多孔質ケイ酸カルシウム水和物のケイ酸資材としての評価 : 多孔質ケイ酸カルシウム水和物の農業利用 (第1報)
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概要
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Laboratory and pot culture experiments of rice plants were conducted to evaluate the availability of silicoa from the industrial wastes of autoclaved light concrete (PS : porous hydrate calcium silicate) to rice plants (Oryza sativa L. cv. Kokoromachi and Satohonami) in comparison with seven commercial slag silicate fertilizers (SS). The amounts of water soluble silicon of PS and SS were 0.9 g kg^<-1> and 0.1-1.2 g kg^<-1>, respectively. The silica concentration of soil solution of the incubated, submerged non-allophanic Andosol treated by PS was increased about 2.3 times compared to that of non-treated soil, whereas the silica concentration of the same soil treated by SS was only increased 1.0-1.6 times. The silica nutrition of rice plants was measured by potting experiments both at the 9th leaf-stage and harvesting stage. At the 9th leaf-stage, the silica concentration of the rice shoots grown on Andosol treated by PS (150 g kg^<-1>) was about 70 g kg^<-1>, which was the highest among the treatments. At the same time, the silica concentration of soil solution with PS treatment was also higher than those with SS treatment. At harvesting time, the silica concentration of leaf blade with PS treatment was 87 g kg^<-1>, 28% higher than that with non-treated soil. But, the silica concentration of leaf blade with soil treated by SS was only 0-16% higher than that with the non-treated soil. In Alluvial soil, the effect of PS on the silica nutrition in rice plants was relatively enhanced compared to that in Andosol. From the above results, it is concluded that porous hydrate calcium silicate is highly feasible as an effective silicate material in improving the silica nutrition of rice plants.
- 社団法人日本土壌肥料学会の論文
- 1998-12-05
著者
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山本 晶子
宮城県本吉農業改良普及センター
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三枝 正彦
東北大学農学部附属農場
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渋谷 暁一
東北大学大学院農学研究科附属複合生態フィールド教育研究センター
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渋谷 暁一
東北大学農学研究科附属複合生態フィールド教育研究センター
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山本 晶子
東北大学農学部附属農場
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三枝 正彦
東北大学農学研究科栽培植物環境科学講座
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