Last modified: 2018-09-04 10:00:00
Affillations (J) field begins with “九大I2CNER”, “Kyushu U.”; 10 programs are found. (“Poster with Flash” presentations are double-counted.)
The search results are sorted by the start time.
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
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Day 1 | CE106 | The effect of membrane properties on CO2 capture process | CO2 capture membrane separation process analysis | ST-24 | 848 |
Day 1 | CE107 | Development of CO2 separation membrane modules for negative carbon emission | membrane separation membrane module negative emission | ST-24 | 359 |
Day 2 | PB203 | Cre-mediated transgene integration into a pre-determined nuclear genomic site of Chlamydomonas reinhardtii | Nuclear expression Cre-loxP Chlamydomonas reinhardtii | SY-70 | 572 |
Day 2 | PB212 | Quantitative determination of sGAG in natural ECM Scaffold for Liver Tissue Engineering | sulfated glycosaminoglycans fibrous proteins the liver- extracellular matrix | SY-70 | 419 |
Day 2 | PB213 | Development of biomimetic PCL/gelatin core-shell type nanofibrous scaffolds immobilized with Heparin Sulfate for Tissue Engineering applications | Coaxial Electrospinning Core-Shell Nanofibers | SY-70 | 553 |
Day 2 | PB203 | Cre-mediated transgene integration into a pre-determined nuclear genomic site of Chlamydomonas reinhardtii | Nuclear expression Cre-loxP Chlamydomonas reinhardtii | SY-70 | 572 |
Day 2 | PB212 | Quantitative determination of sGAG in natural ECM Scaffold for Liver Tissue Engineering | sulfated glycosaminoglycans fibrous proteins the liver- extracellular matrix | SY-70 | 419 |
Day 2 | PB213 | Development of biomimetic PCL/gelatin core-shell type nanofibrous scaffolds immobilized with Heparin Sulfate for Tissue Engineering applications | Coaxial Electrospinning Core-Shell Nanofibers | SY-70 | 553 |
Day 2 | CA220 | Elucidation of preferential CO2 permeation mechanism through alkanolamine-containing polymeric membranes | alkanolamine CO2 membrane separation | SY-62 | 65 |
Day 3 | BC304 | Low-temperature formability of degradable block copolymers from renewables | block copolymer phase transition pressure processing | SY-83 | 63 |
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SCEJ 50th Autumn Meeting (Kagoshima, 2018)