing vessels, and a large proportion of them was gill net and trap fishing gear. To analyze how much marine waste is accumulating in a certain area and ship's stay time, we use automatic identification system (AIS) data to extract the time spent in the target sea, and the amount of marine waste per hour was analyzed in a unit distance of 1 ㎢. The average amount of marine waste generated per hour in the unit area was found to be 0.94 kg for gillnet fishing gear, 3.49 kg for trap fishing gear, 0.10 kg for trawl fishing gear, 0.11 kg for longline fishing gear, and 0.02 kg for other fishing gear.

A Study on Development of a Pyrolysis System for Combustible Oecan waste (가연성 해양폐기물 열분해 장치 개발에 대한 연구)

  • 김용섭;김도영;황기연
    • Proceedings of the Korea Committee for Ocean Resources and Engineering Conference
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    • 2000.10a
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    • pp.96-100
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    • 2000
  • Recently ocean environmental pollution becomes very serious, so each governmental organization slove this problem. As part of the policy, KRISO has investigated distribution condition at ocean waste. Acc\ulcorner we found that combustble waste consists of ropes, fishing nets, and tires. These are, however, highly polyme\ulcorner existing incicerators have many problems to treat these. In this study we want to pyrolyze highly polymerized \ulcorner data for a design of fule production system without second pollution. Through the thermogravimetic experiment characteristics of pyrolysis and obtained some preliminary results.

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A Comparative Analysis of Fishery and Marine Environment-related Policies on Estimated Amount of Fishery Debris Caused by Fishing (조업기인 어업쓰레기 발생추정량에 대한 어업 및 해양환경 관련 정책 비교분석)

  • Seong, Eun-hye;Kim, Kyung-shin
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.28 no.6
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    • pp.906-917
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    • 2022
  • This study aimed to compare differences according to categories of fishery and marine environmental policies for the (estimated) amount of fishery waste generated by fishing, and to analyze the correlation between associated independent and dependent variables. The independent variables were divided into three dif erent sectors. The first sector included precautionary policies that observed eco-friendly fishing support program, institutional prevention activities, and physical barriers installation. The second sector with the current management policies included the relevant vessel operations, establishment of fishery order, fishery restructuring, and fishery ground clean-up. Thirdly, post-response policies comprised the litter purification from river to shoreline, the collection and removal of marine, sedimentary, and floating debris, purchasing salvaged debris generated while fishing, fishery waste disposal, and repairing damage caused by marine litter. The indicator used was the settlement amount by each program. The dependent variable was the estimated amount of fishery waste and the indicator was the sum of the loss of traps and gill nets and the loss of their appendages. According to the results of Kruskal-Wallis Test, the estimated amount of fishery waste was highest in the East Sea in terms of sea area and the highest in the Si(city) according to basic local municipality. The settlement amount related to the marine environment services was largest in the Gun(county). Further, there were significant differences between Gun(county) and the other regions(Si(city) and Gu(autonomous district)) with respect to most variables. The variables related to the estimated amount of fishery debris were the project purchasing salvaged debris generated while fishing and fishery waste disposal program in the post-response policies.

Study to Improve the Legal System to Reduce Marine Accidents caused by Marine Plastic Litter (해양 플라스틱 쓰레기에 의한 부유물 감김 해양사고 저감 정책방안 연구 - 법제도 측면 개선 중심으로 -)

  • Lee, Hye-Jin;Kim, Bo-Ram
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.27 no.7
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    • pp.967-976
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    • 2021
  • Over the last ten years, the number of entanglement marine accidents has increased more than other accident types. This study analyzed the annual statistical report of marine accidents from the Korea Maritime Safety Tribunal and Korea Coast Guard. Despite some discrepancies between data of the two organizations, it was found that marine accidents involving fishing vessels were more prevalent than those involving non-fishing vessels. In addition, the main floating materials that caused wounded entanglement accidents were fishing nets, fishing gear, and ropes, and the proportion of them was high. Foreign and domestic policies on marine plastics recognize most marine plastics as marine environmental hazards and focus on marine litter recovery and the prevention of marine pollution. The representative Acts related to the marine environment and marine litter, the Marine Environment Management Act and the Marine Waste and Sediments Management Act, recognize marine litter as a type of marine waste, and deal with the types and definition of this waste. However, clearly defining marine waste is difficult. Therefore, this study tried to examine the relevant legal system of marine litter on ship operation and suggested improvement measures. Moreover, the definition of marine litter for the safe navigation and operation of ships was clearly proposed.

Carbon Dioxide-based Plastic Pyrolysis for Hydrogen Production Process: Sustainable Recycling of Waste Fishing Nets (이산화탄소 기반 플라스틱 열분해 수소 생산 공정: 지속가능한 폐어망 재활용)

  • Yurim Kim;Seulgi Lee;Sungyup Jung;Jaewon Lee;Hyungtae Cho
    • Korean Chemical Engineering Research
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    • v.62 no.1
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    • pp.36-43
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    • 2024
  • Fishing net waste (FNW) constitutes over half of all marine plastic waste and is a major contributor to the degradation of marine ecosystems. While current treatment options for FNW include incineration, landfilling, and mechanical recycling, these methods often result in low-value products and pollutant emissions. Importantly, FNWs, comprised of plastic polymers, can be converted into valuable resources like syngas and pyrolysis oil through pyrolysis. Thus, this study presents a process for generating high-purity hydrogen (H2) by catalytically pyrolyzing FNW in a CO2 environment. The proposed process comprises of three stages: First, the pretreated FNW undergoes Ni/SiO2 catalytic pyrolysis under CO2 conditions to produce syngas and pyrolysis oil. Second, the produced pyrolysis oil is incinerated and repurposed as an energy source for the pyrolysis reaction. Lastly, the syngas is transformed into high-purity H2 via the Water-Gas-Shift (WGS) reaction and Pressure Swing Adsorption (PSA). This study compares the results of the proposed process with those of traditional pyrolysis conducted under N2 conditions. Simulation results show that pyrolyzing 500 kg/h of FNW produced 2.933 kmol/h of high-purity H2 under N2 conditions and 3.605 kmol/h of high-purity H2 under CO2 conditions. Furthermore, pyrolysis under CO2 conditions improved CO production, increasing H2 output. Additionally, the CO2 emissions were reduced by 89.8% compared to N2 conditions due to the capture and utilization of CO2 released during the process. Therefore, the proposed process under CO2 conditions can efficiently recycle FNW and generate eco-friendly hydrogen product.

The Primary Research on oil Conversion Technology of biomass by Pyrolysis (열분해에 의한 바이오매스의 유류자원화 기술에 관한 기초 연구)

  • Chio, Hyuk-Jin;Yoo, Sun-Kyoung;Oh, Sang-Woo;Lee, Seung-Guk;Lee, Seung-Hoon
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.10 no.2
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    • pp.112-117
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    • 2007
  • This study aims to develop an alternative energy like oil made from marine organic waste by marine products waste, spent fishing nets. There are already many commercial examples and case studies based on the petroleum industry-refuse plastic or refuse tire, however, it is rare that a research developing alternative energy from food waste and organic waste. Therefore, this study investigated the oil made from thermal decomposition under the high temperature and high pressure condition, and examined the possibility for commercial use by testing its own characteristics. A bio-oil from thermal decomposition at $250^{\circ}C$ and 40 atm was hard to remove impurities because of its high viscosity, showed lower caloric value than heavy oil, and generated various gases which were not appropriate for the use of fuel. It is noticeable that thermal decomposition was occurred at $250{\pm}5^{\circ}C$ using steam pressure, which much lower compared to the existing method of thermal decomposition, more than $500^{\circ}C$. Since the high viscosity of bio-oil, it is necessary a further study to use as liquid fuel.

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