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      KCI등재 SCIE SCOPUS

      Production of TiO2-deposited Diatoms and Their Applications for Photo-catalytic Degradation of Aqueous Pollutants

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      https://www.riss.kr/link?id=A107118117

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      다국어 초록 (Multilingual Abstract)

      Biogenic TiO2 diatoms can be prepared by metabolic incorporation of TiO2 on the frustule surface of the diatoms. To utilize the photo-catalytic activity of biogenic TiO2 for practical applications, high production of TiO2- deposited diatoms is require...

      Biogenic TiO2 diatoms can be prepared by metabolic incorporation of TiO2 on the frustule surface of the diatoms. To utilize the photo-catalytic activity of biogenic TiO2 for practical applications, high production of TiO2- deposited diatoms is required. Here, we evaluated the growth rate and biogenic TiO2 production of several domestic diatom species. Among the tested diatoms, Caloneis schroederi (CS) showed high biomass production (4.01 g/L) in a twostage cultivation system and proper exoskeletal rigidity for efficient production of biogenic TiO2. The dry weight of the TiO2-deposited CS frustules (biogenic CS-TiO2) was 4.52 g/L. Biogenic CS-TiO2 showed significant photocatalytic degradation of Congo Red in water with an efficiency of 27.8%, which is higher than that of standard TiO2 (17.4%). In addition, chloroform could be removed from water through the photo-catalytic activity of biogenic CS-TiO2 (91%). Therefore, the biogenic CS-TiO2 developed in this study can be employed for the treatment of pollutantcontaminated wastewater.

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      참고문헌 (Reference)

      1 Schmid, A. M. M., "Wall morphogenesis in diatoms : Deposition of silica by cytoplasmic vesicles" 100 : 267-288, 1979

      2 Kim, K., "The role of environment and microorganisms in diseases of corals : overview of DAO Special 5" 87 : 1-3, 2009

      3 Shifu, C., "The effect of different preparation conditions on the photocatalytic activity of TiO2·SiO2/beads" 200 : 3637-3643, 2006

      4 Zeng, H. C., "Synthetic architecture of interior space for inorganic nanostructures" 16 : 649-662, 2006

      5 Ki, M. R., "Surface immobilization of protein via biosilification catalyzed by silicatein fused to glutathione S-transferase(GST)" 36 : 643-648, 2013

      6 Cole, K. E., "Spermidine and spermine catalyze the formation of nanostructured titanium oxide" 8 : 1641-1647, 2007

      7 Lewin, R. A., "Skeletons on the coffee table" 346 : 619-620, 1990

      8 Abdelhamid, M. A. A., "Self-encapsulation and controlled release of recombinant proteins using novel silica-forming peptides as fusion linkers" 125 : 1175-1183, 2019

      9 Dai, Z., "Researches and developments of biomimetics in tribology" 51 : 2681-2689, 2006

      10 박정찬, "R5 Peptide-based Biosilicification Using Methyltrimethoxysilane" 한국생물공학회 23 (23): 11-15, 2018

      1 Schmid, A. M. M., "Wall morphogenesis in diatoms : Deposition of silica by cytoplasmic vesicles" 100 : 267-288, 1979

      2 Kim, K., "The role of environment and microorganisms in diseases of corals : overview of DAO Special 5" 87 : 1-3, 2009

      3 Shifu, C., "The effect of different preparation conditions on the photocatalytic activity of TiO2·SiO2/beads" 200 : 3637-3643, 2006

      4 Zeng, H. C., "Synthetic architecture of interior space for inorganic nanostructures" 16 : 649-662, 2006

      5 Ki, M. R., "Surface immobilization of protein via biosilification catalyzed by silicatein fused to glutathione S-transferase(GST)" 36 : 643-648, 2013

      6 Cole, K. E., "Spermidine and spermine catalyze the formation of nanostructured titanium oxide" 8 : 1641-1647, 2007

      7 Lewin, R. A., "Skeletons on the coffee table" 346 : 619-620, 1990

      8 Abdelhamid, M. A. A., "Self-encapsulation and controlled release of recombinant proteins using novel silica-forming peptides as fusion linkers" 125 : 1175-1183, 2019

      9 Dai, Z., "Researches and developments of biomimetics in tribology" 51 : 2681-2689, 2006

      10 박정찬, "R5 Peptide-based Biosilicification Using Methyltrimethoxysilane" 한국생물공학회 23 (23): 11-15, 2018

      11 강미숙, "Preparation of a TiO2 Film Using a TEOS Binder and Its Application to the Photodegradation of Benzene" 한국공업화학회 11 (11): 416-424, 2005

      12 Losic, D., "Pore architecture of diatom frustules : potential nanostructured membranes for molecular and particle separations" 6 : 982-989, 2006

      13 Yablonovitch, E., "Photonic band-gap structures" 10 : 283-295, 1993

      14 Lazar, M. A., "Photocatalytic water treatment by titanium dioxide : Recent updates" 2 : 572-601, 2012

      15 Cole, K. E., "Peptide-and long-chain polyamine-induced synthesis of micro-and nanostructured titanium phosphate and protein encapsulation" 18 : 4592-4599, 2006

      16 Marchand, P. J., "Optically augmented 3-D computer : System technology and architecture" 41 : 20-35, 1997

      17 Ghosh, T. B., "On crystallite size dependence of phase stability of nanocrystalline TiO2" 94 : 4577-, 2003

      18 Yeo, K. B., "Novel silicaforming peptides derived from Ectocarpus siliculosus" 58 : 193-198, 2017

      19 Min, K. H., "Novel silica forming peptide, RSGH, from Equus caballus: Its unique biosilica formation under acidic conditions" 153 : 107389-, 2020

      20 Thi Khoa My Nguyen, "Nanosized and tunable design of biosilica particles using novel silica-forming peptide-modified chimeric ferritin templates" 한국공업화학회 73 : 198-204, 2019

      21 Jeffryes, C., "Metabolic insertion of nanostructured TiO2 into the patterned biosilica of the diatom Pinnularia sp. by a two-stage bioreactor cultivation process" 2 : 2103-2112, 2008

      22 De Stefano, L., "Marine diatoms as optical chemical sensors" 87 : 233902-, 2005

      23 De Stefano, L., "Lensless light focusing with the centric marine diatom Coscinodiscus walesii" 15 : 18082-18088, 2007

      24 Ryu, Y. H., "Improved stability and reusability of endoglucanase from Clostridium thermocellum by a biosilica-based auto-encapsulation method" 105 : 144-149, 2016

      25 Ki, M. R., "Hypothetical cathepsin-like protein from Nematostella vectensis and its silicatein-like cathepsin mutant for biosilica production" 49 : 95-101, 2014

      26 Min, K. H., "High expression and biosilica encapsulation of alkaline-active carbonic anhydrase for CO2 sequestration system development" 143 : 128-134, 2016

      27 De Stefano, M., "Functional morphology of micro-and nanostructures in two distinct diatom frustules" 46 : 64-68, 2009

      28 Tahir, M. N., "Formation of layered titania and zirconia catalysed by surfacebound silicatein" 2005 : 5533-5535, 2005

      29 Losic, D., "Fabrication of gold nanostructures by templating from porous diatom frustules" 30 : 908-914, 2006

      30 Townley, H. E., "Exploitation of diatom frustules for nanotechnology : tethering active biomolecules" 18 : 369-374, 2008

      31 Song, H., "Evaluation of precipitation simulated by seven SCMs against the ARM observations at the SGP site" 26 : 5467-5492, 2013

      32 PilHo Huh, "Easy Formation and Dye-Sensitized Solar Cell Application of Highly-Ordered 3D Titania Arrays Using Photodynamic Polymer" 대한금속·재료학회 8 (8): 131-134, 2012

      33 Kim, J. K., "Direct immobilization and recovery of recombinant proteins from cell lysates by using EctP1-peptide as a short fusion tag for silica and titania supports" 135 : 969-977, 2019

      34 Bozarth, A., "Diatoms in biotechnology : modern tools and applications" 82 : 195-201, 2009

      35 Fuhrmann, T., "Diatoms as living photonic crystals" 78 : 257-260, 2004

      36 Lebeau, T., "Diatom cultivation and biotechnologically relevant products. Part II: current and putative products" 60 : 624-632, 2003

      37 Park, K. S., "Design of bio-inspired silica-encapsulated protein A for improved immunoprecipitation assays" 128 : 12-18, 2017

      38 Losic, D., "Complex gold nanostructures derived by templating from diatom frustules" 2005 : 4905-4907, 2005

      39 Mi-Ran Ki, "Compartment-restricted and rate-controlled dual drug delivery system using a biosilica-enveloped ferritin cage" 한국공업화학회 81 : 367-374, 2020

      40 Silva-Aciares, F. R., "Comparisons of the growth of six diatom species between two configurations of photobioreactors" 38 : 26-35, 2008

      41 Ki, M. R., "Biosilica-enveloped ferritin cage for more efficient drug deliveries" 68 : 182-189, 2018

      42 Sewell, S. L., "Biomimetic synthesis of titanium dioxide utilizing the R5 peptide derived from Cylindrotheca fusiformis" 18 : 3108-3113, 2006

      43 Zhang, D. Y., "Bio-manufacturing technology based on diatom micro-and nanostructure" 57 : 3836-3849, 2012

      44 Hamm, C. E., "Architecture and material properties of diatom shells provide effective mechanical protection" 421 : 841-843, 2003

      45 Dolatabadi, J. E. N., "Applications of diatoms and silica nanotechnology in biosensing, drug and gene delivery, and formation of complex metal nanostructures" 30 : 1538-1548, 2011

      46 Aranka Ilea, "An in vitro Study on the Biocompatibility of Titanium Implants Made by Selective Laser Melting" 한국생물공학회 24 (24): 782-792, 2019

      47 Losic, D., "AFM nanoindentations of diatom biosilica surfaces" 23 : 5014-5021, 2007

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      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2004-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2003-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2001-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 1.14 0.13 0.75
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.57 0.46 0.239 0.02
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