• 제목/요약/키워드: Waste Removal

검색결과 1,010건 처리시간 0.028초

거품부상법을 이용한 코발트이온제거(I): 침전부상법 (Removal of Cobalt ion by Foam Flotation(I): Precipitate Flotation)

  • 정인하;박희성;문제선;임성팔;배기광
    • 공업화학
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    • 제10권1호
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    • pp.41-45
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    • 1999
  • 모의폐액으로 제조한 50 ppm의 코발트이온을 sodium lauryl sulfate의 계면활성제를 사용하여 침전부상법으로 제거하였다. 침전부상으로 코발트 이온을 제거하기 전에 35% $H_2O_2$를 모의폐액에 첨가하여 폐액의 전처리 과정을 도입하였다. 그 결과 최적 pH 및 처리후 잔존용액의 pH가 낮아졌고, 넓은 범위의 pH에서 높은 제거율을 나타내었다. 초기 코발트 이온농도, pH, 계면활성제 농도, 제거시간, 공급기체 유속, 외부이온 농도 등을 변수로 하여 실험한 결과, 초기 코발트 이온농도 50 ppm, pH 9.5, 공급기체 유속 70 mL/min, 제거시간 30분 등의 조건에서 99.8%의 제거율을 나타내었다. 침전물과 계면활성제의 흡착은 zeta potential 뿐만 아니라 침전물의 용해도 및 pH에 따라 변화하는 화학종과의 친화력과도 관계가 되는 것으로 추축되었다. 외부 이온으로서 $NO_3{^-}$, ${SO_4}^{-2}$, $Na^+$, $Ca^{+2}$를 첨가하여 그 영향을 관찰하였으며, ${SO_4}^{-2}$가 0.1 M 함유된 cobalt 용액을 침전부상법으로 처리한 결과 zeta potential의 감소 및 침전방해 등의 이유로 제거효율은 90%를 나타내었다.

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광촉매 카트리지를 활용한 악취 및 VOC를 함유한 폐가스의 광촉매처리 (Photocatalytic Treatment of Waste Air Containing Malodor and VOC by Photocatalytic Reactor Equipped with the Cartridges Containing the Media Carrying Photocatalyst)

  • 임광희
    • Korean Chemical Engineering Research
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    • 제51권1호
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    • pp.80-86
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    • 2013
  • 본 연구에서는 광촉매담지 실리카담체 카트리지를 장착한 광촉매반응기시스템을 활용하여 악취 가스인 황화수소 및 휘발성유기화합물(VOC)인 에탄올 및 톨루엔이 함유된 폐가스처리를 수행하고, 그 연구결과를 상용 광촉매담지 부직포필터 카트리지를 장착한 광촉매반응기시스템을 활용한 연구결과와 비교 및 평가하였다. 광촉매담지 실리카담체 카트리지를 장착한 광촉매반응기시스템의 경우는 1단계 운전에서 에탄올 및 톨루엔의 제거율은 각각 80% 및 20% 값을 계속 유지하였으나, 에탄올의 제거율은 톨루엔과 다르게 점점 떨어져서 1단계 끝에는 제거율 40% 값을 보였다. 한편 황화수소의 제거율은 100%에서 90%로 감소하였다. 에탄올의 제거율은 2단계 운전에서 10% 값을 보여서 더욱 감소하였으나, 황화수소 및 톨루엔 제거효율은 처리대상 폐가스의 톨루엔 부하가 4배로 급격히 증가하였음에도 불구하고 제거효율이 각각 90% 및 20% 값을 그대로 유지하였다. 3단계 운전은 알루미늄 코팅된 반사막필름을 광촉매반응기에 사용한 결과로서, 에탄올 및 톨루엔의 제거율은 각각 약 5%가 증가한 15% 및 25%의 제거율을 보였다. 한편 광촉매담지 부직포필터 카트리지를 장착한 광촉매반응기시스템의 에탄올, 황화수소 및 톨루엔 제거율은 1단계 운전에서 각각 10%, 97% 및 100% 값을 유지하였다. 그러나 2단계 운전에서 에탄올, 황화수소 및 톨루엔 제거율은 각각 5%, 95% 및 2~3% 미만의 제거율을 보여서 에탄올과 황화수소는 제거율이 약간 저하되었으나 톨루엔의 경우에는 완전 제거에서 급락하였다. 또한 에탄올, 황화수소 및 톨루엔 모든 경우에서 반사막필름의 효과를 전혀 보지 못하였다. 따라서 상용 광촉매담지 부직포필터 카트리지를 장착한 광촉매반응기시스템에서 에탄올, 황화수소 및 톨루엔 제거는 부직포필터의 혐수성 VOC에 대한 흡착능에 주로 기인하였고, 광촉매 활성에 의한 제거는 광촉매담지 실리카담체 카트리지를 장착한 광촉매반응기시스템보다 훨씬 미미하였다.

PFR 공정의 ASBF 구조에 의한 유기물제거와 질산화의 영향에 대한 연구 (A Study on the Removal Characteristics of Dissolved Organic and Ammonia Compounds in PFR of Aerated Submerged Bio-film (ASBF) Reactor)

  • 최영익
    • 한국환경과학회지
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    • 제17권11호
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    • pp.1265-1271
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    • 2008
  • Aerated submerged bio-film (ASBF) pilot plant has been developed. The presented studies optimized an inexpensive method of enhanced wastewater treatment. The objectives of this research were to describe pilot scale experiments for efficient removal of dissolved organic and nitrogen compounds by using ASBF reactor in plug-flow reactor (PFR) and improve understanding of dissolved organic matter and nitrogen compounds removal rates with dynamic relationships between heterotrophs and autotrophs in the fixed-film reactor. This research explores the possibility of enhancing the performance of shallow wastewater treatment lagoons through the addition of specially designed structures. This direct gas-phase contact should increase the oxygen transfer rate into the bio-film, as well as increase the micro-climate mixing of water, nutrients, and waste products into and out of the bio-film. This research also investigated the efficiency of dissolved organic matter and ammonia nitrogen removals in the ASBF. As it was anticipated, nitrification activity was highest during periods when the flow rate was lower, but it seemed to decline during times when the flow rate was highest. And ammonia nitrogen removal rates were more sensitive than dissolved organic matter removal rates when flow rates exceeded 2.2 L/min.

Removal Characteristics of Ethyl Acetate and 2-Butanol by a Biofilter Packed with Jeju Scoria

  • KAM SANG-KYU;KANG KYUNG-HO;LEE MIN-GYU
    • Journal of Microbiology and Biotechnology
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    • 제15권5호
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    • pp.977-983
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    • 2005
  • The removal characteristics of ethyl acetate and 2-butanol were investigated in a bench-scale down-flow biofilter packed with Jeju scoria medium. Various inlet concentrations and gas flow rates were tested. The adaptation times of microorganisms to the change of the influent concentration of ethyl acetate and 2-butanol gas were found to be about 3 days. At the inlet concentration of 300 ppmv and empty bed contact time (EBCT) of 15 see, the removal efficiencies of the biofilter for ethyl acetate and 2-butanol were above $99.9\%$. The maximum removal capacity of the biofilter for ethyl acetate was $316-318\;g/m^3/h$ and that for 2-butanol was $245-251\;g/m^3/h$. Overall, the removal capacity of the biofilter for ethyl acetate was $50-70\;g/m^3/h$ larger than that for 2-butanol. During the operation of 65 days, the pressure drop through the biofilter column was maintained below $13\;mmH_{2}O/m$. Although the pH in the drain water decreased from 7.2 to 5.0, the pH drop did not affect the removal of the gases. From the above results, the biofilter using Jeju scoria as a packing material seemed to very effectively treat waste gases such as ethyl acetate and 2-butanol.

Cobalt ferrite nanotubes and porous nanorods for dye removal

  • Girgis, E.;Adel, D.;Tharwat, C.;Attallah, O.;Rao, K.V.
    • Advances in nano research
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    • 제3권2호
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    • pp.111-121
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    • 2015
  • $CoFe_2O_4$ nanotubes and porous nanorods were prepared via a simple one-pot template-free hydrothermal method and were used as an adsorbent for the removal of dye contaminants from water. The properties of the synthesized nanotubes and porous nanorods were characterized by electron diffraction, transmission electron microscopy and x-ray powder diffraction. The Adsorption characteristics of the $CoFe_2O_4$ were examined using polar red dye and the factors affecting adsorption, such as, initial dye concentration, pH and contact time were evaluated. The overall trend followed an increase of the sorption capacity reaching a maximum of 95% dye removal at low pHs of 2-4. An enhancement in the removal efficiency was also noticed upon increasing the contact time between dye molecules and $CoFe_2O_4$ nanoparticles. The final results indicated that the $CoFe_2O_4$ nanotubes and porous nanorods can be considered as an efficient low cost and recyclable adsorbent for dye removal with efficiency 94% for Cobalt ferrite nanotubes and for Cobalt ferrite porous nanorods equals 95%.

산성 및 유기성 가스의 동시제거를 위한 준건식 세정시스템의 적정 운전 조건 (Optimal Operation Condition of Spray Drying Sorber for Simultaneous Removal of Acidic and Organic Gaseous Pollutants)

  • 백경렬;구자공
    • 한국환경과학회지
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    • 제10권1호
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    • pp.59-64
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    • 2001
  • The effect of major operating parameters in spray drying sorber(=SDS) for automatic control for the simultaneous removal of acidic and organic gaseous pollutants from solid waste incinerator was performed. The field experiment was carried out in pilot scale test for the quantification of major operating parameters of hydrophilic and the hydrophobic pollutants. The removal efficiencies of $SO_2$and HCI in the 5wt% slurry condition were being increased with the increase of the stoichiometric ration which is the molecular ratio of lime to the pollutant concentration, and with the decrease of inflow flue gas temperature in the pilot SDS reactor. The removal efficiency along the height of spray drying sorber was closely related to the temperature profile, and more than 90% of total removal efficiency was achieved in an absorption region. For the removal of acidic gas the optimum operating condition considering the economics and a stable operation is the 5wt% of slurry concentration, 1.2 of stoichiometric ratio and 25$0^{\circ}C$ of inflow flue gas temperature. For the organic gases of benzene and toluene the removal efficiencies were 20-60% which is much lower than that of acidic gas. The best removal efficiency was obtained at 1.5 of stoichiometric ratio and 25$0^{\circ}C$ of inflow flue gas temperature. The organic\`s removal efficiency along the height of spray drying sorber was quite different from that of acidic gas, that is, more than 60% of the total removal efficiency for benzene and 90% of the total removal for toluene were achieved in the dried adsorption region, which was formed at the lower or exit part of the reactor.

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음식물쓰레기와 하수슬러지의 고율 혐기성 통합소화 (High-rate Anaerobic Co-digestion of Food Waste and Sewage Sludge)

  • 허남효;정상순
    • 신재생에너지
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    • 제1권2호
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    • pp.60-72
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    • 2005
  • The effect of alkaline pre-treatment on the solubilization of waste activated sludge(WAS) was investigated, and the biodegradability of WAS, pretreated WAS, [PWAS], food waste and two types of mixture were estimated by biochemical methane potential [BMP] test at $35^{\circ}C$. The biodegradability of PWAS and mixture waste were significantly improved due to the effect of alkaline hydrolysis of WAS. An alkaline pre-treatment was identified to be one of the useful pre-treatment for improving biodegradability of WAS and mixture waste. In high-rate anaerobic co-digestion system coordinate with an alkaline pre-treatment in process, the digesters were operated at the HRT of 5, 7, 10 and 13 days with a mixture of FW $50\%\;and\;PWAS\;50\%,\;$In term of $CH_4$ content, VS removal and specific methane production [SMP] which are the parameters in the performance of digester, the optimum operating condition was found to be a HRT of 7 days and a OLR of 4.20g/L-day with the highest SMP of 0.340 L $CH_4/g$ VS.

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혐기성소화 시 발생되는 $H_2S$ 감소에 관한 연구 (Decrease of the Hydrogen Sulfide($H_2S$) in the Produced Biogas by the Anaerobic Digestion)

  • 홍종순;김재우
    • 환경위생공학
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    • 제24권4호
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    • pp.80-89
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    • 2009
  • In the organic waste, food waste is the most difficult controls. In the study, food waste was treatmented to removal only the dockage. To decrease the hydrogen sulfide($H_2S$) in the produced biogas, iron chloride put in the anaerobic digester. Respectively treatment quantity of the food waste, content of the methane($CH_4S$) gas in the biogas, produced gases quantity, put in the quantity of the Iron chloride, pH, TS, Alkalinity, VFA, Ammonia. The results obtained from the experiment are as follows: 1. The produced biogases quantity/the treatment quantity of the food waste was $83.82{\sim}129.41m^3/ton$. 2. The content of the hydrogen sulfide($H_2S$) in the produced biogas is below of the 500ppm. The iron chloride put in the anaerobic digester. 200~300kg of the iron chloride put in the anaerobic digester at the steady-state. 400~850kg of the iron chloride put in the anaerobic digester at the unsteady-state. 3. Factor of the operator was the pH: 7.7~8.4, content of mathane: 55~65%. 4. TS(total solid) of the digestor sludge was 17~20%, Alkalinity was 38,500~41,750ppm, VFA(Volatile Fatty Acids) was 2,800~2,420ppm, Ammonia was 4,300~3,650ppm.

의료폐기물 소각가스 처리에 관한 연구 (Treatment Study on the Combustion Gas of Medical Waste)

  • 이성진;서만철
    • 환경위생공학
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    • 제23권3호
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    • pp.1-8
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    • 2008
  • Currently, medical waste stoker incinerator is widely used in the emission control technology of health-care risk waste and miscellaneous contaminated waste. In the past, wet type control technology was used to remove the major harmful gaseous contaminants of medical waste such as HCl, $NO_x,\;SO_2$, CO, DUST, Dioxin. However, the treatment cost for wastewater was high and it has a disadvantage for frozen system during winter season. Therefore, in order to obtain effective treatment, the dry type control technology was developed and widely used to remove the gaseous contaminants. In this study, pre-coated bag filter using hydrated lime, ($Ca(OH)_2$), was applied to the dry type control system and the optimum dose of hydrated lime was investigated. The treatment results showed that the dust collection rate was approximately 26.7%. Moreover, the HCl removal rate using pre-coated bag filter ($50mg/sm^3\;Ca(OH)_2$) was 13.52%, which was significantly higher than 3.26% obtained from conventional bag filter.

폐기물을 이용한 흡착제에 관한 연구 - 음식물 폐기물 - (Study on the Adsorbent using Waste - Food Waste -)

  • 박흥재;정성욱;이봉헌
    • 한국환경과학회지
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    • 제11권10호
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    • pp.1097-1101
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    • 2002
  • Activated carbon is amorphous and its intraparticle pores are well developed. Thus it has high adsorption capabilities and catalytic effect, and is utilized in many areas of industries such as food processing. In recent years, the demand of activated carbon has been increased to solve the environmental problems-waste treatment and removal of poisonous gas. Therefore, in this study an activated carbon was made using the waste and then the industrial characteristics of the produced activated carbon were investigated. The result showed that the carbonization yield was decreased when carbonization temperature was increased from 400 to $600^{\circ}C$ and that the optimal carbonization temperature was $500^{\circ}C$. The optimal concentration of NaOH for removing ash in the raw sample was 1~2N. The iodine adsorption of activated carbon using waste sample at $500^{\circ}C$ carbonization was 1204.28mg/g. The activation result of carbonization sample showed that the optimal activation condition was the carbonization at $500^{\circ}C$ and the activation at $800^{\circ}C$. So the production of activated carbon was thought to be possible, reused as resource, and decreased the environmental pollution.