• 제목/요약/키워드: Adsorption capacity of iodine

검색결과 26건 처리시간 0.027초

활성탄소섬유의 미세기공 분석 및 흡착특성 (Micropore Analysis and Adsorption Characteristics of Activated Carbon Fibers)

  • 문동철;이광호;김창수;김도형;김미란;신채호;박일영;남성열;이창기
    • 분석과학
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    • 제13권1호
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    • pp.89-95
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    • 2000
  • 식물섬유, 합성섬유 및 혼합섬유를 원료로 하여 3등급의 활성탄소섬유를 제조하고 미세기공 및 세공특성을 검토하였다. 제조한 활성탄소섬유의 흡착등온선은 모두 $20{\AA}$ 이하의 기공크기를 나타내는 Type I을 보였으며 미세기공 직경은 $5.6{\pm}0.3{\AA}$ 이내에서 최대 분포를 나타냈다. 활성탄소섬유의 질소 또는 아르곤 흡착에 의한 비표면적($S_{BET}$), 산화율, 액상 요오드흡착에 대한 상관 관계를 조사한 결과 비표면적이 $1600m^2g^{-1}$까지는 비표면적의 증가와 액상 요오드흡착량이 직선 관계를 나타냈으나 그 이상의 비표면적에서는 요오드 흡착량이 낮은 결과를 보이고, 비표면적이 증가할수록 제품의 burn-off가 크게 나타났다.

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하수슬러지를 활용하여 제조한 흡착제의 고정흡착층에서의 H2S 흡착특성 (Adsorption Characteristics of H2S on Adsorbent Made by Sewage Sludge in Fixed Bed Adsorption Column)

  • 박천동;윤주영;박영성
    • Korean Chemical Engineering Research
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    • 제50권4호
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    • pp.718-722
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    • 2012
  • 하수슬러지를 탄화 및 활성처리하여 흡착제를 제조하였으며, 이를 이용한 황화수소 흡착특성을 고찰하였다. 제조된 흡착제에 대한 BET 및 SEM 분석, 요오드 흡착능측정 등의 물성분석을 실시하였으며, 황화수소를 대상으로 연속식의 고정흡착층을 이용한 파과특성을 고찰하였다. 실험변수로는 흡착온도($25{\sim}45^{\circ}C$), 가스유량(0.1~2.0 liter/min), 가스농도(50~200 ppm), 형상비(L/D)(3~9) 등이 적용되었다. 실험결과, 하수슬러지는 탄화 및 활성화과정을 통해 커다란 성능향상이 이뤄짐을 알 수 있었다.

Enhancement of Efficiency of Activated Carbon Impregnated Chitosan for Carbon Dioxide Adsorption

  • Patkool, Chaiwat;Chawakitchareon, Petchporn;Anuwattana, Rewadee
    • Environmental Engineering Research
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    • 제19권3호
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    • pp.289-292
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    • 2014
  • The effect of carbon dioxide ($CO_2$) on global warming is serious problem. The adsorption with solid sorbents is one of the most appropriate options. In this study, the most interesting adsorbent is granular activated carbon (GAC). It is suitable material for $CO_2$ adsorption because of its simple availability, many specific surface area, and low-cost material. Afterwards, GAC was impregnated with chitosan solution as impregnated granular activated carbon (CGAC) in order to improve the adsorption capacity of GAC. This research aims to compare the physical and chemical characteristics of GAC and CGAC. The experiment was carried out to evaluate the efficiency of $CO_2$ adsorption between GAC and CGAC. The results indicated that the iodine number of GAC and CGAC was 137.17 and 120.30 mg/g, respectively. The Brunauer-Emmett-Teller results (BET) of both GAC and CGAC show that specific surface area was 301.9 and $531.3m^2/g$, respectively; total pore volume was 0.16 and $0.29cm^3/g$, respectively; and mean diameter of pore was 2.18 and 2.15 nm, respectively. Finally, the $CO_2$ adsorption results of both GAC and CGAC in single column how the maximum adsorption capacity was 0.17 and 0.25 mol/kg, respectively; how degeneration time was 49.6 and 80.0 min, respectively; and how the highest efficiency of $CO_2$ adsorption was 91.92% and 91.19%, respectively.

금속 침적처리에 따른 입상활성탄의 페놀흡착 (Adsorption of phenol on metal treated by granular activated carbon)

  • 강광철;김진원;권수한;김승수;백민훈;최종원
    • 분석과학
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    • 제20권3호
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    • pp.193-197
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    • 2007
  • 본 연구에서는 금속침적처리에 의한 입상활성탄의 페놀흡착에 관하여 고찰하였다. 금속침적 용액으로는 질산코발트와 질산아연용액을 사용하였다. 77K에서의 질소 흡탈착 특성을 통한 비표면적 및 포어 구조를 측정하였다. 페놀 흡착량 및 흡착속도는 분광광도계를 이용하여 측정하였다. 요오드흡착 용량은 금속 침적 처리되지 않은 활성탄보다 코발트 금속이 침적된 코발트침적 활성탄이 크게 흡착됨을 알 수 있다. 코발트 침적 활성탄은 중기공이 발달되었고, 이것은 메틸렌블루와 같은 고분자 물질의 흡착에 다른 흡착제보다 효과적이다. 페놀 흡착용량은 금속 침적활성탄의 금속 침적에 따른 비표면적 감소에도 불구하고 Co-GAC>Zn-GAC>R-GAC 순서로 측정되었다.

커피찌꺼기를 이용한 흡착제 제조 및 수중 Trichloroethylene(TCE) 흡착제거에 관한 연구 (A Study on Preparation of Adsorbent from Coffee Grounds and Removal of Trichloroethylene in Water Treatment)

  • 이향숙;강주원;양원호;정문식
    • 한국환경보건학회지
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    • 제24권2호
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    • pp.20-31
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    • 1998
  • There is a need for waste recycling. This study was carried out to investigate removal efficiency of TCE in water treatment with adsorbent made from coffee grounds which obtained after extraction of coffee through hot water. The removal of TCE in synthetic Waste water using adsorbents was examined varying dose, concentration and temperature on a laboratory scale. The results were as followed 1. As much as 95% TCE remogal was possible with adsorbent made from coffee grounds at an adsorbent dose over 2.5 g/l under the test conditions. 2. The removal rate of TCE was propotional to weight of adsorbent made from coffee grounds (0.025, 0.1, 0.3, 0.5 g). 3. In the effect of temperature, as temperature of wastewater was high, the rate of removal was increased. 4. Iodine number (865 mg/g) of adsorbent made from coffee grounds was not higher than that (1123 mg/g) of adsorbent made from coconut. But, in considering adsorption capacity, Iodine number was inapplicable to adsorbent made from coffee grounds. 5. Generally, Freundlich's equation applies to adsorption in wastewater. In case of TCE, slope (1/n) was 0.83, 1.06 and intercept (k) was 456.18, 405.19 at 150, 300 ppb respectively (average r=0.904, 0.933).

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왕겨를 이용한 활성탄 개발에 관한 연구 (I) (A Study on the Development of Activated Carbon from Rice-Hull)

  • 이희자;조양석;조광명
    • 한국환경과학회지
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    • 제9권1호
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    • pp.81-88
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    • 2000
  • Every year, 1.1 million tons of rice-hull are produced in South Korea by the by-product in pounding rice. But they has mainly been utilized as a fuel, agricultural compost and moisture proofs. So, it's very valuable to use waste rice-hull for activated carbon manufacture. SiO2 content was the highest among inorganics in rice-hull. Therefore, the SiO2 extraction experiments were carried out under the various conditions of pH 9 to 14, reaction time from 2 to 24 hrs and various temperature of 20 to 100℃. The results showed that increase in pH and temperature enhanced SiO2 extraction from the carbonized rice-hull. The surface area of the carbonized rice-hull indicating activated carbon adsorption capacity was very small as 178∼191 m2/g at first. However, it was increased to 610∼675 m2/g when extracted in alkali solution at 100℃. When the mixing rate of carbonized rice-hull and NaOH was 1:1.5, iodine No. and surface area of activated rice-hull during 10 min at 700℃ were 1,650 mg/g and 1837 m2/g, respectively. Subsequently, an activated carbon with specific surface area of 1,300∼1,900m2/g was manufactured in a short contact time of 10∼30 min with a mixing rate of 1:1.5 in carbonized rice-hull and NaOH, and iodine No. and specific surface area increased as the amount of SiO2 removal increased.

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CO2 활성화법에 의한 대나무 활성탄 제조와 CO2 흡착 특성 (Production and CO2 Adsorption Characteristics of Activated Carbon from Bamboo by CO2 Activation Method)

  • 박영철;조광주;최주홍
    • Korean Chemical Engineering Research
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    • 제43권1호
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    • pp.146-152
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    • 2005
  • 대나무를 원료로 이산화탄소를 활성화제로 한 기상 활성화법에 의하여 대나무 활성탄을 제조하고, 이 대나무 활성탄의 $CO_2$ 흡착 특성을 실험하였다. 국내 산청산 대나무를 탄화온도 $900^{\circ}C$에서 열분해 하여 대나무 숯을 만든 후 배치형 튜브 반응기 내에서 활성화 온도 $750-900^{\circ}C$, 이산화탄소 주입비 $5-30cm^3/g-char{\cdot}min$, 활성화 유지시간 2-5 시간의 변화 조건에서 활성화 실험을 하였다. 제조된 활성탄은 수율이 측정되고 요오드 흡착력, 메틸렌 블루 흡착력과 비표면적 및 세공분포 등의 물리적 특성이 분석되었다. $CO_2$ 흡착 실험은 열중량 분석기를 사용하여 흡착온도 $20-80^{\circ}C$, $CO_2$ 농도 5-90% 변화 조건에서 행하였다. 활성화 온도와 활성화 시간이 증가됨에 따라 요오드 흡착력(680.8-1450.1 mg/g)과 메틸렌 블루 흡착력(23.5-220 mg/g)은 증가하였다. 그리고 $CO_2$ 가스 주입량의 증가시 $18.9cm^3/g-char{\cdot}min$까지는 요오드 흡착력과 메틸렌 블루 흡착력이 증가하였으나, 그 이상에서는 과다한 반응으로 수율의 급격한 감소와 함께 요오드 흡착력과 메틸렌 블루 흡착력도 감소하였다. 대나무 활성탄 특성 분석에서 중간세공과 거대세공 부피가 $0.65-0.91cm^3/g$으로 나타나 생물활성탄공정에 유리하게 사용될 수 있다. 대나무 활성탄의 $CO_2$ 흡착 실험에서는 흡착온도 $20^{\circ}C$, $CO_2$ 농도 90%에서 최대 106 mg/g-A.C.의 $CO_2$를 물리흡착 하였다. 5회 반복 실험시 $CO_2$ 흡착 특성 변화는 없었다.

Preparation of Activated Carbon from Wastepaper and Adsorption of Endocrine Disrupting Chemicals

  • Okayama, Takayuki;Matsushita, Kiyofumi;Sasuzuki, Hiroma;Shimada, Masahiro
    • 한국펄프종이공학회:학술대회논문집
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    • 한국펄프종이공학회 2006년도 PAN PACIFIC CONFERENCE vol.2
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    • pp.279-284
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    • 2006
  • Activated carbon is proposed as a new application of wastepaper recycling other than the paper-making. Waste kraft bag is considered to be a suitable raw material for activated carbon because of its low ash content. Small pellets of wastepaper squeezed out from the continuous kneader were carbonized in a nitrogen atmosphere and activated using carbon dioxide. The BET specific surface areas of activated carbon prepared from waste kraft bag was $1,285m^{2}/g$, which is higher than commercially available activated carbons. The activated carbon prepared from wastepaper has a well-developed porous structure, particularly in mesopore and macropore ranges. As a result, activated carbon with iodine adsorption capacity of 1,400 mg/g was obtained from waste kraft bag. In this paper, adsorption amount of Bisphenol A (BPA) was determined to investigate adsorbability of activated carbon from waste kraft bag. Adsorption measurements were on solutions ranging from $0.1{mu}g/L\;to\;100mg/L$. The activated carbon from waste kraft bag gave higher BPA adsorbabilities over a wide range, compared with commercially available activated carbons.

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수산화물에 의해 활성화된 OXI-PAN계 섬유의 제조 및 특성 (Preparation and Characterization of OXI-PAN Based Carbon Fibers Activated by Hydroxides)

  • 문숙영;한동윤;이병하;임연수
    • 한국세라믹학회지
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    • 제42권7호
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    • pp.469-474
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    • 2005
  • Activated Carbon Fibers (ACFs) are widely used as adsorbents in technologies related to pollution abatement due to their highly porous structure and large adsorption capacity. The porous structure and surface area of ACFs depends strongly on both the activation processes arid the nature .of the precursors. The chemical activation with hydroxides has recently been, of great interest as it permits the preparation of activated carbon fibers with highly developed porosity. In this work, OXI-PAN fiber used as precursor for the preparation of activated carbon fibers by chemical activation with KOH and NaOH. The affects of several activation conditions on the surface properties, pore size distribution and adsorption capacity of Ag ion and Iodine ion on ACFs studied.

Conversion of Shoot Waste of Fast-Growing Teak into Activated Carbon and Its Adsorption Properties

  • Johanes Pramana Gentur SUTAPA;Ganis LUKMANDARU;Sigit SUNARTA;Rini PUJIARTI;Denny IRAWATI;Rizki ARISANDI;Riska DWIYANNA;Raka Dzikri NURULLAH;Robertus Danu PRIYAMBODO
    • Journal of the Korean Wood Science and Technology
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    • 제52권5호
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    • pp.488-503
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    • 2024
  • Shoot waste refers to the parts of trees that are not yet optimally utilized. In this study, we aimed to utilize shoot waste of fast-growing teak (FGT) extracted from the community forest in Wonosari, Gunungkidul, Yogyakarta Special Region, Indonesia by converting it into charcoal, followed by further conversion into activated carbon. This study was conducted with two treatment factors of the activation process, including thermal treatment (750℃, 850℃, and 950℃) and heating period (30, 60, and 90 min), to determine the best condition for the activation process. Our results indicated a significantly effect of the interaction between thermal treatment and heating period on the moisture content, volatile matter content, ash content, fixed carbon content, and adsorption properties of the produced activated carbon. The highest iodine adsorption capacity of activated carbon is 1,102.57 mg/g, which was produced by thermal treatment at 750℃ and heating period of 30 min. This result fulfilled the Indonesian National Standard (SNI 06-3730-1995 quality standard). Furthermore, the quality parameters of the produced activated carbon include: moisture content of 6.13%; volatile matter content of 17.27%; ash content 5.24%; fixed carbon content of 77.49%; benzene removal efficiency of 8.43%; and methylene blue adsorption capacity of 69.66 mg/g. Based on this study, we concluded that shoot waste of FGT could be classified as a prospective material for developing activated carbon for industrial application.