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NIRS Analysis of Liquid and Dry Ewe Milk

  • Nunez-Sanchez, Nieves;Varo, Garrido;Serradilla-Manrique, Juan M.;Ares-Cea, Jose L.
    • 한국근적외분광분석학회:학술대회논문집
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    • 한국근적외분광분석학회 2001년도 NIR-2001
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    • pp.1251-1251
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    • 2001
  • The routine analysis of milk chemical components is of major importance both for the management of animals in dairy farms and for quality control in dairy industries. NIRS technology is an analytical technique which greatly simplifies this routine. One of the most critical aspects in NIRS analysis of milk is sample preparation and analysis modes which should be fast and straightforward. An important difficulty when obtaining NIR spectra of milk is the high water content (80 to 90%) of this product, since water absorbs most of the infrared radiation, and, therefore, limits the accuracy of calibrating for other constituents. To avoid this problem, the DESIR system was set up. Other ways of radiation-sample interaction adapted for liquids or semi-liquids exist, which are practically instantaneous and with limited or null necessity of sample preparation: Transmission and Folded Transmission or Transflectance. The objective of the present work is to compare the precision and accuracy of milk calibration equations in two analysis modes: Reflectance (dry milk) and Folded Transmission (liquid milk). A FOSS-NIR Systems 6500 I spectrophotometer (400-2500 nm) provided with a spinning module was used. Two NIR spectroscopic methods for milk analysis were compared: a) folded transmission: liquid milk samples in a 0.1 pathlength sample cell (ref. IH-0345) and b) reflectance: dried milk samples in glass fibre filters placed in a standard ring cell. A set of 101 milk samples was used to develop the calibration equations, for the two NIR analysis modes, to predict casein, protein, fat and dry matter contents, and 48 milk samples to predict Somatic Cell Count (SCC). The calibrations obtained for protein, fat and dry matter have an excellent quantitative prediction power, since they present $r^2$ values higher than 0.9. The $r^2$ values are slightly lower for casein and SCC (0.88 and 0.89 respectively), but they still are sufficiently high. The accuracy of casein, protein and SCC equations is not affected by the analysis modes, since their ETVC values are very similar in reflectance and folded transmission (0.19% vs 0.21%; 0.16% vs 0.19% and 55.57% vs 53.11% respectively), Lower SECV values were obtained for the prediction of fat and dry matter with the folded transmission equations (0.14% and 0.25% respectively) compared to the results with the reflectance ones (0.43% and 0.34% respectively). In terms of accuracy and speed of analytical response, NIRS analysis of liquid milk is recommended (folded transmission), since the drying procedure takes 24 hours. However, both analysis modes offer satisfactory results.

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서울대도시권역의 설정과 지역구조에 관한 연구 (A study on the establishment and regional strunture of Seoul metropolitan region)

  • 이희연;송종홍
    • 대한지리학회지
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    • 제30권1호
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    • pp.35-56
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    • 1995
  • 본 논문은 지속적인 서울시의 성장이 그 주변지역의 성장을 수반하면서 서울대도시 권화되어가는 과정을 밝히고 서울대도시권역을 설정한 후, 서울대도시권역 내에서 기능적 특성에 따라 지역을 분류하려는 것이 그 목적이었다. 1990년 시점에서의 서울대도시권역의 경계가 어느 정도 확대되었는가를 측정하기 위하여 도시화 정도를 측정하는 지표와 서울과 의 기능적 연계성을 측정하는 지표를 토대로 하여 그 권역을 설정하였다. 그 결과 서울대도 시권역은 수도권의 거의 전 지역을 포함하고 있는 것으로 나타났다. 또한 서울대도시권역에 포함된 지역들은 서울이 갖고 있는 기능을 일부 분담하면서 기능적인 면에서 특화되거나 전 문화되어 기능적 특성에 따라서 신종주거기능 탁월지역, 제조업기능 탁월지역, 서비스기능 탁월지역, 잠재적 개발가능지역의 4개 그룹으로 지역을 분류할 수 있었다.

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