본 실험은 볍씨에 염화망간의 농도를 2500, 3500 및 4,500ppm을 처리하여 벼의 초기생육에 대한 생육반응, 엽록소 함량, 유리 proline 및 SOD활성변화를 자포니카형인 일품벼를 실험재료로하여 실험한 결과를 요약하면 다음과 같다. 1. 근장은 무처리보다 망간농도 4,500ppm에서는 0.3cm로 망간농도가 증가할수록 뿌리 생장이 억제되었다. 2. 발아율은 망간농도 3,500ppm에서 68%였으나 망간농도 4,500ppm에서 는 43%로 가장 낮았다. 3, 엽록소 함량은 무처리보다 고농도인 4,500ppm 에서 1.16mg으로 가장 낮았다. 4. 유리 proline 함량은 무처리에서는 발아 후 3일과 8일에서 큰 차이를 보이지 않았고 발아 후 3일째 망간농도2,500ppm과 4,500ppm에서 각각 3,286μmole과 5,872μmole로 망간농도가 높아질수록 유리 proline 함량이 증가하였다. 5. SOD 활성은 발아 후 2일째 무처리가 762EU인 것에 비해 망간농도 4,500ppm에서는 1,693EU로 가장 높았다.
Buserties are known to have layer structures with variable C dimension which depended on the nature interlayer catious and contents of water molecular between edge-sharing [MnO6] octabedral layers. Na-, Ca-, Mg-, and Zn-buserties were synthesized in the laboratory and studied for to know the structural states of water molecules and the role of catious in the buserite structures. With lowering the relative humidity(RH), Ca-buserite begins to dehydrate at 27% RH and proceeds further very slowly. Mg- and Zn- buserite also slow dehydration above 2% RH. With gradual ineveasing temperature Ca- and Zn-buserite show abrupt shifting of 10a peak (10a-phare) toward 7a peak. All of 7a-phare are further dehydrated to 5a-phare by further increasing temperature. It suggests that interlayer catious play a crucial role in the dehydration behavious of buserites. Simulation of one-dimensional X-ray diffraction patterns of buserties show that buserites have three layers of water molecules of different types: the very loosely bound and tightly bend waters, instead of two layers that was regarded by previous authers. The very loosely bound water is sited I open space of the interlayer, the loosely bound water is bound on the tightly bound water by hydrogen bond, and the tightly bond water in coodinately bound on the interlayer catious.