• 제목/요약/키워드: Non-biodegradable substances

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매립장 침출수의 생물학적 난분해성물질 특성 규명 (Characteristics of Non-biodegradable Substances in Landfill Leachate)

  • 임봉수;박혜숙;김흥락
    • 한국물환경학회지
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    • 제21권5호
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    • pp.484-489
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    • 2005
  • In order to determine the removal rate of non-biodegradable substances and the change of their structural properties, this study was carried out by an ozone-treatment experiment on leachate collected from the landfill area of D City in Chung chung nam-do and examined the change of the chemical properties of non-biodegradable substances. The main elements of non-biodegradable substances in landfill leachate were benzene, toluene, trichloroethane, trichloroethylene, xylene, etc. and the concentration of toluene was 15.7 mg/L on the average, benzene 7.2 mg/L, trichloroethane 1.1 mg/L, trichloroethylene 0.75 mg/L and xylene 0.5 mg/L. When leachate was treated with ozone for 10 min, 30 min and 60 min, UV absorbance was reduced with the increase of reaction time, and the reduction rate was 38.6% at 60 min. TOC was removed by 13.2% at 60 min. The low reduction rate of TOC may be because TOC reacts indirectly with OH radical produced from reaction with ozone while UV absorbance usually relies on direct reaction between organic matters and ozone molecules. Color was removed by up to 97%, which suggests that ozonation is highly effective in removing coloring elements in leachate. Sixteen kinds of non-biodegradable compounds were found in the leachate and most of them had the characteristic of aromatic hydrocarbon. Among them dibutyl phthalate was identical with a substance included in the list of US EPA, which is classified as a mutagen that may cause the mutation of genes and disorders in chromosomes. In addition, 2,5-Cyclohexadiene-1,4-dione, 1,2-Benzenedicarboxylic acid and butyl octyl ester were found to be similar to substances listed by USEPA. According to the result of analyzing structural changes before and after ozonation using GC-MS, cyclic compounds and aromatic compounds were observed in the original water and aliphatic compounds were newly observed after ozonation. In addition, through ozonation, humic substances of high molecular weight were oxidized and decomposed and produced low-molecular compounds such as aldehyde, ketone and carboxyl acid and highly biodegradable aliphatic carbon, which suggests the bio-degradability of non-biodegradable substances.

Acetaldehyde폐수의 활성오이법에 의한 기질제거조건 (Substrate Removal Condition in Activated Sludge Process of Wastewater from Acetaldehyde Manufacturing Plant)

  • 금영일;금두조
    • 환경위생공학
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    • 제8권1호
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    • pp.107-116
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    • 1993
  • This study is conducted to investigate treatability by activated sludge process for wastewater from acetaldehyde manufacturing plant. The optimum hydraulic retention time in aeration tank for removal of high strength substrate were measured. The removal efficiency were checked out by hydraulic retention time : 35hr., 40hr. and 45hr., respectively. $COD_{Cr}$, like substances were removed in all hydraulic retention time zone directed for efficiency, but non-biodegradable substances were remained. $COD_{Cr}$ biomass loading was 0.81kg $COD_{Cr}/kgMLVSS$ . day at 35hr. of retention time, 0.34 kg$COD_{Cr}$/kg MLVSS . day at 40hr., and O.l9kg$COD_Cr$/kgMLVSS . day at 45hr. And the mean $COD_{Cr}$, removal efficiency was 65.5%, 81.6% and 83.0%, respectively. And also $COD_{Cr}$, volume loading was 1.01kg$COD_{Cr}/m^3$ day, 0.87kg$COD_{Cr}/m^3$ - day, and 0.79kg$COD_{Cr}/m^3{\cdot }$day, respectively. The basic design parameter obtained is as fallows. The value of Specific substrate removal rate coefficient (k), Yield coefficient(Y) and Decay coefficient($k_d$) was $0.0013day^{-1}$, $0.505kgMLVSS/kgCOD_{Cr}$ and $0.040day^{-1}$, respectively.

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Feasibility of Recycling Residual Solid from Hydrothermal Treatment of Excess Sludge

  • Kim, Kyoung-Rean;Fujie, Koichi;Fujisawa, Toshiharu
    • Environmental Engineering Research
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    • 제13권3호
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    • pp.112-118
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    • 2008
  • Residual solid in excess sludge treated by hydrothermal reaction was investigated as raw material for its recycling. Treated excess sludge and residual solid were also focused on their content change during hydrothermal reaction. Two kinds of excess sludge, obtained from a local food factory and a municipal wastewater treatment process, were tested under various conditions. Following hydrothermal reaction, depending on the reaction conditions, biodegradable substrates in treated excess sludge appeared to increase. The separated residual solid was a composite composed of organic and inorganic materials. The proportion of carbon varied from 34.0 to 41.6% depending on reaction conditions. Although 1.89% of hazardous materials were detected, SiO2 (Quartz) was a predominant constituent of the residual solid. X-ray diffraction (XRD) experiments revealed that the residual solid was of a partially amorphous state, suggesting that the residual solids could be easily converted to stable and non harmful substances through a stabilization process. Thus, this technology could be successfully used to control excess sludge and its reuse.

관개기간 중 농경지로부터의 용존 유기물의 유출 (Outflow of Dissolved Organic Matter from Agricultural Fields in an Irrigation Period)

  • 심수용;김범철;호소이 요시히코;마스다 다카노리
    • 한국물환경학회지
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    • 제21권2호
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    • pp.141-146
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    • 2005
  • The aim of this study is to quantify and characterize the dissolved organic carbon (DOC) from paddy fields and crop fields in Tottori, Japan. DOC and ultraviolet (UV) absorption were measured in the filtrated water of each sample. The DOC concentration and the SUVA (specific UV absorption) of biodegradation analysis samples were determined around 50 days after their incubation. In the Fukui paddy fields, DOC concentration varied seasonally from 1.1 to $10.1mg\;Cl^{-1}$, becoming higher during heavy runoffs in April, a non-agriculture period. Variations in DOC concentration did not always correspond to rainfall, though. The Obadake paddy fields showed a DOC concentration pattern similar to that of the Fukui paddy fields. The daily DOC discharge per area in the Fukui (up), Fukui (down), Obadake (south) and Obadake (north) paddy fields influent from paddy fields were 0.02, 0.0161, 0.0135 and $0.0027kg\;a^{-1}day^{-1}$, respectively. These differences resulted from differences in agricultural types and customs of farmers according to paddy fields and other kinds of fields. Also, the SUVAs [which are indirect means to evaluate humic substances (hydrophobic fractions)] of the studied influent waters from paddy fields were generally lower than those of the influent waters from crop fields. Nonbiodegradable DOC accounted for 50.2 - 98% and 46.8 - 85.5% of the total DOC in the paddy fields and in the crop fields, respectively.

피트(peat) 혼합담체를 이용한 저농도 질소산화물(NOx) 제거특성 (Removal Characteristics of Nitrogen Oxides (NOx) in Low Concentration using Peat-Mixed Media)

  • 강영현;김덕우;강선홍;권필주;김달우;황필기;심상보
    • 한국대기환경학회지
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    • 제26권3호
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    • pp.330-338
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    • 2010
  • In this study, removal characteristics of nitrogen oxides $(NO_x)$ from road transport by using peat as the packing media for biodegradation have been investigated in the long term. Physicochemical and biological treatment of peatmixed media eliminates any requirement to use chemical substances and also facilitates the biodegradable actions of microorganism. Safe biodegradation of pollutants, no need to apply additional microbes owing to their active growth, and no generation of secondary pollutants were found in this experiment. It was concluded that average removal efficiencies of nitric oxide (NO) and nitrogen dioxide $(NO_2)$ were 80% and 97% respectively with respect to the linear velocity 35~40 mm/s and 0.3 ppm ozone concentration in the long period operation. Inflow concentration of nitric oxide over 0.05 ppm was suitable when pretreated with ozone. Non-ozone stage was performed with linear velocity 20~100 mm/s and then the average removal efficiency of nitric oxide and nitrogen dioxide were 38% and 94% respectively. Other results showed that the apparent static pressure was raised with increases in applied water content and aerial velocity in mixed media during fan operation.

폐화약류의 친환경적 폐기처리 공정의 최근 현황 및 전망 (Current Status and Prospects of Eco-friendly Disposal Processes for Waste Explosives)

  • 김태호;김덕열;김종민
    • 청정기술
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    • 제29권1호
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    • pp.1-9
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    • 2023
  • 군에서의 폐탄약 및 제조업체에서 생산 중에 발생되는 불용화약 등 폐화약류는 지속적으로 발생되고 있다. 이들은 화재, 폭발 등을 유발하는 화약류의 위험성으로 일반 폐기물 처 리시설에서는 처리가 어려우며, 지정된 폐기처리시설에서 야외 소각 및 기폭처리를 하는 것이 고전적인 폐기처리 방법이다. 야외에서의 소각 및 기폭을 통한 폐기처리시에는 SOx, NOx와 같은 유해물질의 배출에 의한 대기오염, 중금속 및 난분해성 물질로 인한 토양 및 수질 오염 등 다양한 환경문제를 유발시킨다. 이러한 환경문제를 극복하기 위한 친환경적인 다양한 폐기처리 방안이 개발되고 있으며, 일부 국가에서 운영중에 있다. 본고에서는 폐화약류의 다양한 친환경적인 폐기처리 공정 및 각 공정에 있어서의 장, 단점을 소개하여 폭발성 위험물 및 유해물질처리의 향후 연구방향을 제안하고자 한다.