• Title/Summary/Keyword: 자연유기물질

Search Result 150, Processing Time 0.028 seconds

Microcosm Studies of Nanomaterials in Water and Soil Ecosystems (수생태 및 토양생태계에서 나노물질의 마이크로코즘 연구)

  • Yoon, Sung-Ji;An, Youn-Joo
    • Journal of Korean Society of Environmental Engineers
    • /
    • v.34 no.4
    • /
    • pp.288-294
    • /
    • 2012
  • The current growth of nano-industries has resulted in released nanoparticles entering into water and soil ecosystems via various direct or indirect routes. Physicochemical properties of nanoparticles differ from bulk materials, and nanomaterials influence the fates of nanoparticles and the interactions of living or non-living things in the environment. Microcosm analysis is a research methodology for revealing natural phenomena by mimicking part of an ecosystem under controlled conditions. Microcosm study allows for the integrated analysis of toxic effects and fates of nanoparticles in the ecosystem. Ecotoxicity studies of nanomaterials are steadily increasing, and microcosm studies of nanomaterials are currently beginning to surface. In this study, microcosm studies of nanomaterials in water and soil ecosystems were extensively investigated based on SCI(E) papers. We found that the microcosm studies have been reported in 12 instances, and mesocosm studies have been reported in only once until now. Advanced research was mostly evaluated at the microorganism level. But integrated analysis of nanotoxicity is required to research the interactions based of various species. Thus, our studies analysed the trend of microcosm studies on nanomaterials in water and soil ecosystems and suggested future directions of microcosm research of nanomaterials.

Vertical Distribution of Persistent Organic Pollutant in Core Sediments from Upo Wetland (자연습지 우포늪 퇴적물의 연도별 잔류성 유기오염물질 축적도)

  • Boo, Min Ho;Lee, Chan Won;Lee, Sang Chun;Kim, Jong Guk;Jeon, Hong Pyo;Kim, Ki Ho;Choi, Kyung Hee;Yun, Jun Hun;Jeong, Mi Jung
    • Journal of Wetlands Research
    • /
    • v.10 no.2
    • /
    • pp.23-37
    • /
    • 2008
  • The vertical distribution of dioxins and hexachlorobenzene(HCB) in a sediment core was investigated to elucidate historical trends of dioxins and HCB deposited into Upo wetland. The total concentration of dioxin ranged from 8.7 to 66.27 pg/g-dw in Upo sediments deposited, and from 17.64 to 97.03 pg/g-dw in Mokpo. Dioxin fluxes increased from the first-1990s and then reached a maximum in the mid-1990s. The major source of dioxin by comparing the congeners pattern was pentachlorophenol(PCP) used of agrochemicals. The HCB concentration in most of samples was detected below the MDL(Method Detection Limit of 0.5ng/g), except a few samples.

  • PDF

Retention properties of organic matters and nutrients in wetland soils and coastal sediments (습지토양 및 연안퇴적물의 유기물질 및 영양물질 보유 특성)

  • Park, Soyoung;Yi, Yong Min;Yoon, Han-Sam;Sung, Kijune
    • Journal of Wetlands Research
    • /
    • v.14 no.2
    • /
    • pp.265-275
    • /
    • 2012
  • As climate change is becoming a growing concern and the importance of water management is increasing, the retention of carbon and nutrients in wetland soils including inland and coastal area has become important. In this study, retention characteristics of organic matter and nutrients of coastal sediment and soils in different types of wetlands such as constructed wetland, natural (inland marsh, estuary, tidal flat) wetlands were investigated. A correlation analysis was also performed to understand the relationship among organic matter properties, nutrient concentrations and soil texture of wetland soils. The degree of retention of organic matter and nitrogen in wetland soils varied with the wetland type. Inland wetlands retain more nitrogen than estuary or coastal wetlands, and natural wetlands retain more organic matter and nitrogen than constructed ones. Coastal sediments in a bay area where seawater circulation is restricted have more nutrients than those in estuary or tidal flats where seawater circulates well. The results showed that the sediment chemical oxygen demand has a high correlation with the total organic carbon and the total nitrogen in the studied area.

Slow Sorption of Hydrophobic Organic Contaminants in Natural Soils (자연토양에서의 소수성 유기오염물질의 느린 흡착)

  • Shin, Won Sik;Park, Taehyo;Ahn, Taebong;Chun, HeeDong
    • Journal of the Korean GEO-environmental Society
    • /
    • v.2 no.1
    • /
    • pp.103-114
    • /
    • 2001
  • Sorption studies were conducted to determine if slow sorption fraction is observed in recent1y deposited organic matter by studying wetland soils explicitly. Sorption characteristics of hydrophobic organic compounds (chlorobenzene and phenanthrene) in recently deposited freshwater marsh soils were determined using a batch sorption procedure. Relative indicators of organic matter age were assessed using several techniques including the ratio of elemental oxygen to carbon in the organic matter. Slow sorption characteristics for both surface marsh soil (top 0-2 cm, <5 years old) and deeper marsh soil (below 10-cm, >20 years old) were compared against relatively older PPI (Petro Processors, Inc. Superfund site) and BM (Bayou Manchac) soils to investigate whether soil age can cause differences in sorption of organic compounds in wetland soils. Increases in sorption non-linearity of slow sorption model parameters (increase in KF and decrease in N) explain the existence of slow sorption fraction. The results of slow sorption model indicates the presence of a sizable slow sorption fraction; 25.4 - 26.3% (chlorobenzene) and 1.4 - 1.9% (phenanthrene) of the sorbed mass in wetland soils and 40.0 - 55.93% (chlorobenzene) and 2.9 - 3.19% (phenanthrene) of the sorbed mass in PPI and BM soils, respectively. The slow sorption fraction increased in the order of surface < deeper < PPI < BM soil indicating that size of the slow sorption fraction increases with soil organic matter age.

  • PDF

Synthesis and Pyrolysis of Inorganic Polymers (무기고분자의 합성과 열분해)

  • Kim, Myoung-Hee;Lee, Jun;Mo, Soo-Yong;Cho, Myong-Shik;Woo, Hee-Gweon
    • Journal of Integrative Natural Science
    • /
    • v.2 no.3
    • /
    • pp.177-184
    • /
    • 2009
  • 신소재(고분자, 금속, 세라믹)는 기존의 재료와는 다른 우수한 특성과 새로운 기능이 있어 우리 인류 복지에 매우 중요하며 우리는 무한대 생존 경쟁에 몰리고 있다. 이 중 무기고분자는 유기고분자의 단점을 보완하는 동시에 새로운 기능성을 가지므로 산업발전에 매우 중요하다. 다양한 무기고분자의 응용분야 중 세라믹 전구체로의 사용은 첨단 산업 분야에 막대한 발전을 초래하였다. 특히 규소를 함유하는 비산화성 세라믹인 탄화규소 (SiC) 및 질화규소 ($Si_3N_4$) 세라믹은 그 산업적 용도가 다양하다. 규소 고분자는 원료 물질이 값싸고 중합 수율이 높아서 경제적이고, 분자 내 Si와 C 또는 N의 비율을 자유자제로 조정할 수가 있고, 용융성 또는 용해성이 있으므로 성형가공이 가능하며, 세라믹 잔여 수율을 증대시키기 위해서 여러 화학반응에 의해 가교도 시킬 수가 있다. 열분해 조건에 따라서 SiC와 $Si_3N_4$ 등 선택의 조절이 쉬우며, 금속과 섞어서 열분해 함으로서 세멧도 제조할 수가 있다. 이런 종류의 연구는 신소재의 총아인 금속, 고분자, 세라믹 연구들이 함께 어우러진 종합 작품이라 할 수 있겠다. 여러 유형의 유기규소 고분자들을 다양하게 합성해서 그 열분해 과정을 좀 더 면밀히 연구한다면 산업적 응용 가능성은 매우 크리라 기대된다.

  • PDF

Water Management Plan for the Nakdong River Using TOC and COD (총유기탄소와 화학적산소요구량을 이용한 낙동강 물관리 방안)

  • Bo Eun Kim;Meea Kang;Gyo-Cheol Jeong
    • The Journal of Engineering Geology
    • /
    • v.33 no.1
    • /
    • pp.51-59
    • /
    • 2023
  • The Nakdong river is both a natural resource crucial to underwater ecosystems and a water source for its basin's residents. Industrial wastewater and domestic sewage must meet the relevant standards for discharged water before they can flow into the river. The correlation between old and new measures of organic matter was examined using water quality data from 50 monitoring locations in the main stream of the Nakdong river. The coefficient of determination (R2) for total organic carbon (TOC), the new measure of organic matter, and chemical oxygen demand (COD), the old measure of organic matter, in the main stream of the Nakdong river was 0.6134, indicating high correlation. Water quality at each location assessed using TOC and COD showed disparities that cannot be ignored: quality appeared higher when evaluating the main stream of the Nakdong river using TOC instead of COD. Therefore, there remains a need to review water quality ratings based on TOC; continuous monitoring of COD is also required. In addition, the cause of the difference should be clearly identified to help assess artificial sources of pollution and natural factors affecting organic matter. Water management of the Nakdong river will then be possible using the water quality rating.

Removal characteristics of NOMs in a slow sand filter at different media depth and operation time (완속여과공정에서 운전시간 및 여층깊이에 따른 자연유기물질(NOM) 제거 특성)

  • Park, Noh-Back;Park, Sang-Min;Seo, Tae-Kyeong;Jun, Hang-Bae
    • Journal of Korean Society of Water and Wastewater
    • /
    • v.22 no.4
    • /
    • pp.467-473
    • /
    • 2008
  • Natural organic matter (NOM) removal by physico-chemical adsorption and biological oxidation was investigated in five slow sand filters with different media depths. Non-purgeable dissolved organic carbon(NPDOC) and $UV_{254}$ absorbance were measured to evaluate the characteristics of NOM removal at different filter depths. Removal efficiency of NOM was in the range of 10-40% throughout the operation time. At start-up of the filters packed with clean sand media, NOM was probably removed by physico-chemical adsorption on the surface of sand through the overall layer of filter bed. However, when Schumutzdecke layer was built up after 30 days operation, the major portion of NPDOC was removed by biological oxidation and/or bio-sorption in lower depth above 50 mm. NOM removal rate in the upper 50 mm filter bed was $0.82hr^{-1}$. It was about 20 times of the rate($0.04hr^{-1}$) in the deeper filter bed. Small portion of NPDOC could be removed in the deeper filter bed by both bio-sorption and biodegradation. SEM analysis and VSS measurement clearly showed the growth of biofilm in the deeper filter bed below 500 mm, which possibly played an important role in the NOM removal by biological activity besides the physco-chemical adsorption mechanism

An Analysis of Inscription Trends of UNESCO World Heritage Cultural Landscapes (유네스코 세계유산 문화경관 등재 경향 분석)

  • Lee, Jaei;Sung, Jong-Sang
    • Journal of the Korean Institute of Landscape Architecture
    • /
    • v.52 no.4
    • /
    • pp.18-31
    • /
    • 2024
  • This study examines the inscription trends and characteristics of 121 cultural landscapes inscribed on the UNESCO World Heritage List to gain a comprehensive understanding of their inherent values and attributes. By employing a dual methodology involving descriptive statistical analysis and in-depth case studies, this research investigates the geographical distribution, temporal inscription patterns, selection criteria, and typologies of these landscapes. The data for this study were collected from official documents and databases available on the UNESCO World Heritage Center website, ensuring the reliability and authenticity of the information. The analysis reveals that cultural landscapes are predominantly concentrated in Europe and Asia, with a steady increase in inscriptions since 1992. These landscapes are primarily recognized for their uniqueness in reflecting human-nature interactions, as well as the importance of traditional culture and land-use practices, resulting in their inscription mainly under criteria (iv), (iii), (v), and (ii). Furthermore, cultural landscapes can be broadly categorized into three types: designed landscapes, organically evolved landscapes, and associative landscapes. Among these, organically evolved landscapes, formed through long-term interactions between human activities such as agriculture and industry and the natural environment, constitute a significant proportion. These findings suggest that UNESCO World Heritage cultural landscapes possess a complex value system encompassing nature and culture, tangible and intangible elements, and material and non-material aspects. This necessitates a fundamental shift in the perception and preservation approaches to cultural heritage, requiring an integrated approach that emphasizes the overall context rather than individual elements and focuses on the dynamic process of landscape evolution itself. Moreover, cultural landscapes have the potential to contribute to sustainable development models by fostering regional identity, strengthening community resilience, and promoting sustainable economic growth. Therefore, the preservation and management of cultural landscapes require a perspective that holistically views the dynamic evolution process of the landscape and a governance system based on the active participation of local communities and stakeholders. This study contributes to enhancing the in-depth understanding of the characteristics and values of cultural landscapes and provides a foundation for the selection and management of future cultural landscape heritage sites.

A Comparative Study on Chemistry Education Contents of South Korea and North Korea (남한과 북한의 화학교육 내용 요소 비교 연구)

  • Min, Byoung Wook;Park, Hyun Ju
    • Journal of the Korean Chemical Society
    • /
    • v.66 no.2
    • /
    • pp.124-135
    • /
    • 2022
  • The purpose of this study was to analyze the chemisry education contents of South Korea and North Korea for understanding chemistry education of North Korea. Chemistry education in South and North Korea was investigated in terms of learning period and learning quantaty. Especially, what content North Korea learned prior to South Korea and what contents learned more were analyzed. The subjects of this study were South Korean 2015 revised National Science Curriculum and North Korean science textbooks in Kim Jong-un era. The North Korean textbooks analyzed are 'Nature' for North Korean elementary school 3, 'Natural Science' for North Korean middle school 1 and 2, and 'Chemistry' for North Korean high school 1 and 2. The analysis results are as follows. First, the content elements to be learned in advance in North Korean textbooks were density, oxidation and reduction, battery, and atomic weight. Second, the content elements additionally learned in North Korean textbooks include separation of mixtures, fuels, oxidation and reduction, metals, organic and inorganic substances, metals and non-metal oxides and hydroxides, inorganic substances used as fertilizers, nutritional substances, and salt reaction and utilization, atomic orbitals, hybridization of orbitals, coordination bonds and complexes. As a future research task, a qualitative analysis of the elements of North Korean chemistry, the activities of textbooks, and an experimental analysis were proposed.

Biological Activated Carbon (BAC) Process in Water Treatment (정수처리에서의 생물활성탄 공정)

  • Son, Hee-Jong;Yoo, Soo-Jeon;Roh, Jae-Soon;Yoo, Pyong-Jong
    • Journal of Korean Society of Environmental Engineers
    • /
    • v.31 no.4
    • /
    • pp.308-323
    • /
    • 2009
  • This review paper serves to describe the composition and activity of biological activated carbon (BAC) biofilm which is considered as a progressive process for water treatment. As well as several physical-chemical, biochemical and microbiological analysis methods for characterizing the composition and activity of BAC biofilm, the ability of the biofilm to remove and biodegrade organic matters and pollutants related to other water treatment processes such as pre-ozonation will be reviewed. In this paper, conversion of GAC into BAC, removal mechanism of pollutants, characteristics and affecting factors of BAC biofilm, and modeling of BAC are described in detail. In addition, strategies to control the growth of the BAC biofilm, such as varying the nutrient loading rate, altering the frequency of BAC filter backwashing and applying oxidative disinfection, will be dwelled on related to their respective process control challenges.