• 제목/요약/키워드: PIS method

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Analysis of Within-Field Spatial Variation of Rice Growth and Yield in Relation to Soil Properties

  • Ahn Nguyen Tuan;Shin Jin Chul;Lee Byun-Woo
    • 한국작물학회지
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    • 제50권4호
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    • pp.221-237
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    • 2005
  • For developing the site-specific fertilizer management strategies of crop, it is essential to know the spatial variability of soil factors and to assess their influence on the variability of crop growth and yield. In 2002 and 2003 cropping seasons within-field spatial variability of rice growth and yield was examined in relation to spatial variation of soil properties in the· two paddy fields having each area of ca. $6,600m^2$ in Suwon, Korea. The fields were managed without fertilizer or with uniform application of N, P, and K fertilizer under direct-seeded and transplanted rice. Stable soil properties such as content of clay (Clay), total nitrogen (TN), organic mater (OM), silica (Si), cation exchange capacity (CEC), and rice growth and yield were measured in each grid of $10\times10m$. The two fields showed quite similar spatial variation in soil properties, showing the smallest coefficient of variation (CV) in Clay $(7.6\%)$ and the largest in Si $(21.4\%)$. The CV of plant growth parameters measured at panicle initiation (PIS) and heading stage (HD) ranged from 6 to $38\%$, and that of rice yield ranged from 11 to $21\%$. CEC, OM, TN, and available Si showed significant correlations with rice growth and yield. Multiple linear regression model with stepwise procedure selected independent variables of N fertilizer level, climate condition and soil properties, explaining as much as $76\%$ of yield variability, of which $21.6\%$ is ascribed to soil properties. Among the soil properties, the most important soil factors causing yield spatial variability was OM, followed by Si, TN, and CEC. Boundary line response of rice yield to soil properties was represented well by Mitcherich equation (negative exponential equation) that was used to quantify the influence of soil properties on rice yield, and then the Law of the Minimum was used to identify the soil limiting factor for each grid. This boundary line approach using five stable soil properties as limiting factor explained an average of about $50\%$ of the spatial yield variability. Although the determination coefficient was not very high, an advantage of the method was that it identified clearly which soil parameter was yield limiting factor and where it was distributed in the field.

개환 복분해 중합을 통한 가교형 폴리이미드 박막의 잔류응력 거동 및 특성 분석 (Residual Stress Behavior and Characterization of Polyimide Crosslinked Networks via Ring-opening Metathesis Polymerization)

  • 남기호;서종철;장원봉;한학수
    • 폴리머
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    • 제38권6호
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    • pp.752-759
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    • 2014
  • 본 연구에서는 미세 전자 소자용 절연박막 및 차세대 플렉시블 디스플레이 기판으로서 사용이 기대되는 폴리이미드(PI)에 개환 복분해 중합(ring-opening metathesis polymerization)이 가능한 환형 말단 캡핑제(end-capping agent)인 cis-1,2,3,6-tetrahydrophthalic anhydride(CDBA)로 사슬 말단에 가교 반응이 된 가교형 폴리이미드를 합성하였다. 말단 캡핑제의 조성비에 따른 가교형 폴리이미드 박막의 잔류응력 거동은 thin film stress analyzer(TFSA)를 이용한 wafer bending mothod로 온도에 따라 연속적인 거동을 in-situ로 측정하였다. 열특성은 시차 주사 열량계(DSC), 열기계 분석기(TMA) 및 열 중량 분석기(TGA)를 이용하여 측정하였고, 광학 특성은 자외선/가시광선 분광광도계(UV-vis)와 색차계(spectrophotometer)를 이용하였으며, 네트워크 구조의 모폴로지(morphology) 변화를 통해 해석하였다. 말단 캡핑제의 조성비가 증가함에 따라 잔류응력은 27.9에서 -1.3 MPa로 초저응력 및 향상된 열 특성을 나타내었으나, 광학 특성은 감소됨을 보였다. 가교형 폴리이미드 박막의 우수한 특성 발현은 고집적도 다층 구조의 안정성 및 신뢰도가 요구되는 분야의 응용성이 확대될 것으로 기대된다.