Effect of the Application of Zn-contained Granular Fused Phosphate and Compound Fertilizers on the Growth and Yield of Rice in the "Akagare" Paddy Field

적고발생답(赤枯發生畓)에 대(對)한 함아연용성인비(含亞鉛熔成燐肥) 및 복비(複肥)의 시용(施用)이 수도(水稻)의 생육(生育) 및 수량(收量)에 미치는 영향(影響)

  • Cho, S.J. (College of Agriculture, Chungbuk National University) ;
  • Cho, T.S. (College of Agriculture, Chungbuk National University) ;
  • Yuk, C.S. (College of Agriculture, Chungbuk National University) ;
  • Lee, J.Y. (Chungbuk Provincial Office of Rural Development)
  • Published : 1978.06.30

Abstract

A field experiment was conducted on a soil where habitual zinc deficiency has been observed, to investigate the effectiveness of two forms of zinc containing fertilizers: zinc enriched fused phosphate and zinc enriched compound fertilizer. The result of present study is summarized as following. 1. The sail used for the study contained relatively large amount of 1N $CH_2COONH_4$ extractable Ca and the pH was 7.03. Available Zn extracted by 0.1 HCl and available $SiO_2$ extracted by NaOAc were 3.35 ppm and 67.7 ppm respectively. 2. In control plots Zinc content of rice plant measured at 20 days after transplanting was 22-23 ppm, which was a little higher than the critical level (20ppm). But at harvesting stage it dropped to 15ppm. 3. The ratios of $P_2O_5/Zn$ and N/Zn tended to lower as the zinc applied to the soil increased. 4. Application of Zinc clearly increased the number of tillers and plant height as compared to the control. It was also observed that the plots received znic headed and matured earlier compared to the control plots by two weeks. 5. Application of zinc increased all of the yield components and the yield of rice. However, there were no statistical differences in yield and yield components among the forms and levels of zinc fertilizers.

아연결핍(亞鉛欠乏)에 의한 적고발생답(赤枯發生畓)에 대(對)하여 함아연입상용인(含亞鉛粒狀熔燐)과 함아연복합비료(含亞鉛複合肥料)를 시용(施用)하여 효과를 살펴본 바 그 결과(結果)는 다음과 같다. 1. 적고발생답토양(赤枯發生畓土壤)의 석회함량(石灰含量)은 10.5me/100g로서 많았고, pH는 7.03으로서 중성(中性)이었으며, 유효아연은 평균(平均) 3.35ppm, 유효규산은 67.7ppm로서 매우 낮았다. 2. 아연무처리구(亞鉛無處理區)에서의 수도체중(水稻體中)의 아연함량(亞鉛含量)은 이앙후(移秧後) 20일(日)과 출수기(出穗期)에 있어서는 22~23ppm로서 아연흠핍증(亞鉛欠乏症) 발생한계농도(發生限界濃度)인 20ppm를 약간(若干) 상회(上廻)하고 있으나 수확기(收穫期)에는 15ppm로서 훨씬 낮은 값을 보였다. 3. 수도체중(水稻體中)의 N/Zn와 $P_2O_5/Zn$의 비(比)는 아연시용량(亞鉛施用量)이 많을수록 아연무시용구(亞鉛無施用區)($G_0$, $C_0$)에 비(比)해서 낮아지는 경향(傾向)이었다. 4. 초장(草長)과 분벽경수(分蘗莖數)는 아연시용량(亞鉛施用量)의 증가(增加)에 따라 증대(增大)하는 경향(傾向)이었고 출수(出穗)는 아연시용구(亞鉛施用區)가 무시용구(無施用區)에 비해서 약(約 )2주일(週日) 빨랐다. 5. 아연시용구(亞鉛施用區)는 무시용구(無施用區)에 비(比)해서 수량구성요소(收量構成要素)의 제형질(諸形質)을 크게 증대(增大)시켰으며, 특(特)히 정조수량(精粗收量)과 현미수량(玄米收量)에 있어서는 고도(高度)의 유의차(有意差)를 보였으나 아연시용(亞鉛施用) 구간(區間)에는 유의차(有意差)가 인정(認定)되지 않았다.

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