• Title/Summary/Keyword: Membrane Adsorption

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폴리비닐플루오라이드 불균질 이온교환막을 이용한 막 결합형 축전식 탈염공정의 탈염성능 Part II : 불균질 이온교환막의 탈염성능 (Performance of Membrane Capacitive Deionization Process Using Polyvinylidene Fluoride Heterogeneous Ion Exchange Membranes Part II : Performance Study of Membrane Capacitive Deionization Process)

  • 박철오;임지원
    • 멤브레인
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    • 제27권3호
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    • pp.240-247
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    • 2017
  • 본 연구에서는 막 결합형 축전식 탈염공정에 적용을 위해 폴리비닐플루오라이드를 고분자 지지체로 사용하여 양이온 및 음이온교환수지를 배합하여 제작된 불균질 이온교환막을 탄소전극에 결합하여 염 제거 효율을 알아보고자 하였다. 불균질 이온교환막의 배합 조건은 용매, 고분자 지지체, 이온교환수지를 7 : 2 : 1의 무게 비율로 하였으며 탄소전극에 직접 캐스팅 하였다. 운전조건으로 공급액은 주로 NaCl 수용액에 대하여 흡착전압, 시간, 공급액의 농도, 유속, 탈착전압, 시간 등에 대하여 염 제거 효율을 측정하였으며 이 외에 $CaCl_2$$MgSO_4$ 수용액에 대하여서도 측정하였다. 대표적으로 NaCl 100 mg/L 용액의 15 mL/min에서 1.5 V, 3분의 흡착조건, -0.1 V, 3분의 탈착조건에서 98%의 염 제거 효율을 보였으며, $CaCl_2$$MgSO_4$는 100 mg/L, 15 mL/min에서 1.2 V, 3분의 흡착조건, -0.5 V, 5분의 탈착조건에서 각각 70, 59%의 염 제거 효율을 보였다.

막결합 축전식 탈염장치를 이용한 혼합용액에서 칼슘이온의 선택적 제거 (Selective Removal of Calcium Ions from a Mixed Solution using Membrane Capacitive Seionization System)

  • 김유진;최재환
    • 공업화학
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    • 제23권5호
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    • pp.474-479
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    • 2012
  • 막결합 축전식 탈염(MCDI) 기술을 이용하여 $Na^{+}$$Ca^{2+}$ 이온이 혼합된 용액에서 $Ca^{2+}$ 이온의 선택적 제거 가능성을 연구하였다. 양이온교환막인 CMX막에 대한 $Ca^{2+}$ 이온의 선택성을 확인하기 위해 흡착평형 실험을 실시하였다. 그리고 MCDI 셀을 이용해 혼합용액(5 meq/L NaCl + 2 meq/L $CaCl_{2}$)에 대한 탈염실험을 수행하였다. 흡착평형 실험결과 용액과 CMX막에서 $Ca^{2+}$ 이온의 당량분율은 각각 28.6, 87.2%를 보여 CMX막이 $Ca^{2+}$ 이온에 대해 높은 선택성을 갖는 것을 확인하였다. MCDI 셀에 일정한 전류를 인가하면서 셀 전위가 1.0 V에 도달할 때까지 탈염실험을 실시하였다. 그 결과 흡착된 이온의 총량은 인가한 전류밀도에 큰 영향을 받지 않고 일정하였다. 그러나 흡착된 이온 중 $Ca^{2+}$ 이온의 비율은 전류밀도에 반비례하였으며 200, 300, 500, $700\;A/m^{2}$의 전류밀도에서 각각 81.4, 78.4, 77.0, 74.5%로 나타났다. 이러한 결과는 낮은 전류밀도에서 CMX막에 흡착된 $Ca^{2+}$ 이온의 비율이 높았기 때문인 것으로 판단된다.

Adsorption of microcystin onto activated carbon: A review

  • Ampiaw, Rita E.;Yaqub, Muhammad;Lee, Wontae
    • Membrane and Water Treatment
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    • 제10권6호
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    • pp.405-415
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    • 2019
  • Microcystins (MCs) are toxins produced by cyanobacteria causing a major environmental threat to water resources worldwide. Although several MCs have been reported in previous studies, microcystin-LR (m-LR) has been extensively studied as it is highly toxic. Among the several techniques employed for the removal of this toxin, adsorption with AC has been extensively studied. AC has gained wide attention as an effective adsorbent of m-LR due to its ubiquity, high sorption capacity, cost effectiveness and renewability. In this review, the adsorption of m-LR onto AC was evaluated using the information available in existing scientific literature. The effects of the pore volume and surface chemistry of AC on the adsorption of m-LR considering the structural and chemical properties of ACs were also discussed. Furthermore, we identified the parameters that influence adsorption, including natural organic matter (NOM), pH, and ionic strength during the m-LR adsorption process. The effect of these parameters on MCs adsorption onto AC from previous studied is compiled and highlighted. This review may provide new insights into future activated carbon-m-LR adsorption research, and broaden its application prospects.

Low concentration cadmium removal using weathered sand of basalt

  • Park, Jae Hong;Lee, Jae Kwan;Shin, Dong Seok
    • Membrane and Water Treatment
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    • 제12권2호
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    • pp.51-58
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    • 2021
  • The natural weathered sand of basalt (WSB) has been used for the removal of cadmium from aqueous solution. The influence of various parameters i.e., contact time, pH, weathered sand of basalt dosage, particle size of the weathered sand of basalt, temperature and initial cadmium concentration were analyzed. Cadmium adsorption kinetics was well described by the pseudo second order model. Adsorption equilibrium for cadmium was properly well fitted to Langmuir isotherm model with maximum adsorption capacity 0.50 mg/g. Compared with the other experimental results using various kinds of adsorbents at a low concentration (1.0 mg/L or so) similar to that of this study, the cadmium removal efficiency using weathered sand of basalt was higher. It has been demonstrated that weathered sand of basalt has a available alternative adsorbent for cadmium when its initial concentration is low.

공기 제습용 무기막의 제조 및 특성 (Preparation and characteristics of inorganic membrane for air dehumidification)

  • 김정은;김병문;송근호;장화익;이광래
    • 산업기술연구
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    • 제26권B호
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    • pp.157-162
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    • 2006
  • Recently, the humidity adjustment of indoor air is of great importance in air conditioning system as a applied, in buildings, vehicles, and containers for storage and transport of perishable products. Membrane dehumidification or air is potentially attractive because it offers low capital and operating costs, along with low energy consumption. And membrane dehumidification process attracted the attention of the public instead of the other dehumidification processes, such as adsorption, absorption, and refrigeration cycles and so on. In this study, the prepared hydrophilic inorganic membrane-based dehumidifiers(membrane air dehumidification) examined the performance of dehumidification. The surface-modified inorganic membrane prepared in this study showed high dehumidification efficiency(over 80%). The membrane might be very useful for dehumidification industries.

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친화성 막모듈에 의한 단백질 크로마토그래픽 특성 (Characteristics of Protein Chromatography by Affinity Membrane Mudule)

  • 이광진;염경호
    • KSBB Journal
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    • 제13권2호
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    • pp.125-132
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    • 1998
  • Protein affinity membrane was prepared via the coating of chitosan gel on the porous flat polysulfone membrane surface, followed by the immobilization f the reactive dye (Cibacron Blue 3GA) to the chitonsan gel. The maximum protein binding capacity of affinity membrane was about 70${\mu}g/cm^2$ determined by the batch adsorption experiments of human serum albumin (HSA). Using module of this membrane, the characteristics of protein chromatography were investigated through the experiments of elution and frontal chromatography of HSA. This membrane module promises as a chromatography column, since it represented a lower pressure drop and a greater reproducibility. The protein separation ratio was significantly influenced by the flow rate of mobile phase and the injection quantity of HSA. The dynamic protein binding capacity of module decreased from the equilibrium binding capacity with increasing flow rate and approached the value of 15 - 20 ${\mu}g/cm^2$ for flow rates above 6 mL/min.

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막분리법과 PSA 법을 이용한 고순도 산소의 생산

  • 황선탁
    • 한국막학회:학술대회논문집
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    • 한국막학회 1994년도 춘계 총회 및 학술발표회
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    • pp.13-18
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    • 1994
  • 99.9% 이상의 고순도 산소를 대량으로 생산하기 위하여는 주로 냉동 증류(cryogenic fractionation)가 사용된다[1]. 그러나 의료 분야를 비롯하여 소량의 산소를 필요로 하는 많은 분야에서 요구되는 산소의 순도는 40-90% 범위에 있다[2,3]. 이 정도 등급의 산소의 공급은 PSA(Pressure Swing Adsorption)과 MP(Membrane Permeation)의 공정에 의존하게 될 가능성이 크다[4,6]. 이는 이 공정들이 작은 규모의 생산에 적합할 뿐만 아니라 조업이 용이하고, 유지비가 적게 들며 장치의 재배치가 용이하기 때문이다.

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막분리법을 이용한 산소부화공기의 제조와 연소장치에의 응용

  • 박준택
    • 한국막학회:학술대회논문집
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    • 한국막학회 1994년도 추계 총회 및 학술발표회
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    • pp.38-41
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    • 1994
  • 막분리(membrane separation)법은 막 전후의 압력차, 농도차 등을 추진력(driving foroe)으로 하여 분리대상물질에 대한 막의 선택투과성 차이를 이용, 분리를 행하는 것이다. 이 분리법은 기존의 분리공정인 심냉법(cryogenic separation)과는 달리 상변환 공정이 필요없어 에너지가 적게 들고 또한 PSA(pressure swing adsorption)법에서와 같은 cycle 운전이 필요없어 연속적으로 분리가 가능하며 시스템도 간단하다. 최근 기체 막분리의 경우 수소 및 탄산가스의 회수정제, 공기중의 산소와 질소의 분리 등에 실용화되고 있다. 여기서는 공기중의 산소를 분리하여 30-40% 산소부화공기(oxygen enriched air)를 간편하게 제조할 수 있는 산소부화막장치와 연소장치에의 응용기술 및 연구결과에 대해 간략히 소개하고자 한다.

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Equilibrium and kinetic studies on the adsorption of copper onto carica papaya leaf powder

  • Varma V., Geetha;Misra, Anil Kumar
    • Membrane and Water Treatment
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    • 제7권5호
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    • pp.403-416
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    • 2016
  • The possibility of using carica papaya leaf powder for removal of copper from wastewater as a low cost adsorbent was explored. Different parameters that affect the adsorption process like initial concentration of metal ion, time of contact, adsorbent quantity and pH were evaluated and the outcome of the study was tested using adsorption isotherm models. A maximum of 90%-94.1% copper removal was possible from wastewater having low concentration of the metal using papaya leaf powder under optimum conditions by conducting experimental studies. The biosorption of copper ion was influenced by pH and outcome of experimental results indicate the optimum pH as 7.0 for maximum copper removal. Copper distribution between the solid and liquid phases in batch studies was described by isotherms like Langmuir adsorption and Freundlich models. The adsorption process was better represented by the Freundlich isotherm model. The maximum adsorption capacity of copper was measured to be 24.51 mg/g through the Langmuir model. Pseudo-second order rate equation was better suited for the adsorption process. A dynamic mode study was also conducted to analyse the ability of papaya leaf powder to remove copper (II) ions from aqueous solution and the breakthrough curve was described by an S profile. Present study revealed that papaya leaf powder can be used for the removal of copper from the wastewater and low cost water treatment techniques can be developed using this adsorbent.

Adsorption kinetic and mechanistic view of aqueous ferric ion onto bio-natural rice grains

  • Al-Anber, Mohammed A.
    • Membrane and Water Treatment
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    • 제8권1호
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    • pp.73-88
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    • 2017
  • Adsorption kinetics of aqueous ferric ion ($Fe^{3+}$) onto bio-natural rice grains (BRG) have been studied in a batch system. The influence of contact time (0-180 minutes), the dosage of BRG adsorbent (10, 20, 40, and $60gL^{-1}$), and ambient temperature (27, 37, 47, and $57^{\circ}C$) for the adsorption system have been reported. The equilibrium time achieved after 20 minutes of adsorption contact time. The maximum removal of ferric ion is 99% by using $60gL^{-1}$ of BRG, $T=37^{\circ}C$, and $50mgL^{-1}$ ferric ion solution. Adsorption kinetic and diffusion models, such as pseudo-first order, pseudo-second order, and Weber-Morris intra-particle diffusion model, have been used to describe the adsorption rate and mechanism of the ferric ion onto BRG surface. The sorption data results are fitted by Lagergren pseudo-second order model ($R^2=1.0$). The kinetic parameters, rate constant, and sorption capacities have been calculated. The new information in this study suggests that BRG could adsorb ferric ion from water physiosorption during the first 5 minutes. Afterward, the electrostatic interaction between ferric ion and BGR-surface could take place as a very weak chemisorptions process. Thus, there is no significant change could be noticed in the FTIR spectra after adsorption. I recommend producing BGR as a bio-natural filtering material for removing the ferric ion from water.