• Title/Summary/Keyword: 저농도 유기물

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상하수도 오존 고도처리시스템의 기술동향

  • 대한전기협회
    • JOURNAL OF ELECTRICAL WORLD
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    • s.254
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    • pp.53-61
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    • 1998
  • 오존은, 그 강력한 산화력에 의하여 살균, 탈취, 탈색과 유기물 제거 등의 효과를 복합적으로 얻을 수 있고 또한 신속하게 산소로 분해되어 잔류하지 않기 때문에 환경개선에 사용하기에 이상적인 물질이다. 미쓰비시전기에서는 이러한 오존의 이점에 착안하여 1970년부터 오존발생기와 오존처리설비의 개발, 제품화를 추진하여 왔다. 오존에 의한 고도처리가 널리 일반에게 인정되어 그 수요가 높아지고 있는 오늘날에 있어서도 보다 많은 오존설비의 보급을 위하여 오존기술의 개발에 힘쓰고있다. 본고에서는 상하수도 오존고도처리의 기술동향의 일부로 시도되고 있는 다음의 세 가지 내용을 소개한다. (1)오존처리시스템의 자에너지, 고효율화 기술 방전갭의 단축화, 관분내압력의 고압화로 고농도$\cdot$고효율의 오존발생을 실현하여 자전력화를 가능케 한 신형오조나이저를 개발 제품화하였다. (2)오존 반응조 내에서의 산기장치특성의 파악 모델화가 곤란한 신기장치에 대하여 실설비규모의 실험설비를 사용하여 그 산기특성을 분명히 하였다. (3)과산화수소첨가 오존처리법에 의한 하수처리수의 재생이용 과산화수소첨가 오존처리법에 의하여 장기간에 걸쳐 하수처리수를 전유기탄소(TOC)3mg/$\ell$이하로까지의 처리를 달성하여 하수처리수를 수도수레벨로까지 고도로 정화할 수 있음을 실증하였다.

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Effect of Hydrogen Peroxide on the Acid Hydrolysis of Inulin (Inulin의 산 가수분해 반응에 과산화수소가 미치는 영향)

  • 윤석준;김성배최주홍박영철
    • KSBB Journal
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    • v.10 no.3
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    • pp.298-303
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    • 1995
  • Hydrogen peroxide has a characteristic of being dissociated rapidly into atomic oxygen and water when it is contacted with organic materials, resulting in a decrease in molecular weight of a polymer like carbohydrate. This effect on inulin hydrolysis under ultrasound irradiation was investigated. Maximum effect of hydrogen peroxide appeared at the H2O2 concentration of 2.3%(w/v) under the range of $50∼60^{\circ}C$ and 0.1∼0.3%(w/w) HCl. Compared to control reactions, the promotion effect reached 9∼43%. The activation energy, 26kca1/mo1, of inulin hydrolysis with H2O2 addition was similar to that without H2O2 addition, 25kca1/mo1. This implies that the rate enhancement of inulin hydrolysis with H2O2 addition is due to the increase of frequency factor.

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Geochemical Characteristics and Heavy Metal Pollutions in the Surface Sediments of Gwangyang and Yeosu Bay, south coast of Korea (광양만 및 여수해만 표층퇴적물의 지화학적 특성과 중금속 오염)

  • 현상민;이태희;최진성;최동림;우한준
    • The Sea:JOURNAL OF THE KOREAN SOCIETY OF OCEANOGRAPHY
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    • v.8 no.4
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    • pp.380-391
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    • 2003
  • Surface sediments were collected from Gwangyang and Yeosu Bays to evaluate their sedimentological characteristics and geochemical aspects of both the benthic environment and heavy metal pollution. The grain size distribution includes both sandy and muddy sediments. Sand-rich sediments occur mainly near the POSCO and the channel between Namhedo and Yeosu Bando, while elsewhere mud-dominated sediments are present. TOC content ranges from 0.2 to 2.1 % and C/N ratios indicate that the range arises from the mix of organic matter. The C/S ratios of this organic matter show that parts of the study area are anoxic or have sub-anoxic bottom conditions. The hydrogen sulfide content of the sediment has a range of 0.7 to 301 ppm, with a high content occurring inshore of Myodo Island, where it indicates a polluted environment. The enrichment factor (Ef) and index of accumulation rate (Igeo) of ten heavy metals (Co, Ni, Cu, Cd, Pb, Li, Zn, V, Cr, Ba) show that parts of the study area contain from one to seven times more Pb and Ba, and from 0.8 to 3.5 times more of the other elements than the mean sediment value. The Igeo values of V and Cd show that different parts of the area can be classified as heavily polluted, heavily to moderately polluted, or more or less unpolluted. Those areas that have both high levels of enrichment and high accumulation rates of heavy metals contain predominantly fine sediments with a high organic matter and hydrogen sulfide content.

Effect of soil environmental conditions on the degradation rate of the fungicide IBP in flooded soils (담수토양중(湛水土壤中)에 있어서 살균제(殺菌劑) IBP의 분해속도(分解速度)에 미치는 각종(各種) 토양환경조건(土壤環境條件)의 영향(影響))

  • Moon, Young-Hee
    • Applied Biological Chemistry
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    • v.33 no.2
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    • pp.133-137
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    • 1990
  • The effects of soil environmental conditions on the rate of degradation of fungicide IBP (Iprobenfos, S-benzyl O, O-diisopropyl phosphorothioate) in the soils under flooded condintions were examined in the laboratory. IBP in soil was degraded more slowly under flooded conditions than under upland conditions. The degradation greatly varied among soils, and the degradation rate was negatively correlated with the content of soil organic matter. Degradation of IBP was influenced by the soil temperature and the amount of IBP applied. The rate of degradation in soil was remarkably inhibited by the amendment of rice straw but not affected by the treatment of mixed-fertilizer, and insecticide fenitrothion and herbicide butachlor. The degradation of IBP was assumed to be due to microorganisms, especially aerobic microbes, as no degradation was observed in sterilized soil.

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Formation Characteristics and Control of Disinfection Byproducts in a Drinking Water Treatment Plant Using Lake Water (호소수를 원수로 사용하는 정수장의 소독부산물 생성 특성 및 제어 방안)

  • Lee, Kichang;Gegal, Bongchang;Choi, Ilhwan;Lee, Wontae
    • Journal of Korean Society of Environmental Engineers
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    • v.37 no.5
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    • pp.269-276
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    • 2015
  • This study investigated the influence of characteristics of natural organic matter (NOM) on the formation of disinfection by-products (DBPs), and proposed the control strategies of DBPs formation in a drinking water treatment plant using lake water in Gyeongsangbuk-do. The fluorescence excitation-emission matrix analysis results revealed that the origins of NOM in raw waters to the plant were a mixture of terrestrial and microbial sources. Molecular size distributions and removals of NOM fractions were evaluated with a liquid chromatography-organic carbon detector (LC-OCD) analysis. Humic substances and low molecular weight organics were dominant fractions of NOM in the raw water. High molecular weight organics were relatively easier to remove through coagulation/precipitation than low molecular weight organics. The concentrations of DBPs formed by pre-chlorination increased through the treatment processes in regular sequence due to longer reaction time. Chloroform (74%) accounts for the largest part of trihalomethanes, followed by bromodichloromethane (22%) and dibromochloromethane (4%). Dichloroacetic acid (50%) and trichloroacetic acid (48%) were dominant species of haloacetic acids, and brominated species such as dibromoacetic acid (2%) were minimal or none. Dichloroacetonitrile (60%) accounts for the largest part of haloacetonitriles, followed by bromochloroacetonitrile (30%) and dibromoacetonitrile (10%). The formation of DBPs were reduced by 16~44% as dosages of pre-chlorine decreased. Dosages of pre-chlorine was more contributing to DBPs formation than variations of dissolved organic contents or water temperature.

A Study on Establishment of Technical Guideline of the Installation and Operation for the Efficient Bio-gasification Facility of Fig Manure and Food Waste(I): (가축분뇨 병합처리 바이오가스화를 위한 설계 및 운전 기술지침 마련 연구(I): 현장조사 결과 중심으로)

  • Lee, Dongjin;Moon, HeeSung;Son, Jihwan;Bae, Jisu
    • Journal of the Korea Organic Resources Recycling Association
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    • v.25 no.2
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    • pp.91-100
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    • 2017
  • The purpose of this study is to provide a design and operation technical guideline for meeting the appropriate design criteria to bio-gasification facilities treating organic wastes. In accordance with the government's mid-to long-term policies on bio-gasification and energization of organic wastes, the expansion of the waste-to-energy (WTE) facilities is being remarkably promoted. However, because of the limitation of livestock manure containing low-concentration of volatile solids, there has been increased in combined bio-gasification without installing new anaerobic digestion facilities. The characteristics and common problems of each treatment processes were investigated for on-going 13 bio-gasification facilities. The seasonal precision monitoring of chemicophysics analysis on anaerobic digestor samples was conducted to provide guidelines for design and operation according to the progress of bio-gasification treatment. Consequently, major problems were investigated such as large deviation of organic materials depending on seasons, proper dehumidification of biogas and pretreatment of hydrogen sulfide.

Treatment of Contaminated Sediment for Water Quality Improvement of Small-scale Reservoir (소하천형 호수의 수질개선을 위한 퇴적저니 처리방안 연구)

  • 배우근;이창수;정진욱;최동호
    • Journal of Soil and Groundwater Environment
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    • v.7 no.4
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    • pp.31-39
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    • 2002
  • Pollutants from industry, mining, agriculture, and other sources have contaminated sediments in many surface water bodies. Sediment contamination poses a severe threat to human health and environment because many toxic contaminants that are barely detectable in the water column can accumulate in sediments at much higher levels. The purpose of this study was to make optimal treatment and disposal plan o( sediment for water quality improvement in small-scale resevoir based on an evaluation of degree of contamination. The degree of contamination were investigated for 23 samples of 9 site at different depth of sediment in small-scale J river. Results for analysis of contaminated sediments were observed that copper concentration of 4 samples were higher than the regulation of hazardous waste (3 mg/L) and that of all samples were exceeded soil pollution warning levels for agricultural areas. Lead and mercury concentration of all samples were detected below both regulations. Necessary of sediment dredge was evaluated for organic matter and nutrient through standard levels of Paldang lake and the lower Han river in Korea and Tokyo bay and Yokohama bay in Japan. The degree of contamination for organic matter and nutrient was not serious. Compared standard levels of Japan, America, and Canada for heavy metal, contaminated sediment was concluded as lowest effect level or limit of tolerance level because standard levels of America and Canada was established worst effect of benthic organisms. The optimal treatment method of sediment contained heavy metal was cement-based solidification/stabilization to prevent heavy metal leaching.

Effects of Cyanobacterial Bloom on Zooplankton Community Dynamics in Several Eutrophic Lakes (부영양호수에서 남조류 bloom이 동물플랑크톤 군집변화에 미치는 영향)

  • Kim, Bom-Chul;Choi, Eun-Mi;Hwang, Soon-Jin;Kim, Ho-Sub
    • Korean Journal of Ecology and Environment
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    • v.33 no.4 s.92
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    • pp.366-373
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    • 2000
  • Toxin production and low digestibility of cyanobacteria are known to cause low exploitability of cyanobacteria by zooplankton. In this study, we compared relative tolerance and compatibility of zooplankton taxa in eight eutrophic lakes, exposed to frequent cyanobacterial blooms, uring the summer season of 1999. Microcystis, Anabaena, Oscillatoria and Phormidium were common cyanobacteria in all lakes. with relatively lower $NO_3-N$ concentration (<0.2 mgN/l) and TN/TP ratio (<20), compared with other lakes where colonial cyanobacteria dominated. Rotifers were dominant zooplankton in most lakes, and among them, Keratella, Polyarthra and Hexathra were common. The laboratory feeding experiment showed that relative copepods that greatly decreased (90%) after 4 day when cyanobacteria were used as the food source of zooplankton, while rotifers gradually increased with the change of dominant taxa from Keratella through Pompholyx to Monostyla. These results suggest that rotifers may be capable of coexisting with cyanobacteria by exploiting them for the food source.

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Characteristics of Thermophilic Methane Fermentation Using the Organic Wastes (유기성 폐기물을 이용한 고온 메탄 발효의 특성)

  • Kim, Nam-Cheon;Choi, Suk Soon
    • Journal of the Korea Organic Resources Recycling Association
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    • v.16 no.2
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    • pp.29-37
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    • 2008
  • In this work, it was investigated that various aspects of process, application situation, merits and short-coming results of the thermophilic methane fermentation with highly concentrated organic waste substances such as sewage sludges, food wastes and excretions. The merits of this methane fermentation were that it had a very fast reaction rate and was possible to proceed in high loads. It was also high in mortality for pathogenic microorganism and the digested sludge was more hygienic. However, the short-comings were that more energy was required for heating in the fermentation facility, no surplus energy could be gained from low concentration of organic waste, the fermentation treatment dropped level of water quality, thus burdens discharging process of water. Especially, the high concentration of methane fermentation could possibly lack nutritious salt and could face the disturbance by ${NH_4}^+-N$, a proper alternative was required. In general, thermophilic methane fermentation was considered as a better mean in disposing of cow excretion and food waste which were highly concentrated organic wastes. On the other hand, under the condition where the concentration of waste material was low and the high concentrate waste material became higher than 3,000 mg/L in ${NH_4}^+-N$, thermophilic methane fermentation resulted less desirable outcome.

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Effect of the Al(III) Coagulant Basicity on Phosphorus Removal in Sewage Treated Water (하수처리수의 인 제거에 미치는 Al(III) 응집제 염기도의 영향)

  • Han, Seung-Woo;Lee, Chul-Hee;Lee, Jae-Kwan;Kang, Lim-Seok
    • Journal of Korean Society of Environmental Engineers
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    • v.34 no.3
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    • pp.149-154
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    • 2012
  • According to the coagulation tests for PACs with various basicities, the PACB with lower basicity showed higher coagulation efficiencies of organics and phosphorus than the PAC with higher basicity. The PACB contained higher amount of monomeric Al (III) hydrolytic species comparing with PAC. In case of the coagulation for the sewage treated water, the coagulation efficiency by the charge neutralization and sweep floc formation was higher with PACB than with PAC. Accordingly, when $Al_2O_3$ concentration was similar in the coagulant, PACB showed higher removal efficiencies of turbidity, $COD_{Mn}$, TP, and $PO_4$-P comparing with PAC, especially in the lower range of coagulant dose.