Effect of Wollastonites on Silica Uptake by Rice Plant

규회석(珪灰石)의 가용성(可溶性) 규산함량(珪酸含量)이 수도(水稻)의 규산흡수(珪酸吸收)에 미치는 효과

  • Lee, Yun Hwan (Institute of Agricultural Science, Office of Rural Development) ;
  • Choi, Eae Ung (Institute of Agricultural Science, Office of Rural Development) ;
  • Han, Ki Hak (Institute of Agricultural Science, Office of Rural Development)
  • Accepted : 1973.09.22
  • Published : 1973.12.20

Abstract

In order to investigate the silica effect of insufficient wollastonite to the official standard (above than 15% of suluble silica (N/2 HCl) on rice plant as silica fertilizer, 9 kinds of wollastonites and slag were adopted to examine the amount of silica absorbed by rice straw during growing period, and soluble silica of wollastonites extracted by 7 buffer solutions were compared with silica content in rice straw. Crystalls of ingredient in wollastonite ores were identified by X-ray diffractometer. The results were that silica content of rice plant at growing stages were increased as same ratio of soluble silica. content in wollastonite. Wollastonite containing more than 10% of souble silica (N/2 HCl) could be applied as fertilizer because absorbed amount of silica by rice plant from them are higher than from slag which contained 30% of soluble silica. Wollastonite powder mixed with impure ores in which soluble silica could not be extracted had the same effect on silica absorption of straw as wollastonite powder which contained conformable amount of soluble silica. The soluble silica of wollastonite extracted by buffer solutions (2% citric acid, N. NaOAc, N. $NH_4OAc$, Petermann solution, 0.1M. EDTA, and Hot water) had high significant relation to silica content in rice straw, but soluble silica extracted N/2 hydrochloric acid solutilon, also, had deep relation to them in rice straw. The adequate solution to extract silica from wollastonites is N/2 hydrochloric acid solution because its extracted silia amount is much higher than other solution (about one hundred times) and can be determined by gravimetric analysis. X-ray diffraction pattern would identify qualitatively purity of wollastonite, and large amount of soluble silica was extracted from wollastonite which was appeared to be weathered.

현(現) 비료(肥料) 공정규격(公定規格)에 보증성분(保證成分)이 미달(未達)되는 규회석(珪灰石)의 비효(肥效) 및 규회석(珪灰石)의 가용(可溶) 규산분석법(珪酸分析法)을 검토(檢討)코져, 가용규산함량(可溶珪酸含量)이 상이(相異)한 수종(數種)의 규회석(珪灰石) 및 규회석(珪灰石)과 가용성규산(可溶性珪酸)을 함유(含有)하지 않은 암석(岩石)의 혼합분말(混合粉末)을 광재(鑛滓)와 대조(對照)하여 벼에 대한 재배시험(栽培試驗)을 수행(遂行)하여 규산(珪酸)의 흡수량(吸收量)을 조사(調査)하고, 공시(供試) 규회석(珪灰石)을 수종(數種)의 완형용액(緩衡溶液)에 침출(浸出)하여 규산가용율(珪酸可溶率)과 식물체(植物體)가 흡수(吸收)한 규산함량(珪酸含量)과 상관관계(相關關係) 및 규회석(珪灰石)의 X-선회절분석(線回折分析)을 하여 다음과 같은 결과(結果)를 얻었다. 1. 가용성(可溶性) 규산함량(珪酸含量)(N/2 HCl)이 높은 규회석(珪灰石)일수록 식물체중의 규산함량 및 흡수량(吸收量)을 증가(增加)시켰다. 2. 광재(鑛滓) 처리구(處理區)의 벼 짚중(中) 규산흡수량(珪酸吸收量)은 가용성(可溶性) 규산함량(珪酸含量)이 4.1%인 규회석분말구(珪灰石粉末區)와 같이 가장 낮았다. 3. 가용성(可溶性) 규산함량(珪酸含量)이 높은 규회석(珪灰石)에 잡석(雜石)을 혼합(混合)하여 시비(施肥)하여도 수도체(水稻體)의 규산함량(珪酸含量)은 동량(同量)의 가용성규산함량(可溶性珪酸含量)을 함유(含有)한 규회석(珪灰石)과 같은 효과이었다. 4. 각종(各種) 완형용액(緩衡溶液)에 침출(浸出)된 가용규산(可溶珪酸)과 짚중(中) 규산함량(珪酸含量) 및 흡수량(吸收量)과는 고도(高度)의 유의성(有意性)이 있는 정(正)의 상관(相關)이었으며 N/2염산(鹽酸) 침출규산(浸出珪酸) 분석법(分析法)도 규회석(珪灰石)의 규산분석법(珪酸分析法)으로써 충분(充分)히 사용(使用)될 수 있는 방법(方法)이었다. 5. 규회석(珪灰石)의 X-선(線) 회절(回折)은 규회석(珪灰石)의 조성(造成)을 찾아낼 수 있으며, 결정(結晶)이 불량(不良)한 규회석(珪灰石) 일수록 가용규산함량(可溶珪酸含量)이 높았다.

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