• 제목/요약/키워드: global cycling

검색결과 50건 처리시간 0.027초

웨딩드레스의 업싸이클링 대여 아동드레스 개발 -제2보- (Development of Rental Children's Dress Using the Abandoned Wedding Dress II)

  • 박유신
    • 패션비즈니스
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    • 제23권4호
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    • pp.86-99
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    • 2019
  • This research is a study on up cycling design to protect nature in order to postpone global warming to the maximum extent possible as it has been a serious global issue to the fashion industry and even to individual consumers. This research focuses on the ways to use wedding dress, one of the clothes made of synthetic fiber, which is a major cause of global warming. Among clothing from the 19th century, two styles of clothes, Bustle style and Art Nouveau style were analyzed ranging from their underwear styles to outwear styles through collections in books and museums. Two styles of dress using drawers, chemise, and corset as basic underwears were manufactured. All the fabric and subsidiary materials except for parts of underwears were made with discarded wedding dresses. It was developed for rental clothing which women could try on Western costume, from underwears to outwears. First, for bustle dress, woman put on basic underwears, then bustle, and bustle-type petticoat. Dress is a two-piece type, and it was made to put on detachable train on the back of skirt. Second, based on the Art Nouveau style clothes, our-glass style dress consists of petticoat, one-piece over drawers, chemise, and corset. After putting on drawers, both chemise, and corset were the same as Bustle Style. This research is a practical way of realizing sustainable design. The aim of the current work is to provide educational effect on the development of rental clothes which upcycle wedding dress and let women experience other cultures.

대기수은의 환경지화학: 배경농도측정 및 대기-지표면간의 교환작용 (Environmental Geochemistry of Atmospheric Mercury: Its Backgriound Concentrations and Exchange Across the Air-Surface Interface)

  • 김기현
    • 한국대기환경학회지
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    • 제12권2호
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    • pp.189-198
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    • 1996
  • Mercury (Hg) is ubiquitous throughout the earth's atmosphere. The uniqueness of its atmospheric geochemistry is well-known with the high environmental mobility and relatively long atmospheric residence time (c.a., 1 year) associated with its high chemical stability. Despite a growing recognition of the environmental significance of its global cycling, the prexisting Korean database for atmospheric Hg is extremely rare and confined to a number of concentration measurements conducted under relatively polluted urban atmospheric environments. To help activate the research on this suvject, an in-depth analysis on the current development in the measurements of atmospheric mercury and the associated fluxes has been made using the most using the most updated data ests reported worldwide. As a first step toward this purpose, the most reliable techniques commonly employed in the measurements of its concentration in the background atmosphere are introduced in combination with the flux measurement techniques over soil surface such as: dynamic enclosure (or field flux chamber) method and field micrometeorological method. Then the results derived using these measurement techniques are discussed and interpreted with an emphasis on its mobilization across the terrestrial biosphere and atmosphere interface. A unmber of factors including air/soil temperature, soil chemical composition, soil water content, and barometric pressure are found out to be influential to the rate and amount of such exchange processes. Although absolute magnitude of such exchange processes is insignificant relative to that of the major component like the oceanic environment, this exchange process is thought to be the the predominant natural pathway for both the mobilization and redistribution of atmospheric Hg on a local or regional scale.

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원소의 지구화학적 거동에 미치는 박테리아의 영향 : 지구미생물학의 최근 연구 동향 (Bacterial Effects on Geochemical Behavior of Elements : An Overview on Recent Geomicrobiological Issues)

  • 이종운;전효택
    • 자원환경지질
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    • 제33권5호
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    • pp.353-365
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    • 2000
  • After their first appearance on Earth, bacteria have exerted significant influence on geochemical behavior of elements. Numerous evidence of their control on geochemistry through geologic history has been observed in a variety of natural environments. They have mediated weathering rate, formation of secondary minerals, redox transformation of metals and metalloids, and thus global cycling of elements. Such ability of bacteria receives so considerable attention from microbiologists, mineralogists, geologists, soil scientists, limnologists, oceanographers, and atmospheric scientists as well as geochemists that a new and interdisciplinary field of research called 'geomicrobiology' is currently expanding. Some recent subjects of geomicrobiology which are studied extensively are as follows: 1) Functional groups distributed on bacterial cell walls adsorb dissolved cations onto cell surfaces by electrostatic surface complexation, which is followed by hydrous mineral formation. 2) Dissimilatory metal reducing bacteria conserve energy to support growth by oxidation of organic matter coupled to reduction of some oxidized metals and/or metalloids. They can be effectively used in remediating environments contaminated with U, As, Se, and Cr. 3) Bacteria increase the rate of mineral dissolution by excreting proton and ligands such as organic acids into aqueous system. 4) Thorough investigation on the effects of biofilm on geochemical processes is needed, because most bacteria are adsorbed on solid substrates and form biofilms in natural settings.

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기후변화에 따른 지표수의 수온 영향평가 (Projected Climate Change Impact on Surface Water Temperature in Korea)

  • 안종호;한대호
    • 한국물환경학회지
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    • 제26권1호
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    • pp.133-139
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    • 2010
  • Global human activities associated with the use of fossil fuels have aggravated climate change, increasing air temperature. Consequently, climate change has the potential to alter surface water temperature with significant impacts on biogeochemical cycling and ecosystems in natural water body. In this study, we examined temporal trends on historical records of surface water temperature, and investigated the air temperature/water temperature relationship and the potential water temperature change from an air temperature scenario developed with regional climate model. Although the temporal trends of water temperature are highly variable site-by-site, surface water temperature was highly dependent on air temperature, and has increased significantly in some sub-watersheds over the last two decades. The results presented here demonstrate that water temperature changes are expected to be slightly higher in river system than reservoir systems and more significant during winter than summer for both river and reservoir system. Projected change of surface water temperature will likely increase $1.06^{\circ}C$ for rivers and $0.95^{\circ}C$ for reservoirs during the period 2008 to 2050. Given the potential climatic changes, every $1^{\circ}C$ increase in water temperature could cause dissolved oxygen levels to fall every 0.206 ppm.

2000년 이후 패션소재에 나타난 친환경 경향과 그 특징 (The Characteristic of Eco-friendly Trend in Fabric since 2000)

  • 김지선;염혜정
    • 패션비즈니스
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    • 제17권4호
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    • pp.75-89
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    • 2013
  • In 2000s, the interest of ROHAS has been increased and the environmental problem has begun to be discussed as the environmental and global value, not the individual perspective. And the standard of value for eco-friendly awareness has been expanded to the economic category. The trend of eco-friendly fabric can be divided into 3 periods depending on the property. The period for natural fabric with visual effects(2002~2004) can be summarized as the creation of natural shape using the natural image, the interaction of cotton and the technology from the visual perspective. In the period of functional conjunction with eco-friendliness and technology(2005~2008), the eco-friendly awareness through the conjunction of technology and nature and the re-cycling, and the responsibility to the environment had been increased. In the period of sustainable development for nature and environment(2009~2011), it showed the conjunction with nature and the integration with technology and eco-friendly issues. Therefore, the characteristic of eco-friendly trend in fabric since 2000 can be said; firstly, the high-quality fabric has been developed with technological development for the functional progress. Secondly, the ethical creativity has been displayed with the development and utilization of eco-friendly recycling materials. Thirdly, the materials reflected with eco-friendly issues have emerged.

PREDICTION OF THE TRITIUM CONCENTRATION IN THE SOIL WATER AFTER THE OPERATION OF WOLSONG TRITIUM REMOVAL FACILITY

  • CHOI HEUI-JOO;LEE HANSOO;SUH KYUNG SUK;KANG HEE SUK
    • Nuclear Engineering and Technology
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    • 제37권4호
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    • pp.385-390
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    • 2005
  • The effect of the Wolsong Tritium Removal Facility on the change of tritium concentration in the soil water was assessed by introducing a dynamic compartment model. For the mathematical modeling, the tritium in the environment was thought to come from two different sources. Three global tritium cycling models were compared with the natural background concentration. The dynamic compartment model was used to model the behavior of the tritium from the nuclear power plants at the Wolsong site. The source term for the dynamic compartment model was calculated with the dry and wet deposition rates. The area around the Wolsong nuclear power plants was represented by the compartments. The mechanisms considered in deriving the transfer coefficients between the compartments were evaporation, runoff, infiltration, hydrodynamic dispersion, and groundwater flow. We predicted what the change of the tritium concentration around the Wolsong nuclear power plants would be after future operation of the tritium removal facility to show the applicability of the model. The results showed that the operation of the tritium removal facility would reduce the tritium concentration in topsoil water quickly.

층상계 하이니켈 양극재의 잔류 리튬 생성 및 저감 메커니즘 연구 (A Mechanism Study on Formation and Reduction of Residual Li of High Nickel Cathode for Lithium-ion Batteries)

  • 빈민욱;나범탁;홍태은;김영진
    • 산업기술연구
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    • 제42권1호
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    • pp.7-12
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    • 2022
  • High nickel layered oxide cathodes are gaining increasing attention for lithium-ion batteries due to their higher energy density and lower cost compared to LiCoO2. However, they suffer from the formation of residual lithium on the surface in the form of LiOH and Li2CO3 on exposure to ambient air. The residual lithium causes notorious issues, such as slurry gelation during electrode preparation and gas evolution during cell cycling. In this review, we investigate the residual lithium issues through its impact on cathode slurry instability based on deformed polyvinylidene fluoride (PVdF) as well as its formation and reduction mechanism in terms of inherently off-stoichiometric synthesis of high nickel cathodes. Additionally, new analysis method with anhydrous methanol was introduced to exclude Li+/H+ exchange effect during sample preparation with distilled water. We hope that this review would contribute to encouraging the academic efforts to consider practical aspects and mitigation in global high-energy-density lithium-ion battery manufacturers.

Primary production by phytoplankton in the territorial seas of the Republic of Korea

  • An Suk, Lim;Hae Jin, Jeong
    • ALGAE
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    • 제37권4호
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    • pp.265-279
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    • 2022
  • The primary production (PP) by phytoplankton in marine ecosystems is essential for carbon cycling and fueling food webs. Hence, estimating the PP in the territorial sea of each country is a necessary step to achieving carbon neutrality. To estimate the PP in the territorial sea of the Republic of Korea from 2005 to 2021, we analyzed various physiochemical parameters, such as sea surface temperature (SST), Secchi depth, and concentrations of chlorophyll-a and nutrients in the seas of five regions, including the East Sea, West Sea, western South Sea, eastern South Sea, and the waters off Jeju Island. During the 17-year study period, the SST tended to increase, while the nutrient concentrations declined, except in the Jeju area. Overall, the PP did not show a specific temporal trend, but daily PP in the western South Sea was the highest among the five regions. Moreover, the maximum PP in the Korean territorial waters (76,450 km2) was estimated at 11,227 Gg C y-1, which accounts for 0.03% of the global PP. The results may give insights into a better understanding of the PP, further resource utilization, and environmental sustainability in the studied region.

K-Means Clustering 기법과 원격탐사 자료를 활용한 탄소기반 글로벌 해양 생태구역 분류 (Classification of Carbon-Based Global Marine Eco-Provinces Using Remote Sensing Data and K-Means Clustering)

  • 김영준;배덕원;임정호;정시훈;추민기;한대현
    • 대한원격탐사학회지
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    • 제39권5_3호
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    • pp.1043-1060
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    • 2023
  • 최근 기후변화의 가속화로 바다에 의한 탄소의 흡수 작용을 칭하는 '블루 카본(blue carbon)'에 대한 관심이 많아지고 있지만, 탄소 순환의 핵심이 되는 해양 생태계에 대한 우리의 이해는 아직 부족한 실정이다. 본 연구는 탄소 순환을 고려한 글로벌 해양 생태 권역(marine eco-province)을 k-means clustering 기법을 활용하여 분류·분석하였다. 지난 20년 간(2001-2020) 위성을 활용하여 생산된 Carbon-based Productivity Model (CbPM) 순 일차 생산량(Net primary production, NPP), particulate inorganic and organic carbon (PIC and POC), 위성 관측과 재분석모델을 결합하여 생산한 해수면 염분(sea surface salinity, SSS) 및 온도(sea surface temperature, SST) 총 다섯가지 자료를 활용하였다. 최적화 과정을 거쳐 총 9개의 생태권역을 도출하였으며, 각 권역의 공간분포와 특성을 분석하였다. 이 중 5개의 권역은 주로 대양의 특성을 반영하고, 4개의 권역은 연안 및 고위도 해역의 특성을 반영하는 것으로 나타났다. 또한, 기존에 알려진 해양 생태 권역과의 정성적 비교를 통하여 탄소순환을 고려한 해양 생태권역의 특징을 상세히 분석하였다. 마지막으로 과거 5년 단위(2001-2005, 2006-2010, 2011-2015, 2016-2020)로 생태 권역의 변화를 분석하였으며, 연안생태계의 빠른 변화와 특히 담수유입으로 인해 생산량이 높고 생태적으로 중요한 권역의 감소를 확인하였다. 이러한 연구 결과는 탄소 순환 및 기후변화를 고려한 해양 생태 권역 분류 및 연안 관리에 대한 중요한 참고자료로 활용 될 수 있으며, 기후 변화에 취약한 지역에 대한 체계적인 관리 지침 개발에 활용될 수 있다.

혐기조건에서 석탄바닥재가 토양호흡량 및 미생물 생체량에 미치는 영향 (Effects of Bottom Ash Amendment on Soil Respiration and Microbial Biomass under Anaerobic Conditions)

  • 박종찬;정덕영;한광현
    • 한국토양비료학회지
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    • 제45권2호
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    • pp.260-265
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    • 2012
  • 담수 토양에서의 토양호흡량은 호기 상태에 비해 매우 낮은 수준이나, 혐기 상태에서의 유기물의 분해는 담수 생태계의 탄소순환에 매우 중요한 역할을 한다. 한편, 비산회(fly ash), 석탄바닥재 (bottom ash)와 같은 석탄 연료 부산물들은 이산화탄소 발생을 저감하고 토양 탄소를 격리하는 효과가 있음이 보고된 바 있다. 이에 본 연구는 혐기조건 토양에서 석탄바닥재 단일 처리 및 석탄바닥재와 유기물 혼합 처리가 토양 미생물 호흡량 및 미생물 생체량 변화에 미치는 영향을 조사하였다. 이산화탄소 발생속도는 석탄바닥재 처리에 의해 유의하게 감소하였고, 처리수준에 따라서도 감소하는 것을 보였다. 유기물과 석탄바닥재를 혼합 처리하였을 때에도 발생속도가 감소되는 것을 확인하였다. 석탄바닥재 처리에 따라 토양미생물 생체량은 유의하게 증가하였고, 토양 중 암모니아태 질소, 질산태 질소, 유효인의 함량은 감소하는 경향이 있었다.