• Title/Summary/Keyword: Activated charcoal

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Research on desorption and stability of benzene, toluene, acetone and n-hexane of activated carbon acquired from domestic market (국내 시판 중인 활성탄을 이용한 벤젠, 톨루엔, 아세톤 및 노말 헥산의 탈착 및 저장성 평가 연구)

  • Lee, Naroo;Yi, Gwangyong
    • Journal of Korean Society of Occupational and Environmental Hygiene
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    • v.24 no.3
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    • pp.353-358
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    • 2014
  • Purpose: This study was conducted to evaluate desorption efficiency and storage stability on activated carbon acquired form domestic market. Materials: Mixture of acetone, benzene, normal hexane and toluene was injected on four types of charcoal 100 mg. After overnight, charcoal was desorbed by carbon disulfide $1m{\ell}$ and analyzed by gas chromatography with flame ionization detector. Results: Desorption efficiency of benzene, normal hexane and toluene in charcoal tubes were 95% ~ 105%. But desorption efficiency of acetone in charcoal tubes was below 75% and different from types of charcoal. The more injected amount of acetone on charcoal showed higher desorption efficiency. Acetone injected on charcoal tubes migrated from front section into back section after 10 days storage at room temperature. Conclusions: Desorption efficiency and storage stability of activated carbon acquired from domestic market was good for benzene, normal hexane and toluene. The activated carbon acquired from domestic market has ability to be used as sampling media.

Effect of Activated Charcoal on Growth of Zingiber mioga ROSC

  • Choi, Seong-Kyu;Yun, Kyeong-Won;Chon, Sang-Uk;Seo, Young-Nam;Seo, Kyoung-Sun;Kwon, Byung-Sun
    • Plant Resources
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    • v.7 no.2
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    • pp.155-158
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    • 2004
  • Activate charcoal (AC) can be utilized as a soil conditioner in agricultural crop areas. This study was conducted to investigate the effect of AC on growth and yield of Zingiber mioga ROSC as affected by different amounts of AC. The results obtained are summarized as follows. Growth characteristics including plant height and leaf length were the highest when activated charcoal added with 10-30%, suggesting that optimum amount of activated charcoal was ranged from 10 to 30%. Growth and enlargement of the root were improved by 10% AC with higher rhizome length and weight.

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Effect of Black Charcoal and Activated Carbon for Reduction of Radon Radioactivity that Emitted from Building Materials (건축재료로부터 방출되는 라돈방사능 감소를 위한 흑탄과 활성탄 효과)

  • Cho, Yun-Min;Lee, Hwa-Hyung
    • Journal of the Korea Furniture Society
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    • v.22 no.1
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    • pp.13-17
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    • 2011
  • Recently, interest in indoor air quality is increasing. Especially, radon radioactivity among the indoor air is a well-known risk factor for lung cancer because of ionizing radiation in the form of ${\alpha}$-particles. This study was carried out to investigate effect of black charcoal and activated carbon for reduction of radon radiation that emitted from building materials. Black charcoal and activated carbon were used as a barrier which was against the infiltration of radon. The source of radon was gypsum board. Two types of charcoal barrier were powder- and board-type with 5 mm, 10 mm thickness respectively. The method for this determination is evaluated radon concentration in chamber. The measurements were performed with radon detector, SARAD3120. Results of this study are as following: Black charcoal and activated carbon confirmed the highly efficient barrier. Radon concentration was reduced from 72% to 85% as compared the control chamber. Radon reduction capability, however, was no difference as barrier's types. Results obtained in ventilation condition, radon concentration shows 5.93 pCi/L on average in the closed condition and shows 2.69 pCi/L in the opened condition.

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Effect of Additions of Supplemental Activated Carbon on the Fatty Acid, Meat Color and Minerals of Chicken Meat (활성탄의 첨가가 계육의 지방산, 육색 및 무기물에 미치는 영향)

  • 박창일;김영직
    • Food Science of Animal Resources
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    • v.21 no.4
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    • pp.285-291
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    • 2001
  • The experiment was conducted to study the effect of activated charcoal on the fatty acid composition, meat color and mineral contents of chicken meat with 48 birds of broiler for 6 weeks by adding 0%, 0.6%, 0.9% and 1.2% of activated charcoal to broiler diet. The activated charcoal level of 0.6% and 0.9% increased significantly oleic acid and arachidonic acid contents compared to control(p<0.05). L*, a*, b* values were not influenced by the added level of activated charcoal, however and a* value of different parts of chicken meat was significantly different(p<0.05). The activated charcoal diet increased significantly(p<0.05) the calcium, magnesium and phosphorus content of chicken meat, and tended to increase total mineral contents. In conclusion the activated charcoal supplements to chicken diet increased oleic acid, arachidonic acid the total mineral contents.

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Sorption and Leaching Studies of Fenitrothion and Tebuconazole in Granular Activated Carbon and Charcoal (Fenitrothion과 Tebuconazole의 입상 활성탄 및 차콜에 의한 흡착과 용탈에 관한 연구)

  • Lee, Dong-Ik;Chun, So-Ul;Joo, Young-Kyoo
    • Asian Journal of Turfgrass Science
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    • v.20 no.1
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    • pp.47-55
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    • 2006
  • Golf course community has always been concerned about water quality regarding to pesticide and fertilizer managements. This study conducted to investigate sorption and leaching behavior of common pesticides used for golf course in granular activated carbon I (GAC 1), granular activated carbon II(GAC II), and charcoal. We used batch study to investigate the influence of concentrations of Smithion and Folicur and particle sizes of GAC I, GAC II, and charcoal on sorption. Also, column study was used to investigate the leaching effect of Smithion in GAC I and charcoal. We found that sorption of Smithion and Folicur were higher in less $45{\mu}m$ of particle size for GAC I, GAC II, and charcoal compared to $1.7{\sim}2.0mm$ size, and the sorption of Smithion and Folicur in less $45{\mu}m$ of particle size ranged from 90 to 99%. In the column study, there was no difference in leaching effect between GAC I and charcoal. Overall, we found that charcoal might offer a cost effective adsorbent as a pesticides in leachate.

Research on the Adsorption Capacity for Benzene, Toluene, Acetone and N-hexane of Activated Carbon Acquired fromthe Domestic Market (국내에서 유통되는 활성탄을 이용한 벤젠, 톨루엔, 아세톤 및 노말 헥산의 등온흡착용량 평가 연구)

  • Lee, Naroo;Yi, Gwangyong;Park, Dooyong
    • Journal of Korean Society of Occupational and Environmental Hygiene
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    • v.24 no.2
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    • pp.193-200
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    • 2014
  • Objectives: To develop domestic charcoal tubes with good adsorption capacity, breakthrough experiments were performed on four types of activated charcoal. Materials: The adsorption capacity and the adsorption rate were determined using a modified Wheeler equation after the breakthrough experiment. For four types of charcoal (J, K, S and SKC Inc. 226-01), 100 mg were used in the breakthrough experiment. The test was done on benzene, toluene, n-hexane, and acetone in a dynamic chamber. Results: K charcoal had the greatest surface area and the highest micropore volume. J charcoal had a similar surface area and micropore volume to SKC charcoal. S charcoal had the lowest surface area and micropore volume. J charcoal had the highest adsorption capacity at 101, 252 and 609 ppm of benzene. The gap in benzene adsorption capacity among the types of charcoal was the least at 609 ppm and the greatest at 101 ppm. J charcoal showed the highest adsorption capacity at 54, 106, 228 and 508 ppm of toluene. J charcoal and SKC charcoal had a similar adsorption capacity for acetone. J charcoal had the highest adsorption capacity for n-hexane. In the experiment featuring 10% breakthrough volume, 10% breakthrough occurred at 18 liters at $2065.9mg/m^3$ for J charcoal and at 20 liters at $1771.2mg/m^3$ for K charcoal. It was difficult to judge adsorption capacity by surface area and micropore volume of charcoal. J charcoal, which was similar to SKC charcoal in surface area and micropore volume, showed good adsorption capacity at common workplace concentrations. Conclusions: The adsorption capacity of J and K charcoal was superior compared with SKC charcoal. J and K charcoal can be considered appropriate for use as sampling media based on this result.

Characteristics of Physical and Adsorption of Korean Traditional Charcoal (우리나라 전통 숯의 물리.화학적 특성)

  • Kim, Joon-Tae;Kim, Sun-Hwa;Kim, Hae-Jin
    • Journal of environmental and Sanitary engineering
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    • v.21 no.4 s.62
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    • pp.77-86
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    • 2006
  • The water purification was very important in Korea which has not sufficient water resource and while adsorption method among the various methods to eliminate the water pollutants has been widely used by activated carbon. This study was conducted the basic experiment for hall distribution, pH, conductivity, electronic microscope, cation exchange and inorganic materials the adsorption capacity of Korean traditional charcoal which has similar characteristics to activated carbon of organic pollutants. As a result of observing Korean traditional charcoal with electronic microscope, it was found that it has porous structure, oak charcoal has circular structure, pine charcoal has square structure and bamboo charcoal has hexagonal structure, which has high void fraction per unit area because of its thin cell wall structure. As a result of experimenting hall distribution, hall distribution of bamboo high temperature charcoal is high as 0.269cc/g and has the greatest inorganic contents and cation exchange capacity(CEC) which are the important factor of chemical adsorption.

Evaluation of Biological and Physico-chemical Detoxification Methods for the Removal of Inhibitors in Lignocellulose Hydrolysate (목질계 바이오매스 가수분해물 중 발효저해 물질에 대한 생물학적 및 물리화학적 무독화 방법의 평가)

  • Cho, Dae-Haeng;Kim, Yong-Hwan
    • KSBB Journal
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    • v.24 no.5
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    • pp.415-419
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    • 2009
  • In this study, the detoxification methods were evaluated for the removal of fermentation inhibitors from synthetic solution containing the composition similar to the lignocellulosic hydrolysate. The enzyme peroxidase and laccase were used as a biological treatment method. The physico-chemical methods such as adsorption and ion exchange were applied by using activated charcoal and ion exchange resins. The enzyme peroxidase showed a excellent removal of phenolic compounds. The 5-HMF and furfural were completely removed by activated charcoal. The anion exchange resin showed a good result for detoxification of acetic acid. The activated charcoal and ion exchange resins lead to a loss of sugars more or less. The choice of detoxification method must be made after considering the composition and inhibitors in hydrolysates.

False Positive of F-18 FDG-PET/CT due to Activated Charcoal Granuloma from Intraperitoneal Chemotherapy: A Case Report (복강 내 화학요법에 이용된 활성화 탄소 육아종에 의한 F-18 FDG PET/CT의 위양성 소견: 증례)

  • Lee, Se-Youl;Kim, Chan-Young;Yang, Doo-Hyun
    • Journal of Gastric Cancer
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    • v.6 no.4
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    • pp.291-294
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    • 2006
  • F-18 FDG-PET/CT could be used to evaluate the surveillance of recurrent stomach cancer, but some cases reported as false-positives. The authors found an activated charcoal granuloma from intraperitoneal chemotherapy by using a curative resection and mitomycin C for stomach cancer. A mass behind the right colon that showed on CT 6 months after an operation in a 46-year-old male patient had no progression in size, but 36 months after the operation, an increase was seen on F-18 FDG-PET/CT, and a metastatic tumor was suspected. The tumor was resected by an explorative laparotomy and was diagnosed as being an activated charcoal granuloma based on the histologic finding. Based on this case, we should be reminded of the possibility of a false-positive on analysis of F-18 FDG-PET/CT caused by an activated charcoal granuloma in a patient who has intraperitoneal chemotherapy.

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A study on the reduction of indoor radon contamination (실내 라돈의 오염량 감소에 관한 연구)

  • Kim, Chang-Kyun;Choi, Jong-Hak;Kang, Jeong-Ho
    • Journal of radiological science and technology
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    • v.29 no.2
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    • pp.53-56
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    • 2006
  • The purpose of the present study is to find ways to reduce the quantity of indoor radon contamination. The study was done from July, 2005 until December, 2005. It was found out that the easiest and most effective way to do that is to open the windows as often as possible and let the indoor air flow outside. When it is not possible to ventilate a room, the indoor radon contamination quantity can reduced by providing activated charcoal in the room. It has been proved that activated charcoal can absorb the room in the air. We need more activated charcoal in proportion to the size of the room. A further research is needed to investigate the amount of activated charcoal that will work most effectively.

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