• 제목/요약/키워드: Langmuir Isotherm Adsorption

검색결과 506건 처리시간 0.023초

Adsorption of Organic Compounds onto Mineral Substrate Prepared from Oyster Shell Waste

  • Jeon, Young-Woong;Jo, Myung-Chan;Noh, Byeong-Il;Shin, Choon-Hwan
    • Environmental Sciences Bulletin of The Korean Environmental Sciences Society
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    • 제10권S_2호
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    • pp.79-88
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    • 2001
  • Humic acids react with chlorine to produce Trihalomethanes(THMs), known as carcinogens, during disinfection, the last stage in water purification. Currently, the removal of organic humic acids is considered the best approach to solve the problem of THM formation. Accordingly, the current study examined the adsorption of organic compounds of humic acids onto an inorganic carrier prepared from oyster shell waste. The adsorbent used was activated oyster shell powder(HAP) and silver ion-exchanged oyster shell powder(HAP-Ag), with CaCO$_3$ as the control. The adsorbates were phthalic acid, chelidamic acid, catechol, dodecylpyridinium chloride(DP), and 2-ethyl phenol(2-EP). The adsorption experiments were carried out in a batch shaker at $25^{\circ}C$ for 15 hours. The equilibrium concentration of the adsorbate solution was analyzed using a UV spectrophotometer and the data fitted to the Langmuir isotherm model. Since the solution pH values were found to be greater than the pKa values of the organic compounds used as adsorbates, the compounds apparently existed in ionic form. The adsorptive affinities of the organic acid and phenolic compounds varied depending on the interaction of electrostatic forces, ion exchange, and chelation. More carboxylic acids and catechol, rather than DP and 2-EP, were adsorbed onto HAP and HAP-Ag. HAP and HAP-Ag exhibited a greater adsorptive affinity for the organic compounds than CaCO$_3$, used as the control.

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다기능 금속산화물의 하수처리 적용-흡착 및 살균 (The application of multifunctional metal oxide for wastewater treatment: Adsorption and disinfection)

  • 김희곤;박덕신;안병렬
    • 상하수도학회지
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    • 제33권4호
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    • pp.251-258
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    • 2019
  • The physical treatment such as chemical precipitation or adsorption was usually added after biological treatment in wastewater treatment process since it was enforced to reduce the concentration of phosphate for wastewater effluent to 0.2 mg/L as P which was well known as one of main nutrient causing eutrophication in waterbody. Therefore, the new material functioned for both adsorption and disinfection was prepared with Fe and Cu, and $TiO_2$, respectively, by changing the ratio of concentration referred to tri-metal (TM). According to SEM-EDS, $TiO_2$ was 30~40% composition for any TM regardless of any synthesis condition. However, the ratio of composition for Fe and Cu was dependent on the initial Fe and Cu concentration, respectively. The removal efficiency of phosphate was obtained to 15% at low initial concentration and the maximum uptake (Q) was calculated to ~11 mg/g through Langmuir isotherm model using TM1 which was synthesized at 1000 mg/L, 1000 mg/L, and 2 g (10 g/L) for $Fe(NO_3)_3$, $Cu(NO_3)_2$, $TiO_2$, respectively. In disinfection test, the efficiency of virus removal using TM was increased with increase of dosage of TM and can be reached 98% at 0.2 g.

고순도 산소 생산을 위한 산소 정제 PSA 공정 개발 (Development of $O_2$ Purifier by Pressure Swing Adsorption Process)

  • 이창하;지정근;이상진;문흥만;이상훈
    • 한국가스학회지
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    • 제8권1호
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    • pp.37-47
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    • 2004
  • 탄소분자체(CMS)를 사용하여 산소를 정제하기 위한 압력순환식 흡착 공정(PSA)을 연구하였다. 본 연구에서는 zeolite를 사용하는 일반적인 평형 분리 PSA 공정의 생산제품으로 가정된 2성분 혼합가스 ($O_2$/Ar- 95:5 vol.$\%$)와 두 개의 서로 다른 3성분 혼합가스를 ($O_2/Ar/N_2$- 95:4:1, 90:4:6 vol.$\%$) 공급기체로서 사용하였고, $99\%$ 이상의 고순도를 얻기 위한 공정이 개발되었다. 두번의 연속 감압 단계를 포함하는 개발공정의 결과로서 산소 $93\%$를 포함한 공급류의 경우 약 $99.8\%$의 고순도와 함께 $56\%$정도의 회수율을 얻을 수 있었으며, 산소 $90\%$를 포함한 공급류에 대하여도 $97\%$이상의 고순도 산소를 생산해 낼 수 있었다. 본 연구에서 개발된 공정의 경우 흡착제에 대한 흡탈착속도 차이를 이용하여 분리 정제가 진행되며, 공정을 정확히 모사하기 위하여 Langmuir isotherm이 결합된 modified structural diffusion model을 적용하였다.

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서로 다른 약품처리를 이용하여 제조한 활성탄의 세공구조 및 중금속과 영양염류 흡착특성 (Pore Structure and Adsorption Characteristics of Metals and Nutrient Salt of Activated Carbon Produced from Different Chemical Treatment)

  • 이영동;강화영
    • 대한환경공학회지
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    • 제22권7호
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    • pp.1319-1330
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    • 2000
  • 유기성폐슬러지를 염화아연과 황화칼륨으로 약품활성화하여 제조한 활성탄의 세공발달과 흡착특성을 연구하였다. 유기성폐슬러지로 제조한 탄소의 세공발달은 77K에서 질소흡착법을 이용하여 특성화하였다. 염화아연으로 약품활성화하여 제조한 $ZnCl_2$-활성탄은 활성화공정에 의해 미세공이 형성되었음을 지적해주는 BDDT 분류의 type I의 흡착특성을 보여주었다. 상용 분말활성탄과 $K_2S$-활성탄은 BDDT 분류의 type IV와 유사한 이력현상을 나타냈는데, 이것은 이들 활성탄에 중세공이 형성되었음을 말해준다. 이것은 $K_2S$-활성탄은 주로 중세공과 미세공으로 이루어졌으며, 거대세공의 발달은 미비하다는 것을 의미한다. 유기성폐슬러지로 제조한 $K_2S$-활성탄의 중금속 흡착능은 상용입상활성탄보다 우수한 것으로 나타났다. $K_2S$-활성탄에 대한 중금속의 흡착은 단분자층 흡착을 나타내는 Langmuir와 Freundlich 등온식에 잘 부합되었다. $PO_4$-P에 대한 흡착능은 $K_2S$-활성탄이 $ZnCl_2$-활성탄보다 우수한 것으로 나타난 반면, $NO_3$-N의 흡착은 $ZnCl_2$-활성탄이 우수한 것으로 나타났다. 본 연구결과, 활성화제로 염화아연과 황화칼륨을 사용하여 유기성폐슬러지를 약품처리할 경우, 탄화와 활성화공정을 거치는 2단계 공정을 통하여 상용입상활성탄보다 흡착능이 뛰어난 활성탄을 제조할 수 있었다.

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Mass transfer kinetics using two-site interface model for removal of Cr(VI) from aqueous solution with cassava peel and rubber tree bark as adsorbents

  • Vasudevan, M.;Ajithkumar, P.S.;Singh, R.P.;Natarajan, N.
    • Environmental Engineering Research
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    • 제21권2호
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    • pp.152-163
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    • 2016
  • Present study investigates the potential of cassava peel and rubber tree bark for the removal of Cr (VI) from aqueous solution. Removal efficiency of more than 99% was obtained during the kinetic adsorption experiments with dosage of 3.5 g/L for cassava peel and 8 g/L for rubber tree bark. By comparing popular isotherm models and kinetic models for evaluating the kinetics of mass transfer, it was observed that Redlich-Peterson model and Langmuir model fitted well ($R^2$ > 0.99) resulting in maximum adsorption capacity as 79.37 mg/g and 43.86 mg/g for cassava peel and rubber tree bark respectively. Validation of pseudo-second order model and Elovich model indicated the possibility of chemisorption being the rate limiting step. The multi-linearity in the diffusion model was further addressed using multi-sites models (two-site series interface (TSSI) and two-site parallel interface (TSPI) models). Considering the influence of interface properties on the kinetic nature of sorption, TSSI model resulted in low mass transfer rate (5% for cassava peel and 10% for rubber tree bark) compared to TSPI model. The study highlights the employability of two-site sorption model for simultaneous representation of different stages of kinetic sorption for finding the rate-limiting process, compared to the separate equilibrium and kinetic modeling attempts.

비소와 철 동시제거를 위한 Fe-GAC와 GAC로 충진된 컬럼 (Column filled with Fe-GAC and GAC to remove both As(V) and Fe(III))

  • 이용수;도시현;홍성호
    • 상하수도학회지
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    • 제30권1호
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    • pp.87-97
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    • 2016
  • First of all, Fe or/and Mn immobilized granular activated carbons (Fe-GAC, Mn-GAC, (Fe, Mn)-GAC) were synthesized and tested to remove arsenate (As(V)). The results in batch test indicated that Fe-GAC removed As(V) effectively, even though the surface area of Fe-GAC was reduced largely. Moreover, adsorption isotherm test indicated that the experimental data fit well with Langmuir model and the maximum adsorption capacity ($q_{max}$) of Fe-GAC for As(V) was $3.49mg\;g^{-1}$, which was higher than GAC ($2.24mg\;g^{-1}$). In column test, the simulated water, which consisted of As(V), Fe(III), Mn(II) and Ca(II) in tap water, was used. Fe-GAC column with 1 hr of pre-washing time treated As(V) effectively while GAC column removed Fe(III) better than Fe-GAC column. Moreover, the increasing pre-washing time from 1 to 9 hour in Fe-GAC column enhanced Fe(III) removal with little negative impact of As(V) removal. Mostly, the column filled with Fe-GAC and GAC (i.e. the mass ratio of Fe-GAC:GAC = 2:8) showed the higher treatability of both As(V) and Fe(III), even it operated with 1 hr pre-washing time.

Cu2+ ion reduction in wastewater over RDF-derived char

  • Lee, Hyung Won;Park, Rae-su;Park, Sung Hoon;Jung, Sang-Chul;Jeon, Jong-Ki;Kim, Sang Chai;Chung, Jin Do;Choi, Won Geun;Park, Young-Kwon
    • Carbon letters
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    • 제18권
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    • pp.49-55
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    • 2016
  • Refuse-derived fuel (RDF) produced using municipal solid waste was pyrolyzed to produce RDF char. For the first time, the RDF char was used to remove aqueous copper, a representative heavy metal water pollutant. Activation of the RDF char using steam and KOH treatments was performed to change the specific surface area, pore volume, and the metal cation quantity of the char. N2 sorption, Inductively Coupled Plasma-Atomic Emission Spectrometer (ICP-AES), and Fourier transform infrared spectroscopy were used to characterize the char. The optimum pH for copper removal was shown to be 5.5, and the steam-treated char displayed the best copper removal capability. Ion exchange between copper ions and alkali/alkaline metal cations was the most important mechanism of copper removal by RDF char, followed by adsorption on functional groups existing on the char surface. The copper adsorption behavior was represented well by a pseudo-second-order kinetics model and the Langmuir isotherm. The maximum copper removal capacity was determined to be 38.17 mg/g, which is larger than those of other low-cost char adsorbents reported previously.

Characterization of Quintinite Particles in Fluoride Removal from Aqueous Solutions

  • Kim, Jae-Hyun;Park, Jeong-Ann;Kang, Jin-Kyu;Son, Jeong-Woo;Yi, In-Geol;Kim, Song-Bae
    • Environmental Engineering Research
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    • 제19권3호
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    • pp.247-253
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    • 2014
  • The aim of this study was to characterize quintinite in fluoride removal from aqueous solutions, using batch experiments. Experimental results showed that the maximum adsorption capacity of fluoride to quintinite was 7.71 mg/g. The adsorption of fluoride to quintinite was not changed at pH 5-9, but decreased considerably in highly acidic (pH < 3) and alkaline (pH > 11) solution conditions. Kinetic model analysis showed that among the three models (pseudo-first-order, pseudo-second-order, and Elovich), the pseudo-second-order model was the most suitable for describing the kinetic data. From the nonlinear regression analysis, the pseudo-second-order parameter values were determined to be $q_e=0.18mg/g$ and $k_2=28.80g/mg/hr$. Equilibrium isotherm model analysis demonstrated that among the three models (Langmuir, Freundlich, and Redlich-Peterson), both the Freundlich and Redlich-Peterson models were suitable for describing the equilibrium data. The model analysis superimposed the Redlich-Peterson model fit on the Freundlich fit. The Freundlich model parameter values were determined from the nonlinear regression to be $K_F=0.20L/g$ and 1/n=0.51. This study demonstrated that quintinite could be used as an adsorbent for the removal of fluoride from aqueous solutions.

A Preliminary Study on Evaluation of TimeDependent Radionuclide Removal Performance Using Artificial Intelligence for Biological Adsorbents

  • Janghee Lee;Seungsoo Jang;Min-Jae Lee;Woo-Sung Cho;Joo Yeon Kim;Sangsoo Han;Sung Gyun Shin;Sun Young Lee;Dae Hyuk Jang;Miyong Yun;Song Hyun Kim
    • Journal of Radiation Protection and Research
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    • 제48권4호
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    • pp.175-183
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    • 2023
  • Background: Recently, biological adsorbents have been developed for removing radionuclides from radioactive liquid waste due to their high selectivity, eco-friendliness, and renewability. However, since they can be damaged by radiation in radioactive waste, a method for estimating the bio-adsorbent performance as a time should consider the radiation damages in terms of their renewability. This paper aims to develop a simulation method that applies a deep learning technique to rapidly and accurately estimate the adsorption performance of bio-adsorbents when inserted into liquid radioactive waste. Materials and Methods: A model that describes various interactions between a bio-adsorbent and liquid has been constructed using numerical methods to estimate the adsorption capacity of the bio-adsorbent. To generate datasets for machine learning, Monte Carlo N-Particle (MCNP) simulations were conducted while considering radioactive concentrations in the adsorbent column. Results and Discussion: Compared with the result of the conventional method, the proposed method indicates that the accuracy is in good agreement, within 0.99% and 0.06% for the R2 score and mean absolute percentage error, respectively. Furthermore, the estimation speed is improved by over 30 times. Conclusion: Note that an artificial neural network can rapidly and accurately estimate the survival rate of a bio-adsorbent from radiation ionization compared with the MCNP simulation and can determine if the bio-adsorbents are reusable.

아민형 PP-g-VBC의 NO3-N과 PO4-P 흡착특성 (Nitrate and Phosphate Adsorption Properties by Aminated Vinylbenzyl Chloride Grafted Polypropylene Fiber)

  • 이용재;송재준;나춘기
    • 대한환경공학회지
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    • 제38권10호
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    • pp.543-550
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    • 2016
  • 비닐벤질클로라이드(VBC)를 PP부직포에 광그라프트 중합시키고 에칠렌디아민을 이용한 아민반응을 통해 음이온 교환기능기를 갖는 아민형 PP-g-VBC-EDA 흡착제를 제조하고, 회분식 흡착실험을 통해 음이온 영양염에 대한 흡착특성을 평가하였다. 흡착평형은 랭뮤어 흡착등온식과 잘 일치하였으며, 그로부터 계산한 단일층 최대흡착량은 $NO_3-N$이 59.9 mg/g, $PO_4-P$가 111.4 mg/g이었다. 흡착에너지는 8 kJ/mol 이상으로 이온교환이 주된 흡착메커니즘임을 나타내었다. 흡착속도는 이차흡착 속도모델식과 일치하였으며 9.8-36.7 kJ/mol의 흡착활성화에너지를 나타내어 화학적 흡착과정에 의해 지배되었음을 시사하였다. 흡착에 대한 열역학 함수 ${\Delta}G^o$, ${\Delta}H^o$${\Delta}S^o$는 음이온 영양염에 대한 PP-g-VBC-EDA의 흡착이 자발적이고 발열적으로 일어남을 나타내었다. PP-g-VBC-EDA 흡착제는 0.1 N HCl 용액을 이용한 세척과정을 통해 재생할 수 있었다.