• 제목/요약/키워드: $Fe_3O_4$ concentration

검색결과 370건 처리시간 0.03초

Fenton 산화법에 의한 매립장 침출수의 생물 분해성 증진에 관한 평가 (Evaluation on Enhanced Biodegradability in Landfill Leachate by Fenton Oxidation)

  • 이병대
    • 한국응용과학기술학회지
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    • 제22권3호
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    • pp.250-256
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    • 2005
  • This study was aimed to investigate treatment feasibility of leachate from D landfill that is located in gyr대ungbuk. From the analytical results of leachate, organic and nonbiodegradable matters were contained in high concentration. Thus chemical treatment was introduced to degrade nonbiodegradable matters in pre or post biological process. Two types of Fenton oxidation were adapted in this study. The first one is pre treatment process before biological treatment. The second one is post treatment process after biological treatment. The optimal conditions of both treatment methods were investigated as follows. In case of pre treatment process, the optimal conditions appeared in $Fe^{+2}/H_2O_2$(mmol/mmol): 0.1, $H_2O_2/CODcr$(mg/mg): 27.0, pH: 3 and reaction time: 2hrs. On the other hand, in case of post treatment process, the optimal conditions appeared in $Fe^{2+}$(mmol/mmol): 0.14, $H_2O_2/COD_{cr}$(mg/mg): 57.4, pH: 3 and reaction time: 1.25hrs. In the above optimal conditions, high COD removal was obtained in pre and post treatment process. Also it can expect that Fenton oxidation converted nonbiodegradable matters into biodegradable matters.

석영관 광촉매 반응기를 이용한 Rhodamine B의 색도 제거 (Decolorization of Rhodamine B Using Quartz Tube Photocatalytic Reactor)

  • 박영식
    • 한국환경보건학회지
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    • 제30권5호
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    • pp.358-365
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    • 2004
  • The photocatalytic oxidation of Rhodamine B(RhB) was studied using photocatalytic reactor filled with module of quartz tube. Module of quartz tube consisted of small quartz tube (inner diameter, 1.5 mm; outer diameter, 3 mm) bundle coated with powder $TiO_2$ and uncoated large quartz tube (inner diameter, 20 mm; outer diameter, 22 mm). Two 30 W germicidal lamp was used as the light source and the reactor volume was 0.5 l. The effects of parameters such as the coating materials and numbers, initial concentration, $H_{2}O_2$ dose and metal deposition (Ag, Pt and Fe) and simultaneous application of $H_{2}O_2$ and metal deposition. The results showed that the initial reaction constant of quartz module coated with powder $TiO_2$ was higher 1.4 time than that of the $TiO_2$ sol and optimum coating number is twice. In order to increase reaction rate, simultaneous application of photocatalytic and photo-fenton reaction using Fe coating and dose $H_{2}O_2$ dose increased reaction rate largely.

CO-SEPARATION OF Am AND RARE EARTH ELEMENTS FROM A HIGHLY ACIDIC RADWASTE SOLUTION BY A SOLVENT EXTRACTION WITH (DIMETHYLDIBUTYL TETRADECYLMALONAMIDE-DIHEXYLOCTANAMIDE)/N-DODECANE

  • Lee, Eil-Hee;Lim, Jae-Gwan;Chung, Dong-Yong;Yoo, Jae-Hyung;Kim, kwang-Wook
    • Nuclear Engineering and Technology
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    • 제41권3호
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    • pp.319-326
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    • 2009
  • This study was carried out to investigate the high-acidity co-separation of Am and RE from a simulated radwaste solution by a solvent extraction using a mixture of Dimethyldibutyltetradecylmalonamide (DMDBTDMA, as an extractant) and dihexyl octanamide (DHOA, as a phase modifier) diluted with n-dodecane (NDD). All the experiments were conducted as a batch type. First, the environmentally friendly DMDBTDMA and DHOA composed of only CHON atoms were self-synthesized. Then, the conditions for the prevention of a third phase, generated in the organic phase were examined. In addition, the effects of the concentration of nitric acid, DHOA, oxalic acid and $H_2O_2$ on the co-extraction of Am and RE were elucidated. Consequently, the optimum condition of (0.5M DMDBTDMA+0.5M DHOA)/NDD-0.3M $C_2H_2O_4-4.5M$ $HNO_3$ and O/A=2 was obtained through experimental work. Under this condition, the extraction yields were found to be about 80% for Am, more than 70% for RE such as La, Eu, Nd, Ce, etc., 3% for Cs and Sr, 69% for Fe and less than 11% for Mo and Ru. For the co-extraction of Am and RE, Fe should be removed in advance or prevented from a co-extraction with Am by controlling the different extraction rates of Am and Fe. About 95% of the Am and RE in the organic phase were stripped using a 0.5M $HNO_3$.

CF4/O2 Gas Chemistry에 의해 식각된 Ru 박막의 표면 반응 (Surface Reaction of Ru Thin Films Etched in CF 4/O2 Gas Chemistry)

  • 임규태;김동표;김경태;김창일;최장현;송준태
    • 한국전기전자재료학회논문지
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    • 제15권12호
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    • pp.1016-1020
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    • 2002
  • Ru thin films were etched using CF/$_4$O$_2$ plasma in an ICP (inductively coupled plasma etching) system. The maximum etch rate of Ru thin films was 168 nm/min at a CF$_4$/O$_2$ gas mixing ratio of 10 %. The selectivity of SiO$_2$ over Ru was 1.3. From the OES (optical emission spectroscopy) analysis, the optical emission intensity of the O radical had a maximum value at 10% CF$_4$ gas concentration and drcrease with further addition of CF4 gas, but etch slope was enhanced. From XPS (x-ray photoelectron spectroscopy) analysis, the surface of the etched Ru thin film in CF$_4$/O$_2$ chemistry shows Ru-F bonds by the chemical reaction of Ru and F. RuF$_{x}$ compounds were suggested as a surface passivation layer that reduces the chemical reactions between Ru and O radicals. From a FE-SEM (field emission scanning electron microscope) micrograph, we had an almost perpendicular taper angle of 89$^{\circ}$.>.

만경강 하천변 충적 지하수의 용존 Fe와 Mn 거동에 대한 산화-환원 과정과 용해 평형의 효과 (Effect of Redox Processes and Solubility Equilibria on the Behavior of Dissolved Iron and Manganese in Groundwater from a Riverine Alluvial Aquifer)

  • 최범규;고동찬;하규철;전수현
    • 자원환경지질
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    • 제40권1호
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    • pp.29-45
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    • 2007
  • 전라북도 전주시 지역의 만경강 하천변 충적 대수층에 심도 30m까지 설치된 다중 심도 관정을 이용하여 산화-환원 환경과 관련된 지하수의 생물지구화학적 특성을 조사하였다. 대체로 용존 산소(DO)가 1 mg/L이하의 혐기성 환경이 지배적이었으며, 10-20m 구간에서는 높은 농도의 Fe($14{\sim}37mg/L$)와 Mn($1{\sim}4mg/L$)이 나타나고 그 하부에서는 S(-II) 이온이 검출되었다. 용존 Fe와 Mn이 높은 구간에서는 $O_2,\;NO_3$가 거의 없고, 퇴적물내의 Fe와 Mn의 함량은 심도에 따라 큰 차이 없이 분포하고 있어 전자수용체로서 이용된 Fe(III), Mn(IV)의 환원에 의해 지하수내의 용존 Fe와 Mn의 농도가 높아진 것으로 볼 수 있다. 용존 농도에서 Mn이 Fe에 비해 상대적으로 농도가 높게 나타나는 구간이 더 넓다. 환원 과정에서 전자공여체(electron donor)로 이용될 수 있는 유기 탄소(DOC) 농도가 지하수면 부근에서 급격히 감소하는 것으로 보아 지하수내 유기물은 상부에서 유입되는 것으로 보인다. 20m 하부에서는 $SO_4$가 감소하고 S(-II) 이온이 검출되는 것으로 보아 상부 구간보다는 하부구간에서 $SO_4$ 환원작용이 활발함을 지시한다. 여러 산화-환원쌍으로부터 계산된 산화-환원 전위는 Fe를 포함하는 쌍들간을 제외하고는 모두 일치하지 않아 전체적으로 산화-환원적으로 비평형 상태에 있다고 볼 수 있다. 지하수면 부근을 제외하고는 siderite, rhodochrosite 등의 탄산염 광물의 포화지수가 -2에서 +1의 범위를 보여 이들 광물에 의해 각각 Fe(II), Mn(II) 이온의 농도가 지하수내에서 조절될 수 있음을 보여주며, 20m 하부 심도 구간에서 S(-II) 이온이 검출되는 지점에서는 Fe(II)의 경우 FeS 광물에 의해서도 농도가 조절될 수 있다.

Experimental design approach for ultra-fast nickel removal by novel bio-nanocomposite material

  • Ince, Olcay K.;Aydogdu, Burcu;Alp, Hevidar;Ince, Muharrem
    • Advances in nano research
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    • 제10권1호
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    • pp.77-90
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    • 2021
  • In the present study, novel chitosan coated magnetic magnetite (Fe3O4) nanoparticles were successfully biosynthesized from mushroom, Agaricus campestris, extract. The obtained bio-nanocomposite material was used to investigate ultra-fast and highly efficient for removal of Ni2+ ions in a fixed-bed column. Chitosan was treated as polyelectrolyte complex with Fe3O4 nanoparticles and a Fungal Bio-Nanocomposite Material (FBNM) was derived. The FBNM was characterized by using X-Ray Diffractometer (XRD), Scanning Electron Microscopy-Energy Dispersive X-Ray Spectroscopy (SEM-EDS), Fourier Transform Infrared spectra (FTIR) and Thermogravimetric Analysis (TGA) techniques and under varied experimental conditions. The influence of some important operating conditions including pH, flow rate and initial Ni2+ concentration on the uptake of Ni2+ solution was also optimized using a synthetic water sample. A Central Composite Design (CCD) combined with Response Surface Modeling (RSM) was carried out to maximize Ni2+ removal using FBNM for adsorption process. A regression model was derived using CCD to predict the responses and analysis of variance (ANOVA) and lack of fit test was used to check model adequacy. It was observed that the quadratic model, which was controlled and proposed, was originated from experimental design data. The FBNM maximum adsorption capacity was determined as 59.8 mg g-1. Finally, developed method was applied to soft drinks to determine Ni2+ levels. Reusability of FBNM was tested, and the adsorption and desorption capacities were not affected after eight cycles. The paper suggests that the FBNM is a promising recyclable nanoadsorbent for the removal of Ni2+ from various soft drinks.

High Resistivity Characteristics of the Sinter Dust Generated from the Steel Plant

  • Lee, Jae-Keun;Hyun, Ok-Chun;Lee, Jung-Eun;Park, Sang-Deok
    • Journal of Mechanical Science and Technology
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    • 제15권5호
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    • pp.630-638
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    • 2001
  • The electrical resistivity of sinter dusts generated from the steel industry and coal fly ash from the coal power plant has been investigated using the high voltage conductivity cell based on JIS B 9915 as a function of temperature and water content. Dust characterization such as the chemical composition, size distribution, atomic concentration, and surface structure has been conducted. Major constituents of sinter dusts were Fe$_2$O$_3$(40∼74.5%), CaO (6.4∼8.2%), SiO$_2$(4.1∼6.0%), and unburned carbon (7.0∼14.7%), while the coal fly ash consisted of mainly SiO$_2$(51.4%), Al$_2$O$_3$(24.1%), and Fe$_2$O$_3$(10.5%). Size distributions of the sinter dusts were bi-modal in shape and the mass median diameters (MMD) were in the range of 24.7∼137㎛, whereas the coal fly ash also displayed bi-modal distribution and the MMD of the coal fly ash was 35.71㎛. Factors affecting resistivity of dusts were chemical composition, moisture content, particle size, gas temperature, and surface structure of dust. The resistivity of sinter dusts was so high as 10(sup)15 ohm$.$cm at 150$\^{C}$ that sinter dust would not precipitate well. The resistivity of the coal fly ash was measured 1012 ohm$.$cm at about 150$\^{C}$. Increased water contents of the ambient air lowered the dust resistivity because current conduction was more activated for absorption of water vapor on the surface layer of the dust.

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철과 망간이 동시에 코팅된 다기능성 모래를 이용한 용존 Mn(II) 제거 (Removal of Soluble Mn(II) using Multifunctional Sand Coated with both Fe- and Mn-oxides)

  • 임재우;장윤영;양재규
    • 대한환경공학회지
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    • 제32권2호
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    • pp.193-200
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    • 2010
  • 복합 오염물질 처리를 위해 제조한 다기능성 흡착제인 철과 망간이 동시에 코팅된 모래(Iron and Manganese Coated Sand, IMCS)를 이용하여 용존 Mn(II) 처리 특성을 평가하였다. 실험에 사용된 IMCS는 0.05 M의 Mn(II)과 Fe(III) 용액을 pH 7에서 혼합하여 담체로 쓰인 모래에 코팅하여 제조하였다. IMCS는 ${\gamma}-MnO_2$ 형태의 Mn 산화물과 goethite 및 magnetite($F_{e3}O_4$) 형태의 철산화물이 동시에 존재하는 것으로 나타났다. Mn과 Fe의 함유량은 각각 826 및 1676 mg/kg으로 분석되었으며 $pH_{pzc}$는 6.40으로 측정되었다. IMCS와 산화제로서 NaOCl과 $KMnO_4$를 이용하여 Mn(II)의 제거에 관한 회분식 실험을 pH, 시간, 주입 농도를 변수로 하여 수행하였다. IMCS를 이용하여 Mn(II)을 처리하였을 때, pH 7.4에서 약 34%의 제거율을 나타내었고, 산화제인 NaOCl(13.6 mg/L)을 주입 후 IMCS와 반응시킨 결과 pH 7.0에서 96%의 제거율을 나타냈고, $KMnO_4$(4.8 mg/L)을 이용한 경우 pH 7.6에서 89%의 제거율을 나타내었다. IMCS와 산화제를 이용하여 Mn(II)을 제거할 경우, 용액의 pH가 증가함에 따라 제거율이 증가하는 양이온 형태의 제거 경향을 따랐으며, 반응 시간 6시간이 경과 후 거의 일정한 상태에 도달하는 것으로 나타났다. IMCS만을 이용하여 Mn(II)을 제거한 경우 833.3 mg/kg의 최대제거량을 나타냈고, 산화제로 NaOCl(13.6 mg/L), $KMnO_4$(4.8 mg/L)를 주입 후 IMCS와 반응시킨 경우 최대제거량은 각각 1428.6 및 1666.7 mg/kg으로 나타났다. IMCS에 의한 Mn(II)의 제거는 2차 반응속도식 및 Langmuir 식으로 잘 표현되었다.

고효율 자외선/광촉매 시스템을 이용만 고농도 유기성 폐수처리 (Treatment of highly concentrated organic wastewater by high efficiency $UV/TiO_{2}$ photocatalytic system)

  • 김중곤;정효기;손주영;김시욱
    • KSBB Journal
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    • 제23권1호
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    • pp.83-89
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    • 2008
  • 음식물쓰레기를 처리하기 위한 3단계 메탄발효시스템으로부터 유출되는 음식물 발효 폐액은 고농도 유기성 폐수이다. 유기성 폐수는 고도처리 시스템에 의해 방류기준에 적합하게 처리되어져야만 한다. 본 연구에서는 유기성 폐수를 처리하기 위해 고효율 $UV/TiO_{2}$ 광촉매 산화공정의 최적 운전 조건을 조사하였다. 첫 번째 공정에서 폐수에 응집제인 $FeCl_{3}$를 전처리 하였으며, 응집을 위한 최적 pH와 응집제의 농도는 각각 pH 4와 2000 mg/L이었다. 이 공정을 통하여 최대 52.6%의 COD가 제거되었다. 두 번째는 $UV/TiO_{2}$ 광촉매 산화공정으로, 최적 운전 조건은 중심파장이 254 nm, 폐수 온도 및 pH가 각각 $40^{\circ}C$와 pH 8, 반응기 주입 공기량이 40 L/min인 것으로 조사되었다. 응집제를 이용한 전처리 공정과 광촉매 산화공정을 병합하여 최적조건에서 폐수를 처리할 경우 T-N과 COD의 제거율은 각각 69.7%와 70.9% 이었다.

Ring Oxpening Polymerization of D,L-Lactide on Magnetite Nanoparticles

  • Tian Jing;Feng Ya-Kai;Xu Yong-Shen
    • Macromolecular Research
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    • 제14권2호
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    • pp.209-213
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    • 2006
  • The ring-opening polymerization of D,L-lactide initiated by tin(II) 2-ethylhexanoate $(Sn(Oct)_2)$ on the surface-initiated magnetite $(Fe_{3}O_4)$ nanoparticles was performed at $130^{\circ}C$. The effects of the polymer molar mass and concentration on the amount of surface polymer were investigated. The number average molecular weights, $M_n$, obtained by both NMR and GPC methods fit well within the accuracy of the applied methods and ranged from 1,100 to $4,040g\;mol^{-1}$. A surface functionalization density of up to 625 initiation sites per particle was obtained. The composition of various core-shell particles was determined by TGA, with results indicating magnetite $(Fe_{3}O_4)$ contents, ${\mu}m$, between 17 and 59 wt%. Under the influence of a magnetic field, the heating generated by superparamagnetic core-shell particles suspended in toluene presented guidelines for an optimization of magnetic particle systems with respect to an application for hyperthermia.