• 제목/요약/키워드: Batch kinetic test

검색결과 37건 처리시간 0.025초

공침법에 의해 제조된 Magnetic Iron Oxide (MIO)를 이용한 수중 인 흡착 특성 (Characteristics of Phosphate Adsorption using Prepared Magnetic Iron Oxide (MIO) by Co-precipitation Method in Water)

  • 이원희;정진욱;김종오
    • 상하수도학회지
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    • 제29권6호
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    • pp.609-615
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    • 2015
  • This study was carried out for characterization of MIO synthesized in our laboratory by co-precipitation method and applied isotherm and kinetic models for adsorption properties. XRD analysis were conducted to find crystal structure of synthesized MIO. Further SEM and XPS analysis was performed before and after phosphate adsorption, and BET analysis for surface characterization. Phosphate stock solution was prepared by KH2PO4 for characterization of phosphate adsorption, and batch experiment was conducted using 50 ml conical tube. Langmuir and Freundlich models were applied based on adsorption equilibrium test of MIO by initial phosphate solution. Pseudo first order and pseudo second order models were applied for interpretation of kinetic model by temperature. Surface area and pore size of MIO were found $89.6m^2/g$ and 16 nm respectively. And, the determination coefficient ($R^2$) value of Langmuir model was 0.9779, which was comparatively higher than that of Freundlich isotherm model 0.9340.

Pinus densiflora 목질을 이용한 수용액 중의 Cu(II) 흡착 (Adsorption of Cu(II) from Aqueous Solutions Using Pinus densiflora Wood)

  • 박세근;김하나;김영관
    • 상하수도학회지
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    • 제21권1호
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    • pp.27-36
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    • 2007
  • Milled Korean pine (Pinus densiflora) wood was used to evaluate its adsorption capacity of Cu(II) ions from aqueous solution by running a series of batch experiments. Prior to the tests, the milled woods were pretreated with 1N NaOH, 1N $NHO_3$, and distilled water, respectively, to examine the effect of pretreatment. Within the tested pH range in this study between 3 and 6, copper adsorption efficiency of NaOH-treated wood(96~99%) was superior than $NHO_3$-treated wood(19~31%) and distilled water-treated wood(18~35%). Adsorption behavior of copper onto both raw and $NHO_3$-treated woods was mainly attributed to interaction with carboxylic acid group. For NaOH-treated wood, carboxylate ion produced by hydrolysis was a major functional group responsible for Cu sorption. NaOH treatment of wood changed the ester and carboxylic acid groups into carboxylate group, whereas $NHO_3$ treatment did not affect the production of functional groups which could bind copper. A pseudo second-order kinetic model fitted well for the sorption of copper ion onto NaOH-treated wood. A batch isotherm test using NaOH-treated wood showed that equilibrium sorption data were better represented by the Langmuir model than the Freundlich model.

Preparation and characterization of green adsorbent from waste glass and its application for the removal of heavy metals from well water

  • Rashed, M. Nageeb;Gad, A.A.;AbdEldaiem, A.M.
    • Advances in environmental research
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    • 제7권1호
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    • pp.53-71
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    • 2018
  • Waste glass disposal causes environmental problems in the cities. To find a suitable green environmental solution for this problem low cost adsorbent in this study was prepared from waste glass. An effective new green adsorbent was synthesized by hydrothermal treatment of waste glass (WG), followed by acidic activation of its surface by HCl (WGP). The prepared adsorbent was characterized by scanning electron microscopy (SEM), X-ray fluorescence (XRF), X-ray diffraction (XRD), and BET surface measurement. The developed adsorbent was used for the removal of heavy metals (Cd, Cu, Fe, Pb and Zn) from well water. Batch experiments were conducted to test the ability of the prepared adsorbent for the removal of Cd, Cu, Fe, Pb and Zn from well water. The experiments of the heavy metals adsorption by adsorbent (WGP) were performed at different metal ion concentrations, solution pH, adsorbent dosage and contact time. The Langmuir and Freundlich adsorption isotherms and kinetic models were used to verify the adsorption performance. The results indicated high removal efficiencies (99-100%) for all the studied heavy metals at pH 7 at constant contact time of 2 h. The data obtained from adsorption isotherms of metal ions at different time fitted well to linear form of the Langmuir sorption equation, and pseudo-second-order kinetic model. Application of the resulted conditions on well water demonstrated that the modified waste glass adsorbent successfully adsorbed heavy metals (Cd, Cu, Fe, Pb and Zn) from well water.

양극산화 공정을 이용한 Iron Oxide Nanotubes의 제조 및 수중 인 흡착 (Fabrication of Iron Oxide Nanotubes by Anodization for Phosphorus Adsorption in Water)

  • 이원희;임한수;김종오
    • 상하수도학회지
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    • 제30권6호
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    • pp.691-698
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    • 2016
  • This study was carried out to investigate the characterization of iron oxide nanotubes (INTs) by anodization method and applied adsorption isotherms and kinetic models for phosphate adsorption. SEM analysis was conducted to examine the INTs surface formation. Further XRD and XPS analysis were performed to observe the crystal structure of INTs before and after phosphate adsorption. AFM analysis was conducted to determine of Fe foil surface before and after anodization. Phosphate stock solution for adsorption experiment was prepared by $KH_2PO_4$. The batch experiment was conducted using 20 ml phosphate stock solution and $40cm^3$ of INTs in 50 ml conical tube. Adsorption isotherms were applied Langmuir and Freundlich models for adsorption equilibrium test of INTs. Pseudo first order and pseudo second order models were applied for interpretation of adsorption rate by reaction time. The determination coefficient ($R^2$) values of Langmuir and Freundlich models were 0.9157 and 0.8876 respectively.

Characterization of Bottom Ash as an Adsorbent of Lead from Aqueous Solutions

  • Gorme, Joan B.;Maniquiz, Marla C.;Kim, Soon-Seok;Son, Young-Gyu;Kim, Yun-Tae;Kim, Lee-Hyung
    • Environmental Engineering Research
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    • 제15권4호
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    • pp.207-213
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    • 2010
  • This study investigated the potential of using bottom ash to be used as an adsorbent for the removal of lead (Pb) from aqueous solutions. The physical and chemical characteristics of bottom ash were determined, with a series of leaching and adsorption experiments performed to evaluate the suitability of bottom ash as an adsorbent material. Trace elements were present, such as silicon and aluminum, indicating that the material had a good adsorption capacity. All heavy metals leached during the Korea standard leaching test (KSLT) passed the regulatory limits for safe disposal, while batch adsorption experiments showed that bottom ash was capable of adsorbing Pb (experimental $q_e$ = 0.05 mg/g), wherein the adsorption rate increased with decreasing particle size. The adsorption data were then fitted to kinetic models, including Lagergren first-order and Pseudo-second order, as well as the Elovich equation, and isotherm models, including the Langmuir, Freundlich and Dubinin-Radushkevich isotherms. The results showed that pseudo-second order kinetics was the most suitable model for describing the kinetic adsorption, while the Freundlich isotherm best represented the equilibrium sorption onto bottom ash. The maximum sorption capacity and energy of adsorption of bottom ash were 0.315 mg/g and 7.01 KJ/mol, respectively.

철침착 입상활성탄(Fe-GAC)을 이용한 지하수 내 비소 제거기술 (Arsenic Removal Using Iron-impregnated Ganular Activated Carbon (Fe-GAC) of Groundwater)

  • 윤지영;고경석;유용재;전철민;김규범
    • 자원환경지질
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    • 제43권6호
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    • pp.589-601
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    • 2010
  • 최근 들어 지질기원에 의해 발생되는 지하수내 비소오염이 많이 보고되고 있다. 본 연구에서는 지하수내 비소를 효과적으로 제거하거 위하여 철침착 입상활성탄(Fe-GAC)을 제조하고 이에 대한 흡착능을 평가하였다. Fe-GAC는 질산 염철 용액으로 입상활성탄에 철화합물을 침착시켜 제조하였으며, 이를 이용하여 침착반응시간에 따른 등온흡착, pH에 따른 비소 동력학 흡착반응 및 수처리시스템 예비평가를 위한 칼럼 실험을 수행하였다. 연구결과 침착반응 시간이 최소 12시간 이상에서 비소 제거에 필요한 철의 함량을 가진 Fe-GAC가 제조되었으며, 이들의 흡착능은 등온흡착실험에서도 확인되었다. 입상활성탄에 침착된 철화합물은 XRD 분석결과 대부분 질산염수산화철($Fe_4(OH)_{11}NO_3{\cdot}2H_20$)이었으나 일부 소량의 적철석($Fe_2O_3$)도 관찰되었다. 등온흡착실험은 Langmuir가 Freundlich 모델보다 더 적합하였으며, 모델링 결과 얻어진 Freundlich 분배계수($K_F$) 및 Langmuir 최대 흡착량($Q_m$)은 입상활성탄에 침착된 철 함량과 로그-로그 양의 상관관계를 보여주었다. 동력학 흡착실험 결과 pH 11을 제외한 모든 조건 (pH 4-9)에서 Fe-GAC는 비소에 대해 뛰어난 흡착능을 나타내었으며, 따라서 일반적인 지하수의 pH가 6-8 사이임을 고려하면 Fe-GAC는 비소를 흡착에 매우 효과적인 흡착제로 이용될 것이다. 동력학 모델링 결과 Fe-GAC와 비소의 흡착은 화학적 흡착(chemisorption) 과정을 나타내는 pseudo-second order 모델이 가장 적합하였다. 비소 수처리시스템에 대한 예비 평가를 위하여 칼럼실험을 수행한 결과, 지연계수 482.4이고 분배계수 581.1 L/mg으로 이는 12-24시간 침착반응에서 제조된 Fe-GAC의 Freundlich 등온흡착 모델의 분배계수(511.5-592.5 L/mg)와 유사한 값을 나타내었다. 이러한 연구결과는 향후 지하수를 활용하는 마을상수도 수처리시스템에서 Fe-GAC가 지하수의 비소를 제거하는 뛰어난 흡여재로 사용될 수 있음을 나타내는 것이다.

소나무(Pinus densiflora) 목질을 이용한 수용액 중의 Cu(II) 흡착 (Adsorption of Cu(II) from Aqueous Solutions Using Pine (Pinus densiflora) Wood)

  • 김하나;박세근;양경민;김영관
    • 산업기술연구
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    • 제27권A호
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    • pp.195-202
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    • 2007
  • Milled Korean pine (Pinus densiflora) wood was used to evaluate its adsorption capacity of Cu(II) ions from aqueous solution by running a series of batch experiments. Prior to the tests, the milled woods were pretreated with 1N NaOH, 1N $HNO_3$, and distilled water, respectively, to examine the effect of pretreatment. Within the tested pH range between 3 and 6, copper adsorption efficiency of NaOH-treated wood(96~99%) was superior to the $HNO_3$-treated wood(19~31%) and distilled water-treated wood(18~35%). The efficiency of copper removal by wood enhanced with increasing solution pH and reached a maximum copper ion uptake at pH 5~6. Adsorption behavior of copper onto both raw and $HNO_3$-treated woods was mainly attributed to interaction with carboxylic acid group. For NaOH-treated wood, carboxylate ion produced by hydrolysis or saponification was a major functional group responsible for Cu sorption. NaOH treatment of wood changed the ester and carboxylic acid groups into carboxylate group, whereas $HNO_3$ treatment did not affect the production of functional groups which could bind copper. A pseudo second-order kinetic model fitted well for the sorption of copper ion onto NaOH-treated wood. A batch isotherm test using NaOH-treated wood showed that equilibrium sorption data were better represented by the Langmuir model than the Freundlich model.

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입상 활성탄 및 표면 개질 활성탄의 장·단사슬 PFCA와 PFSA 흡착 특성 (The characteristics of long- and short- chain PFCA and PFSA adsorption on granular activated carbon and surface-modified granular activated carbon)

  • 신정우;최상기;손희종;안병렬
    • 상하수도학회지
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    • 제38권4호
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    • pp.199-208
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    • 2024
  • In this paper, the adsorption removal characteristic for 10 species of perfluoroalkyl and polyfluoroalkyl substances (PFAS) was investigated using GAC and modified GAC (GAC-Cu). After modification with Cu(II), the amount of copper was to 1.93 and 4.73 mg/g for GAC and GAC-Cu, respectively. The total amount of 10 species of PFAS per specific area was obtained to 0.548 and 0.612 ng/m2 for GAC and GAC-Cu, respectively. A series of batch test confirmed lower efficiency was observed with a smaller number of carbon chain length and the removal efficiency of PFCA (perfluoroalkyl carboxylic acids) was lower than that of PFSA (perfluoroalkyl sulfonic acids) with the same carbon chain length. Regarding the pH effect, the adsorption capacity was decreased with increase of pH due to the increase of electrostatic repulsion. According to pseudo first and second order (PFO and PSO) kinetic models, while the values of equilibrium uptake and time did not show significant difference, a difference in uptake was observed between 24-48h. Furthermore, based on correlation analysis, Log Kow and uptake have a high correlation with molecular weight (M.W.) and initial concentration, respectively. These results show that long-chain PFAS have higher removal efficiency due to their increased hydrophobicity.

과불화화합물 구조적 속성에 따른 흡착 특성 연구 (Study on Adsorption Characteristics of Perfluorinated Compounds(PFCs) with Structural Properties)

  • 최효정;김덕현;윤종현;권종범;김문수;김현구;신선경;박선화
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제26권5호
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    • pp.20-28
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    • 2021
  • Perfluorinated compounds(PFCs), an emerging environmental pollutant, are environmentally persistent and bioaccumulative organic compounds that possess a toxic impact on human health and ecosystems. PFCs are distributed widely in environment media including groundwater, surface water, soil and sediment. PFCs in contaminated solid can potentially leach into groundwater. Therefore, understanding PFCs partitioning between the aqueous phase and solid phase is important for the determination of their fate and transport in the environment. In this study, the sorption equilibrium batch and kinetic experiment of PFCs were carried out to estimated the sorption coefficient(Kd) and the fraction between aqueous-solid phase partition, respectively. Sorption branches of the PFDA(Perfluoro-n-decanoic acid), PFNA(Perfluoro-n-nonanoic acid), PFOA(Perfluoro-n-octanoic acid), PFOS(Perfluoro-1-octane sulfonic acid) and PFHxS(Perfluoro-1-hexane sulfonic acid) isotherms were nearly linear, and the estimated Kd was as follow: PFDA(1.50) > PFOS(1.49) > PFNA(0.81) > PFHxS(0.45) > PFOA(0.39). The sorption kinetics of PFDA, PFNA, PFOA, PFOS and PFHxS onto soil were described by a biexponential adsorption model, suggesting that a fast transport into the surface layer of soil, followed by two-step diffusion transport into the internal water and/or organic matter of soil. Shorter times(<20hr) were required to achieve equilibrium and fraction for adsorption on solid(F1, F2) increased with perfluorinated carbon chain length and sulfonate compounds in this study. Overall, our results suggested that not only the perfluorocarbon chain length, but also the terminal functional groups are important contributors to electrostatic and hydrophobic interactions between PFCs and soils, and organic matter in soils significantly affects adsorption maximum capacity than kinetic rate.

Candida utilis를 이용한 furfural 함유 식품가공 폐수의 처리 (Treatment of Food Processing Wastewater bearing Furfural by Candida utilis)

  • 박기영;정진영
    • KSBB Journal
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    • 제18권4호
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    • pp.272-276
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    • 2003
  • 혐기성 미생물에 저해가 되는 물질을 포함하는 고농도 폐수의 효모에 의한 처리에 관하여 연구하였다. 폐수는 furfural 부산물이 배출되는 식품가공 공정의 배출폐수를 대상으로 실험하였다. 본 연구에서는 호기성 효모의 일종인 Candida utilis가 실험에 적용되었다. 회분 실험을 통하여 본 폐수는 혐기성 미생물에 저해 영향을 주는 것으로 밝혀졌다. 본 공정의 최적 온도는 25에서 45$^{\circ}C$이었으며 효모의 성장에 적당한 pH는 4에서 8사이임을 알 수 있었다. 연속실험 결과, 체류시간 1일 이상에서 COD가 90% 이상 제거되었다. 그러나 유출수 중의 유기물 농도는 여전히 다소 높은 것으로 조사되었다. 따라서 동력학적으로 해석하여 추정한 결과 남은 유기물은 대부분은 용존 미생물 생성물 (SMP, Soluble Microbial Product)에서 기인하는 것으로 판단되었다.