• Title/Summary/Keyword: Cell adsorption apparatus

Search Result 3, Processing Time 0.024 seconds

Development of Mono Layer Cell Adsorption Apparatus to Create a Slide for Microscopic Diagnosis (현미경 진단용 슬라이드 제작을 위한 단층세포 흡착장치 개발)

  • Oh, H.Y.;Mun, M.G.;Kim, S.H.;Kim, D.W.;Kang, S.M.;Sung, R.G.;Kim, H.C.
    • Journal of Biomedical Engineering Research
    • /
    • v.36 no.1
    • /
    • pp.1-6
    • /
    • 2015
  • This study aims to design a monolayer cell adsorption apparatus that would help to produce high-quality slides for Liquid-Based Cytology (LBC) of an early cancer diagnosis for human bodies. The LBC collects exfoliated cells of human bodies and spreads the cells on the slides. Through processes of dyeing and cytological examination, the LBC screens for cancers in early stage. In this study, both of a cell suction module and a cell adsorption module, which are the key elements of the monolayer cell adsorption apparatus, were developed, and using those modules, the study set, first, conditions to help both GYN and NON-GYN apply principal cells without de-endothelialization before conducting its own analysis on the utility. As a results, for GYN, apparatus was determined to be able to produce high-quality slides under the condition of 4 and for NON-GYN, the apparatus would come up with other slides of high-quality under the condition of 2. The study carried out a repetitive test on selected conditions and proved 96% of the repetitive success rate. By the results of what has been learned so far, the study presents that the apparatus has a possibility to replace device from South Korea as one of those other currently-applied systems to run the LBC and that the system will also present a new paradigm for cancer diagnosis as it makes a contribution to the improvement in the LBC.

The Evaluation of CO Adsorbents Used in PSA Process for the Purification of Reformed Hydrogen (개질 수소 정제용 PSA 공정을 위한 CO 흡착제의 성능 평가)

  • PARK, JIN-NAM
    • Transactions of the Korean hydrogen and new energy society
    • /
    • v.27 no.6
    • /
    • pp.628-635
    • /
    • 2016
  • Natural gas reformed hydrogen is used as a fuel of fuel cell vehicle, PSA process is used for the purification of reformed hydrogen. In this study, the performance of CO adsorbent in PSA process was evaluated. Zeolite adsorbents used in the commercial PSA process is used. The physical and chemical properties of adsorbents were characterized using BET apparatus, XRD, and FE-SEM. The breakthrough apparatus modified from GC was used for the CO breakthrough experiment, the quantitative analysis of CO adsorption capacity was performed using CO breakthrough curve. Zeolite 10X and 13X showed superior CO adsorption capacity than activated alumina. The CO adsorption capacity of zeolite 10X is more than twice of zeolite 13X even the BET surface area is low. It seems that the presence of $Ca^{2+}$ cation in zeolite 10X is beneficial to the adsorption of CO.

R&D Trends and Unit Processes of Hydrogen Station (수소 스테이션의 연구개발 동향 및 단위공정 기술)

  • Moon, Dong Ju;Lee, Byoung Gwon
    • Korean Chemical Engineering Research
    • /
    • v.43 no.3
    • /
    • pp.331-343
    • /
    • 2005
  • Development of hydrogen station system is an important technology to commercialize fuel cells and fuel cell powered vehicles. Generally, hydrogen station consists of hydrogen production process including desulfurizer, reformer, water gas shift (WGS) reactor and pressure swing adsorption (PSA) apparatus, and post-treatment process including compressor, storage and distributer. In this review, we investigate the R&D trends and prospects of hydrogen station in domestic and foreign countries for opening the hydrogen economy society. Indeed, the reforming of fossil fuels for hydrogen production will be essential technology until the ultimate process that may be water hydrolysis using renewable energy source such as solar energy, wind force etc, will be commercialized in the future. Hence, we also review the research trends on unit technologies such as the desulfurization, reforming reaction of fossil fuels, water gas shift reaction and hydrogen separation for hydrogen station applications.