• 제목/요약/키워드: Isothermal adsorption

검색결과 71건 처리시간 0.025초

활성탄에 의한 Disperse Yellow 3 염료의 흡착에 있어서 평형, 동력학 및 열역학적 특성 (Characteristics of Equilibrium, Kinetics and Thermodynamics for Adsorption of Disperse Yellow 3 Dye by Activated Carbon)

  • 이종집
    • 청정기술
    • /
    • 제27권2호
    • /
    • pp.182-189
    • /
    • 2021
  • 입상 활성탄(GAC)에 의한 disperse yellow 3(DY 3) 염료의 흡착을 초기농도, 접촉 시간, 온도 및 pH를 흡착변수로 하는 실험을 통해 등온흡착과 동력학적, 열역학적 파라미터에 대해 조사하였다. pH 변화실험에서 활성탄에 대한 DY 3의 흡착은 산성영역인 pH 3에서 흡착률이 가장 높았다. 이는 양(+)으로 하전된 활성탄 표면과 DY 3의 음이온(OH-) 사이의 정전기적 인력에 기인한 것으로 판단되었다. DY 3의 흡착평형자료로부터 Langmuir 등온흡착식에 가장 잘 맞았으며, 계산된 분리계수(RL) 값으로부터 활성탄이 DY 3을 효과적으로 제거할 수 있다는 것을 알았다. 또한, Temkin 식의 흡착열 관련 상수의 값이 20 J mol-1을 넘지 않아 물리 흡착 공정임을 알 수 있었다. 동력학 실험은 농도별 실험과 온도별 실험 모두 유사 이차 속도식이 오차율 10.72% 이내였다. Weber와 Morris의 입자내 확산 모델의 플로트는 두 단계의 직선으로 나타났다. Stage 2(입자내 확산)의 기울기가 stage 1(경계층 확산)의 기울기보다 작게 나타나 입자 내 확산이 속도지배단계인 것을 확인하였다. 활성탄에 의한 DY 3 흡착의 자유에너지 변화는 298 ~ 318 K에서 모두 음의 값을 나타냈으며, 온도가 증가할수록 자발성이 더 높아졌다. 활성탄에 대한 DY 3의 흡착반응의 엔탈피 변화는 0.65 kJ mol-1 로 흡열반응이었으며, 엔트로피 변화는 2.14 J mol-1 K-1로 양의 값(positive value)을 나타냈다.

Influence of phosphoric acid treatment on hydrogen adsorption behaviors of activated carbons

  • Yoo, Hye-Min;Lee, Seul-Yi;Kim, Byung-Joo;Park, Soo-Jin
    • Carbon letters
    • /
    • 제12권2호
    • /
    • pp.112-115
    • /
    • 2011
  • The scope of this work investigates the relationship between the amount of oxygen-functional groups and hydrogen adsorption capacity with different concentrations of phosphoric acid. The amount of oxygen-functional groups of activated carbons (ACs) is characterized by X-ray photoelectron spectroscopy. The effects of chemical treatments on the pore structures of ACs are investigated by $N_2$/77 K adsorption isotherms. The hydrogen adsorption capacity is measured by $H_2$ isothermal adsorption at 298 K and 100 bar. In the results, the specific surface area and pore volume slightly decreased with the chemical treatments due to the pore collapsing behaviors, but the hydrogen storage capacity was increased by the oxygen-functional group characteristics of AC surfaces, resulting from enhanced electron acceptor-donor interaction at interfaces.

Application of novel hybrid bioadsorbent, tannin/chitosan/sericite, for the removal of Pb(II) toxic ion from aqueous solution

  • Choi, Hee-Jeong;Yu, Sung-Whan
    • Korean Journal of Chemical Engineering
    • /
    • 제35권11호
    • /
    • pp.2198-2206
    • /
    • 2018
  • We addressed the development of a novel, low-cost, and high-efficient material from hybrid materials, known as microcapsules. Microcapsules are a composite adsorbent made of a mixture of tannin, sericite and chitosan. The FT-IR analysis showed that the microcapsules contain hydroxyl, carboxyl, carbonyl, and amino groups, which play an important role in the adsorption of heavy metals. The microcapsules were able to remove 99% of Pb(II) in 30 min, and obtained a removal efficiency of more than (13-50)%, compared with the single adsorbents of tannin, chitosan, and sericite. In adsorption kinetic analysis, pseudo-second-order adsorption was more suitable than pseudo-first-order adsorption, and chemical adsorption did not limit the adsorption rate of Pb(II) ion. In isothermal adsorption, Langmuir adsorption was more suitable than Freundlich adsorption, and the maximum Langmuir adsorption capacity was 167.82 (mg/g). Furthermore, desorption and reusability studies, as well as the applicability of the material for wastewater treatment, demonstrated that microcapsules offer a promising hybrid material for the efficient removal of significant water pollutants, i.e., Pb(II) from aqueous solutions.

활성탄에 의한 Reactive Blue 4 염료의 흡착에 대한 등온선, 동력학 및 열역학적 특성 (Characteristics of Isotherm, Kinetic, and Thermodynamic Parameters for Reactive Blue 4 Dye Adsorption by Activated Carbon)

  • 이종집
    • 청정기술
    • /
    • 제26권2호
    • /
    • pp.122-130
    • /
    • 2020
  • 입상 활성탄에 대한 reactive blue 4 (RB 4) 의 등온흡착과 동력학적, 열역학적 파라미터에 대해 활성탄의 양, pH, 초기농도, 접촉시간, 온도를 흡착변수로 하여 조사하였다. 활성탄에 의한 RB 4 염료의 흡착은 pH 7을 기점으로 양쪽으로 흡착 백분율이 증가하는 concave 모양을 나타내었다. 등온흡착자료는 Langmuir, Freundlich, Temkin 등온흡착식에 적용하였다. Freundlich과 Langmuir 등온흡착식이 모두 잘 맞았다. 계산된 Freundlich 분리계수(1/n = 0.125 ~ 0.232)과 Langmuir 분리계수(RL = 1.53 ~ 1.59) 으로부터 활성탄이 RB 4를 효과적으로 처리할 수 있다는 것을 알 수 있었다. Temkin의 흡착열관련상수(BT = 17.611 ~ 29.010 J mol-1)는 이 공정이 물리흡착임을 나타냈다. 동력학적 실험으로부터 흡착공정은 유사 이차 반응속도식에 잘 맞았다. 입자 내 확산식에 대한 결과는 표면확산을 나타내는 두 번째 직선의 기울기보다 입자내 세공확산을 나타내는 첫 번째 직선의 기울기가 작게 나타나서 입자내 세공확산이 속도지배단계인 것을 확인하였다. Gibbs 자유에너지 변화(ΔG = -3.262 ~ -7.581 kJ mol-1)와 엔탈피 변화(ΔH = 61.08 kJ mol-1)은 각각 흡착공정이 자발적 공정 및 흡열과정임을 나타내었다.

Surface Modification of Phosphoric Acid-activated Carbon in Spent Coffee Grounds to Enhance Cu(II) Adsorption from Aqueous Solutions

  • Choi, Suk Soon;Choi, Tae Ryeong;Choi, Hee-Jeong
    • 공업화학
    • /
    • 제32권5호
    • /
    • pp.589-598
    • /
    • 2021
  • The purpose of this study was to analyze the efficiency with which phosphorylated spent coffee grounds (PSCG) remove cationic Cu(II) ions from an aqueous solution. The pHpzc of the SCG was 6.43, but it was lowered to 3.96 in the PSCG, confirming that an acidic functional group was attached to the surface of the PSCG. According to FT-IR analysis, phosphorylation of the SCG added P=O, P-O-C (aromatic), P=OOH, and P-O-P groups to the surface of the adsorbent, and the peaks of the carboxyl and OH groups were high and broad. Also, the specific surface area, mesopore range, and ion exchange capacity increased significantly by phosphorylation. The adsorption kinetics and isothermal experiments showed that Cu(II) adsorption using SCG and PSCG was explained by PSO and Langmuir models. The maximum Langmuir adsorption capacity of SCG and PSCG was 42.23 and 162.36 mg/g, respectively. The adsorption process of both SCG and PSCG was close to physical adsorption and endothermic reaction in which the adsorption efficiency increased with temperature. PSCG was very effective in adsorbing Cu(II) in aqueous solution, which has great advantages in terms of recycling resources and adsorbing heavy metals using waste materials.

생물활성탄의 여재선정을 위한 유기물의 흡착 및 생물분해 특성에 관한 연구 (A Study on the Characteristics of Adsorption and Biodegradation of Organic Matter for the Media Selection in Biological Activated Carbon)

  • 우달식
    • 환경위생공학
    • /
    • 제13권2호
    • /
    • pp.156-164
    • /
    • 1998
  • This study was performed to select media for the development of biological activated carbon process. Using activated carbon made by Norit, Calgon, Samchully Co., removal efficiency of humic acid by the isothermal adsorption test and biodegradation of organic matters by microbes attached to BAC and observation and counting of microbes attached to BAC were examined. The removal efficiency of humic acid with dose of activated carbon was influenced by initial concentration. Compared with other activated carbon, Norit was found to be most effective in view of adsorption capacity, biodegradation of organic matter, and attachment characteristics of microorganism. In conclusion, Norit which has high adsorption capacity and good biodegradation of organic matter was recommended for selecting media in BAC process.

  • PDF

PTSA 공정의 상세 동적 모사 (Rigorous Dynamic Simulation of PTSA Process)

  • 이혜진;고대호;문일;최대기
    • 제어로봇시스템학회:학술대회논문집
    • /
    • 제어로봇시스템학회 2000년도 제15차 학술회의논문집
    • /
    • pp.309-309
    • /
    • 2000
  • The main objective of this study is to understand the regeneration step of the PTSA(Pressure and thermal swing adsorption) process below the atmospheric pressure by rigorous dynamic simulation. This target process is to recover toluene using activated carbon as an adsorbent. To do this, the dynamic simulations for the regeneration step are performed at 360, 490, 590mmHg and at high temperature after the simulation of the adsorption step at latm and 298K. A mathematical model was developed to simulate the column dynamics of the adsorption systems. This model is based on non-equilibrium, non-isothermal and non-adiabatic conditions, and axial dispersion and heat conduction are also considered. Heat transfer resistances are considered in gas-solid, gas-column wall and column wall-outside air. The LDF(Linear Driving Force) approximation model describes the mass transfer rate between the gas and solid phase. This study shows that the recovery of toluene by PTSA is more preferable than that by general TSA.

  • PDF

하수슬러지 활성탄의 벤젠 흡착특성 (A Study on the Adsorption Characteristics of Benzene using Activated Carbon from Sewage Sludge)

  • 김종문;정찬교;이택룡;민병훈;김형진;권영식
    • 청정기술
    • /
    • 제15권4호
    • /
    • pp.265-272
    • /
    • 2009
  • 본 연구에서는 하수슬러지에서 만든 활성탄을 이용하여 벤젠에 대한 정지(static)흡착실험을 수행하였다. 7.999 kPa에 이르는 압력 범위 내에서 온도 조건을 변화시켜 가며 303.15, 318.15, 333.15 K에서 흡착실험을 진행하였다. 등온흡착곡선은 Langmuir isotherm, Freundlich isotherm, Toth isotherm을 적용하여 비교하였다. 벤젠의 흡착량(q)을 fitting한 결과 Langmuir isotherm과 Toth isotherm으로 fitting한 등온흡착 곡선의 정확도가 높은 것으로 나타났다. 그리고 Langmuir isotherm의 $q_{max}$ 값을 이용하여 흡착제의 흡착량을 비교하였다. 또한, 하수슬러지 활성탄과 상용활성탄의 세공 발달 여부를 비교하기 위해 SEM image를 관찰하였다. SEM image 관찰 결과, 국내외 상용활성탄(DARCO A.C., SPG-100 A.C.)이 하수슬러지 활성탄에 비해 세공발달 정도가 우수하며, 세공발달 정도가 우수한 국내외 상용활성탄(DARCO A.C., SPG-100 A.C.)이 하수슬러지 활성탄에 비해 벤젠흡착량(q)이 높은 것을 확인할 수 있었다. 그러나 실온조건인 303.15K에서 하수슬러지의 최대 벤젠흡착량($q_{max}$)은 국내 상용활성탄(SPG-100 A.C.)의 최대 벤젠흡착량($q_{max}$)과 대등한 수치로 나타났으므로 하수슬러지 활성탄의 상용화 가능성을 검증할 수 있었다.

PAC-PAE 2중 고분자 내첨 지료의 고분자 흡착 및 교질 분산계의 안정성 연구 (Polymer Adsorption and fiber Dispersion Stability of a Paper Stock Colloidal Suspension with a PAC-PAE Dual Polymer System)

  • 윤성훈;김태영;김덕기;송병규
    • 펄프종이기술
    • /
    • 제35권2호
    • /
    • pp.18-25
    • /
    • 2003
  • The adsorption of co-cationic dual polymer system was investigated as was the fiber dispersion stability of a paper stock suspension. Polyaluminum chloride(PAC) and polyamidoamine epichlorohy-drin(PAE) polymers were used as wet-end additives. The adsorbed amounts of PAE polymer in a wet stock were measured by using polyelectrolytic PCD titration. The sheet forming experiments were carried out in a standard handsheet machine. Fiber dispersion stability and relative retention were evaluated in terms of M/K non-uniformity index and sheet basis weight, respectively. The PAE polymer adsorption of Langmuir-isothermal type decreased with increasing PAC addition level. The combination of the two cationic polymers presumably exerts a site-blocking effect by the low molecular weight PAC which gives a partial charge neutralization at a minimum level of addition. From a thermodynamic view point of PAE adsorption, an increase in adsorption entropy and a decrease in train number suggests that the PAR polymer has an extended conformation structure that potentially leads to an enhancement of the fiber dispersion stability. This conclusion is supported by handsheet experiments that examined the PAC-PAE dual polymer effects on the sheet formation and retention.

Cationized Lignin Loaded Alginate Beads for Efficient Cr(VI) Removal

  • Jungkyu KIM;YunJin KIM;Seungoh JUNG;Heecheol YUN;Hwanmyeong YEO;In-Gyu CHOI;Hyo Won KWAK
    • Journal of the Korean Wood Science and Technology
    • /
    • 제51권5호
    • /
    • pp.321-333
    • /
    • 2023
  • In this study, lignin, a lignocellulosic biomass, was chemically modified to produce polyethyleneimine-grafted lignin (PKL) with maximum hexavalent chromium [Cr(VI)] adsorption capacity. Changes in the physicochemical properties due to the cationization of lignin were confirmed through elemental analysis, Fourier transform infrared spectroscopy, and moisture stability evaluation. Alginate (Alg) beads containing PKL (Alg/PKL) were prepared by incorporating cationic lignin into the Alg matrix to apply the prepared PKL in a batch-type water treatment process. The optimal Alg/lignin mixing ratio was selected to increase the Cr(VI) adsorption capacity and minimize lignin elution from the aqueous system. The selected Alg/PKL beads exhibited an excellent Cr(VI) removal capacity of 478.98 mg/g. Isothermal adsorption and thermodynamic analysis revealed that the Cr(VI) removal behavior of the Alg/PKL beads was similar to that of heterogeneous chemical adsorption. In addition, the bulk adsorbent material in the form of beads exhibited adsorption behavior in three stages: surface adsorption, diffusion, and equilibrium.