• Title/Summary/Keyword: Regeneration efficiency

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Evaluation of CO2 desorption efficiency of scrubber absorption system in Liquor Plant (주류공정 내 흡수시스템 CO2 탈리 효율 평가)

  • Park, Il-Gun;Park, Hyung-June;Lee, June-Hyung;Kim, Heung-Rae;Lee, Ju-Yeol
    • Journal of the Korean Applied Science and Technology
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    • v.37 no.2
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    • pp.173-182
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    • 2020
  • In this study, amino acid salt absorbents were applied to remove and capture high concentrations of CO2 in liquor factories and regeneration performance was confirmed. In order to evaluate the effective treatment of the desorption process, two methods(Hot plate and Steam) were compared at the laboratory scale. As a result, hot plate and Steam. Hot plate methods regeneration efficiency was about 10% and Steam methods was about 60%. The Steam-Tower condition was evaluated by installing a 100㎥/min flow rate scrubber absorption system in the liquor factory. As a result, it was established that the absorbent flow rate was below 4L/min and the steam temperature was above 160℃. Finally regeneration performance was confirmed as 85.5%.

Improved in vitro Regeneration of Potato (Solanum tuberosum cv. Superior) Transformed by Agrobacterium Expressing $\beta-Glucuronidase$

  • Park, Yoon-Kyung;Park, Gene-Sue;Yang, Young-Ki;Cheong, Hyeon-Sook
    • Journal of Plant Biology
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    • v.39 no.2
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    • pp.93-98
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    • 1996
  • In order to enhance the system of potato transformation and further regeneration, potato was transformed using the Agrobacterium tumefaciens harboring $\beta$-glucuronidase (GUS) gene. We found that a series fo modified medium ttained 100% shoot regeneration within 5 weeks after the preincubated explants on stage I medium were infected with Agrobacterium. Callus appeared at the cut edges of stem segments on stage II medium, mainly at the basal parts. Some explants started to form shoots after two to three weeks on stage III medium containing kanamycin (50 mg/L). When transferred to MS medium containing 200 mg/L kanamycin, 81% of the transformed shoots formed roots at the cut edge of the plantlets. In contrast, untrasformed shoots never rooted and became yellowish after few weeks under the same conditions. Southern and northern analysis indicated in vitro shoot regeneration on the callus derived from the potato explants, which were incubated with Agrobacteria. The regeneration cycle was shortened after the transformatin and finally the transformation efficiency was highly enhanced.

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Adsorption and Thermal Regeneration of Toluene and Benzene on the Fixed Bed Packed with Activated Carbon and Activated Carbon Fiber

  • Kim, Jong-Hwa;Oh, Ok-Kyun;Haam, Seung-Joo;Lee, Chang-Ha;Kim, Woo-Sik
    • Carbon letters
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    • v.2 no.1
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    • pp.44-54
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    • 2001
  • The characteristics of adsorption and desorption of benzene and toluene were investigated at a fixed bed packed with the activated carbon and activated carbon fiber. Through breakthrough experiments under various feed concentration conditions, it was found that the slope of mass transfer zone and the tailing in the breakthrough curves were different from the feed conditions due to different heats of adsorption. In hot nitrogen desorption, the regeneration time and mass transfer zone of the toluene desorption curve were longer than those of the benzene desorption curve because of the difference in adsorption affinity. With an increase in the regeneration temperature, the height of roll-up and the sharpness of desorption curves increased but the regeneration times decreased. The adsorption capacities of the activated carbon and activated carbon fiber after three-time thermal regenerations decreased about 25% and 37% for benzene and 18% and 25% for toluene, respectively. To investigate the effect of the regeneration temperature on the energetic efficiency, the characteristic desorption temperatures of toluene and benzene were investigated by calculating purge gas consumption and temperature.

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Comparison of light-induced degradation and regeneration in P-type monocrystalline full aluminum back surface field and passivated emitter rear cells

  • Cho, Eunhwan;Rohatgi, Ajeet;Ok, Young-Woo
    • Current Applied Physics
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    • v.18 no.12
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    • pp.1600-1604
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    • 2018
  • This paper reports on a systematic and quantitative assessment of light induced degradation (LID) and regeneration in full Al-BSF and passivated emitter rear contact cells (PERC) along with the fundamental understanding of the difference between the two. After LID, PERC cells showed a much greater loss in cell efficiency than full Al-BSF cells (~0.9% vs ~0.6%) because the degradation in bulk lifetime also erodes the benefit of superior BSRV in PERC cells. Three main regeneration conditions involving the combination of heat and light ($75^{\circ}C/1\;Sun/48h$, $130^{\circ}C/2\;Suns/1.5h$ and $200^{\circ}C/3\;Suns/30s$) were implemented to eliminate LID loss due to BO defects. Low temperature/long time ($75^{\circ}C/48h$) and high temperature/short time ($200^{\circ}C/30s$) regeneration process was unable to reach 100% stabilization. The intermediate temperature/time ($130^{\circ}C/1.5h$) generation achieved nearly full recovery and stabilization (over 99%) for both full Al-BSF and PERC cells. We discussed the effect of temperature, time and suns in regeneration mechanism for two cells.

Regeneration of Zeolite 5A in the Adsorption Process for Isoprene Purification (이소프렌 정제를 위한 제올라이트 5A 흡착제 재생)

  • Jeon, Kyung-Jin;Yoo, Kye-Sang;Lee, Chang-Ha;Ahn, Byoung-Sung
    • Clean Technology
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    • v.16 no.4
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    • pp.272-276
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    • 2010
  • Adsorption process for the removal of acetylene, especially 2-butyne, from isoprene was studied with zeolite as an adsorbent. In this work, zeolite 5A was selected to investigate the effects of various regeneration conditions by repeated adsorption experiments. The effect of regeneration temperature and desorption pressure was investigated to identity the optimum regeneration conditions. Repeated adsorption and desorption experiments were carried out for 10 cycles to confirm the efficiency of regeneration process under temperature of 423 K and desorption time of 16 h.

Plant Regeneration Via Organogenesis on Petiole of Centella asiatica (L.) Urban

  • Choi, Kyung-Mi;Hwang, Sung-Jin;Chung, Sang-Jin;Hwang, Baik
    • Korean Journal of Medicinal Crop Science
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    • v.14 no.2
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    • pp.87-91
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    • 2006
  • An efficient plant regeneration of C. asiatica was achieved from organogenesis using petiole explants of in vitro plantlet on MS basal medium controled with different plant growth regulators (NAA,2,4-D, IAA kinetin, and BA). Best results that 50%, efficiency of regeneration per explant for regeneration were obtained with IAA $17.13\;{\mu}M$ and BA $8.9\;{\mu}M$. Formation of adventitious shoots via organogenesis from the petiole explant was verified by histological sectioning of plantlets. Regenerated plants were transplanted into soil.

Evaluation of Physical Properties and Adsorption Capacity of Regeneration GAC (재생 활성탄의 물성 및 흡착능 평가)

  • Mun, Ji-Young;Chae, Seon-Ha;Wang, Chang-Keun
    • Journal of Korean Society of Water and Wastewater
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    • v.23 no.4
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    • pp.407-416
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    • 2009
  • The objective of this study was to evaluate the variation of physical properties and adsorption capacity after regeneration of Granular Activated Carbon (GAC). It was found that the loss rate of regenerated carbon was related to the usage time of GAC. The correlations between iodide number and loss rate also determined. Effective size and uniformity coefficient for regenerated GAC were within a similar range compared to virgin GAC. This result indicated that the function as media is recovered. Although iodide number and specific surface area for regenerated GAC were not completely recovered compared to that of virgin GAC, cumulative pore volumes of regenerated GAC were increased. Removal efficiency of organic matter in regenerated GAC was resulted the same or slightly higher than that of virgin GAC. This result indicates that the number of mesopore responsible for removal of organic matter was increased after regeneration.

Adsorption of Specific Organics in Water on GAC and Regeneration of GAC by Countercurrent Oxidative Reaction

  • Ryoo, Keon-Sang;Kim, Tae-Dong;Kim, Yoo-Hang
    • Bulletin of the Korean Chemical Society
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    • v.23 no.6
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    • pp.817-824
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    • 2002
  • Granular activated carbon(GAC) is highly effective in removing organic compounds which are resistant to biological disintegration in wastewater treatment. However, GAC has reached its full adsorptive capacity, GAC needs to be regenerated before it can be used for a further adsorption cycle. Countercurrent oxidative reaction (COR) technique has been developed and evaluated for the regeneration of spent GAC. Various parameters such as flame temperature, the loss of carbon, destruction and removal efficiency (DRE) of organic compounds, surface area, surface structure, adsorptive capacity, etc. were examined to determine the performance of COR. The results of these tests showed that adosorptive capacity of regenerated GAC was completely recovered, the loss of carbon was controllable, flame temperature was high enough to insure complete destruction and removal $(\geq99.9999%)$ of specific organics of interest, polychlorinated biphenyls (PCBs), that are thermally stable, and on formation of toxic byproducts such as polychlorinated dibenzo-p-dioxins (PCDDs) or polychlorinated dibenzofurans (PCDFs) were detected during the regeneration process. The COR technique is environmentally benign, easy to use and less copital intensive than other available regeneration technologies.

Efficient plant regeneration from cotyledon and primary leaf explants of lettuce (Lactuca sativa L.) (상추의 자엽 및 제 1엽 절편체들로부터 효율적인 식물체 재분화)

  • Son, Bo-Wha;Park, Chul-Gyoo;Ahn, Nam-Young;Jeon, Joo-Mi;Kim, Cha-Young;Oh, Se-Chan;Lee, Young-Hoon;Gal, Sang-Wan;Lee, Sung-Ho
    • Journal of Life Science
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    • v.17 no.6 s.86
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    • pp.822-824
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    • 2007
  • The efficient system for plant regeneration from cotyledon and primary feat explants of lettuce was established. Plant regeneration efficiency was shown 91.3% from cotyledon and 85.9% from primary leaf explants of variety 'Jungtongpogi' in KN medium. Plant regeneration efficiency was also estimated with various plant regeneration media in variety' Chungchima', which was lowest plant regeneration efficient showing 35.4% from cotyledon and 30.3% from prima leaf explants in KN medium. Kl medium increased 77.9% and 80.7% of plant regeneration efficiencies from cotyledon and primary leaf explants of variety 'Jungtongpogi' were cultured on KN medium. In case of varie쇼 ‘Chungchima', efficient plant regeneration was shown when primary leaf explants were cultured on SH and KI media.

Effect of Copper on the Plant Regeneration from Seed Derived Callus of Orchardgrass (Dactylis glomerata L.) (오차드그래스의 종자유래의 캘러스로부터 식물체 재분화율에 미치는 Copper의 영향)

  • 이효신;이병현;원성혜;이상현;조진기
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.20 no.4
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    • pp.259-264
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    • 2000
  • This study was conducted to investigate the effects of copper in the efficiencies of callus formation and plant regeneration of orchardgrass (Dactylis glomarata L.). Seeds were cultured on MS medium containing $2\;mg/{\ell}$ 2,4-D and different concentrations ($0.1-100\;{\mu}mol$) of copper sulfate. Plant regeneration was achieved on N6 medium containing $1\;mg/{\ell}$ NAA, $5\;mg/{\ell}$ kinetin and $0.1-100\;{\mu}mol$ of copper sulfate. Callus formation was not affected by copper incorporation into MS medium. However, the efficiency of plant regeneration was promoted by copper and the maximum efficiency was obtained when $70\;{\mu}mol$ copper was incorporated in the culture medium. The average number of regenerated plants from the seed-derived callus was also increased by copper.

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