In this study, the effect of Distribution efficiency through the fishery production base distribution center (FPC) on the production site board facility was studied. FPC is a new distribution system for Korean fishery products that has been promoted in earnest since 2012, and in this study, the effect before and after the introduction of FPC was analyzed using the DID (Difference in Difference) model for the effect of FPC in the fishery industry. The results of analysis shows that in the case of Wando Geumil FPC, the volume and unit price of consignment sales decreased during the analysis period, which was statistically significant. In the case of Sokcho FPC, the volume of consignment sales decreased during the analysis period, which was statistically insignificant. But the unit price of consignment sales rose during the analysis period, which was statistically significant. In the case of Gyeongju FPC, the volume of consignment sales increased during the analysis period, which was statistically significant at the 90% confidence level. But the unit price of consignment sales fell during the analysis period, which was statistically significant.
The SPICA (SPace Infrared Telescope for Cosmology & Astrophysics) project is a next-generation infrared space telescope optimized for mid- and far-infrared observation with a cryogenically cooled 3m-class telescope. It will achieve the high resolution as well as the unprecedented sensitivity from mid to far-infrared range. The FPC (Focal Plane Camera) proposed by KASI as an international collaboration is a near-infrared instrument. The FPC-S and FPC-G are responsible for the scientific observation in the near-infrared and the fine guiding, respectively. The FPC-G will significantly reduce pointing error down to below 0.075 arcsec through the observation of guiding stars in the focal plane. We analyzed the pointing requirement from the focal plane instruments as well as the error factors affecting the pointing stability. We also obtained the expected performance in operation modes. We concluded that the FPC-G can achieve the pointing stability below 0.075 arcsec which is the requirement from the focal plane instruments.
불용성 농축어육단백질(fish protein concentration, FPC)의 기능성을 개선하기 위한 목적으로 한외여과막 반응기 (MWCO 5,000)를 사용하여 효소적 가수분해를 시도하였다. 막반응기에서 불용성인 FPC의 막힌현상(fooling)을 완화시키기 위하여 회분식에서 pepsin으로 1차 가수분해하였으며, 그 가수분해물을 한외여과막 반응기에서 pronase E를 사용하여 2차 가수분해하였다. 회분식에서 FPC의 최적가수분해 조건은 45℃, pH 2.0, 기질 대 효소비 150 (w/w)였으며, 이때의 가수분해도는 약 89%였다. 회분식에서 반응속도 상수 Km 및 Vmax는 각각 1.25%, 0.89 mg/mℓ/min이었으며, 기질농도 1.5% 이상에서 기질저해가 있었다. 한외여과막 반응기는 순환속도 474 mℓ/min, 투과압력 15 psi로 작동하였으며, 온도에 따른 투과유속은 증가하였으나 pH에 대해서는 거의 일정하였다. 막반응기에서 기질과 2차 가수분해효소 pronase E의 비 (S/E)는 200 (w/w)이 가장 효율적이었으며, 이때의 가수분해물의 생산량은 효소 mg당 702 mg으로 회분식 51 mg에 비해 13배 이상 높았다. FPC 가수분해물의 분자량은 1차 가수분해물의 경우 2,500~20,000 Da 영역에 분포하였으며, 2차 가수분해물은 700~10,000 Da 이었다.