• 제목/요약/키워드: Adsorption Isotherms

검색결과 416건 처리시간 0.032초

Adsorptive separation of adipic acid from aqueous solutions by perlite or its composites by manganese or copper

  • Uslu, Hasan;Demir, Goksel;Bayat, Cuma;Wasewar, Kailas L.;Bamufleh, Hisham S.
    • Membrane and Water Treatment
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    • 제5권4호
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    • pp.295-304
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    • 2014
  • Adipic acid (hexane-1,6-dioic acid) is one of the most used chemical in industrial applications. This must be separated from any environmental contaminant. In this study, adipic acid separation from wastewater by adsorption method onto Perlite or Perlite + Mn or Perlite + Cu composites was investigated. Adsorption of Adipic acid was investigated in terms of equilibrium, and thermodynamic conditions. For thermodynamic investigations the experiments carried out at three different temperatures (298 K, 318 K, 328 K). In the equilibrium studies, 2 g of perlite and its composites were determined as the optimal adsorbent amount. Freundlich and Langmuir isotherms were applied to the experimental data. Freundlich isotherms for all temperatures used in this work gave some deviations with R square values under 0.98 where as Langmuir isotherm gave good results with R square values upper 0.99 at different temperatures. As a result of thermodynamic studies, adsorption enthalpy (${\Delta}H$), adsorption entropy (${\Delta}S$), and adsorption free energy (${\Delta}G$) have been calculated for each adsorbents.

A study on elemental mercury adsorption behaviors of nanoporous carbons with carbon dioxide activation

  • Bae, Kyong-Min;Park, Soo-Jin
    • Carbon letters
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    • 제15권4호
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    • pp.295-298
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    • 2014
  • In this work, nanoporous carbons (NPCs) were prepared by the self-assembly of polymeric carbon precursors and block copolymer template in the presence of tetraethyl orthosilicate and colloidal silica. The NPCs' pore structures and total pore volumes were analyzed by reference to $N_2$/77 K adsorption isotherms. The porosity and elemental mercury adsorption of NPCs were increased by activation with carbon dioxide. It could be resulted that elemental mercury adsorption ability of NPCs depended on their specific surface area and micropore fraction.

개질 점토 및 생선뼈를 이용한 토양 내 방사성 핵종(Co, Sr) 흡착 및 탈착 특성 평가 (Assessment of Radionuclides(Co, Sr) Adsorption and Desorption Characteristics in Soil Using Modified Clay and Fish Bones)

  • 강경찬
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제28권6호
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    • pp.58-70
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    • 2023
  • The improper management of radioactive waste or accidents caused by natural disasters can result in the release of radioactive materials into the surrounding environment, potentially leading to soil and groundwater contamination by radionuclides. In this study, adsorption-desorption behaviors of the radionuclides (cobalt and strontium) in natural soil, montmorillonite, Mn-PILC, Fe-PILC, and fishbone were investigated. Several models were used to predict adsorption isotherms of radionuclides on various absorbents. Adsorption isotherms of cobalt and strontium in several adsorbents were examined at pH 5.5. The amount of sorbed cobalt and strontium were represented fishbone > natural soil > Mn-PILC > Fe-PILC > montmorillonite and natural soil > Mn-PILC > fishbone > Fe-PILC > montmorillonite, respectively. Adsorption datas were fitted with several models such as Freundlich, Langmuir, Sips, Redlich-Peterson, Khan, and Generalized model. The results of curve fitting showed R2> 0.98 in all of adsorption models, except Sr2+ adsorption onto montmorillonite. For modified clays (Mn-PILC, Fe-PILC), it is suggested that, unlike natural soils and fish bones, there are not only single adsorption mechanisms but also adsorption mechanisms based on chemical adsorption and surface charge. In the case of fish bones, due to the relatively higher adsorption capacity than modified clays and its characteristic of significant desorption, it is expected more suitable for the removal of radionuclides in aquatic environments than for the immobilization of radionuclides in soil.

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.

Influence of Nitrogen moieties on CO2 capture of Carbon Aerogel

  • Jeon, Da-Hee;Min, Byung-Gak;Oh, Jong Gab;Nah, Changwoon;Park, Soo-Jin
    • Carbon letters
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    • 제16권1호
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    • pp.57-61
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    • 2015
  • Carbon aerogel is a porous carbon material possessing high porosity and high specific surface area. Nitrogen doping reduced the specific surface area and micropores, but it furnished basic sites to improve the $CO_2$ selectivity. In this work, N-doped carbon aerogels were prepared with different ratios of resorcinol/melamine by using the sol-gel method. The morphological properties were characterized by scanning electron microscopy (SEM). Nitrogen content was studied by X-ray photoelectron spectroscopy (XPS) and the specific surface area and micropore volume were analyzed by $N_2$ adsorption-desorption isotherms at 77 K. The $CO_2$ adsorption capacity was investigated by $CO_2$ adsorption-desorption isotherms at 298 K and 1 bar. Melamine containing N-doped CAs showed a high nitrogen content (5.54 wt.%). The prepared N-doped CAs exhibited a high $CO_2$ capture capacity of 118.77 mg/g (at resorcinol/melamine = 1:0.3). Therefore, we confirmed that the $CO_2$ adsorption capacity was strongly affected by the nitrogen moieties.

Aqueous phase removal of ofloxacin using adsorbents from Moringa oleifera pod husks

  • Wuana, Raymond A.;Sha'Ato, Rufus;Iorhen, Shiana
    • Advances in environmental research
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    • 제4권1호
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    • pp.49-68
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    • 2015
  • Chemically activated and carbonized adsorbents were prepared from Moringa oleifera pod husks (MOP), characterized and evaluated for their ability to remove a common antibiotic - ofloxacin (OFX) from aqueous solution. The pulverized precursor was steeped in a saturated ammonium chloride solution for a day to give the chemically activated adsorbent (AMOP). A portion of AMOP was pyrolyzed in a muffle furnace at 623 K for 30 min to furnish its carbonized analogue (CMOP). The adsorbents showed favorable physicochemical attributes. The effects of operational parameters such as initial OFX solution pH and concentration, adsorbent dosage, temperature and contact time on OFX removal were investigated. At equilibrium, optimal removal efficiencies of 90.98% and 99.84% were achieved at solution pH 5 for AMOP and CMOP, respectively. The equilibrium adsorption data fitted into both the Langmuir and Freundlich isotherms. Gibbs free energy change (${\Delta}G^o$), enthalpy change (${\Delta}H^o$) and entropy change (${\Delta}S^o$) indicated that the adsorption of OFX was feasible, spontaneous, exothermic and occurred via the physisorption mode. Adsorption kinetics obeyed the Blanchard pseudo-second-order model. The results may find applications in the adsorptive removal of micro-contaminants of pharmaceutical origin from wastewater.

음이온교환 수지를 이용한 바나듐/텅스텐 혼합용액으로부터 바나듐/텅스텐 분리회수에 관한 연구 (Separation of Vanadium and Tungsten from Simulated Leach Solutions using Anion Exchange Resins)

  • 전종혁;김홍인;이진영;라제쉬 쿠마
    • 자원리싸이클링
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    • 제31권6호
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    • pp.25-35
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    • 2022
  • 본 연구는 겔 타입의 음이온교환 수지를 이용하여 바나듐과 텅스텐 이온의 흡·탈착 거동과 분리조건을 규명하였다. 용액의 초기산도에 따른 흡착실험에서 바나듐은 강산성 및 강염기성에서 흡착률이 현저히 낮아지며, 텅스텐은 강염기성에서 흡착률이 낮게 나타났다. 반응온도의 상승은 흡착반응속도 및 최대흡착량의 증가에 영향을 주었으며, 텅스텐은 최대흡착량에 미치는 영향이 미미하였다. 이온교환 수지에 대한 바나듐과 텅스텐의 흡착등온실험은 두 이온 모두 Langmuir 흡착등온식에 적합하였으며, 텅스텐의 경우 폴리옥소메탈레이트화 되어 이온 간의 결합이 이루어져 다분자층 흡착의 형태가 나타나 Freundlich 흡착등온식에도 적합한 것으로 나타났다. 두 이온교환 수지 모두 유사 2차 반응속도모델에서 잘 모사되었으며, 탈착용액의 종류에 따른 바나듐과 텅스텐의 탈착특성에서 바나듐은 HCl 수용액 및 NaOH 수용액 모두 탈착이 이루어 졌으며, 텅스텐은 HCl 수용액에서 탈착이 전혀 이루어지지 않아 탈착공정을 통한 두 이온의 분리가 가능하였다. 탈착반응은 반응 개시 후 30분 이내에 평형에 도달하였으며, 90% 이상 회수가 가능하였다.

X형 제올라이트의 이온교환이 기체 평형흡착량에 미치는 영향 (Effect of Zeolite-X ion Exchange on Adsorption Isotherms of Gases)

  • 김권일;김태환;박종기;김종휘;유윤종;조성철;진명종
    • 공업화학
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    • 제9권3호
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    • pp.317-321
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    • 1998
  • 수열 방법으로 합성한 기체 분리용 제올라이트 흡착제의 분자체 및 이온교환 특성을 파악하기 위하여 KCl, $CaCl_2$, $YCl_3$ 그리고 $InCl_3$으로 제올라이트에 함유된 Na 이온을 치환시켰다. 치환시킨 X형 제올라이트를 $25^{\circ}C$에서 $CO_2$가스로 그리고 합성 제올라이트에 대하여 $O_2$, $N_2$가스로 부피법 장치를 통해 평형 흡착 특성을 각각 비교하였다. 측정결과를 Freundlich, Langmuir 그리고 Toth형 model 식을 이용하여 변수를 파악하였으며, 제올라이트의 $CO_2-PSA$ 흡착공정에 적용가능성을 측정하기 위하여 흡착파괴실험을 실시하고, 이를 PSA 공정 simulation에 적용하였다. 여기서 X형 제올라이트는 공정 배가스에서 $CO_2$회수에 적합한 흡착제로 사용할 수 있음을 확인하였다.

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Equilibrium and Kinetic Studies of the Biosorption of Dissolved Metals on Bacillus drentensis Immobilized in Biocarrier Beads

  • Seo, Hanna;Lee, Minhee;Wang, Sookyun
    • Environmental Engineering Research
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    • 제18권1호
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    • pp.45-53
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    • 2013
  • Biocarrier beads with dead biomass, Bacillus drentensis, immobilized in polymer polysulfone were synthesized to remove heavy metals from wastewater. To identify the sorption mechanisms and theoretical nature of underlying processes, a series of batch experiments were carried out to quantify the biosorption of Pb(II) and Cu(II) by the biocarrier beads. The parameters obtained from the thermodynamic analysis revealed that the biosorption of Pb(II) and Cu(II) by biomass immobilized in biocarrier beads was a spontaneous, irreversible, and physically-occurring adsorption phenomenon. Comparing batch experimental data to various adsorption isotherms confirmed that Koble-Corrigan and Langmuir isotherms well represented the biosorption equilibrium and the system likely occurred through monolayer sorption onto a homogeneous surface. The maximum adsorption capacities of the biocarrier beads for Pb(II) and Cu(II) were calculated as 0.3332 and 0.5598 mg/g, respectively. For the entire biosorption process, pseudo-second-order and Ritchie second-order kinetic models were observed to provide better descriptions for the biosorption kinetic data. Application of the intra-particle diffusion model showed that the intraparticle diffusion was not the rate-limiting step for the biosorption phenomena. Overall, the dead biomass immobilized in polysulfone biocarrier beads effectively removed metal ions and could be applied as a biosorbent in wastewater treatment.

Biosorptive capacity of Cd(II) and Pb(II) by lyophilized cells of Pleurotus eryngii

  • Joo, Jin-Ho;Hussein, Khalid A.;Hassan, Sedky H.A.
    • 한국토양비료학회지
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    • 제44권4호
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    • pp.615-624
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    • 2011
  • last few decades. In this study, the lyophilized cells of Pleurotus eryngii (mushroom) were used as an inexpensive biosorbent for Cd(II) and Pb(II) removal from aqueous solutions. The effect of various physicochemical factors on Cd(II) and Pb(II) biosorption such as pH (2.0-7.0), initial metal concentration ($0.0-300mg\;L^{-1}$), temperature, fungal biomass and contact time (0-120 min) were studied. Optimum pH for removal of Cd(II) and Pb(II) was 6.0, and the contact time was 45 min at room temperature. The nature of biosorbent and metal ion interaction was evaluated by Infrared (IR) spectroscopic technique. IR analysis of mushroom biomass revealed the presence of amino, carboxyl, hydroxyl and methyl groups, which are responsible for biosorption of Cd(II) and Pb(II). The maximum adsorption capacities of P. eryngii for Pb(II) and Cd(II) calculated using Langmuir adsorption isotherm were 82.0 and $16.13mg\;g^{-1}$, respectively. The adsorption isotherms for two biosorbed heavy metals were fitted well with Freundlich isotherm as well as Langmuir model with correlation coefficient ($r^2$>0.99). Thus, this study indicated that the P. eryngii is an efficient biosorbent for the removal of Cd(II) and Pb(II) from aqueous solutions.