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遂川江流域雨量站网密度分析研究
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作者 程雪蓉 冻芳芳 +3 位作者 李国文 李国芳 郭铮 刘林 《水资源研究》 2018年第4期412-417,共6页
确定雨量站网密度是水文规划的重要问题之一,也对开展水资源评价和水文预报至关重要。本文采用抽站法、江西雨量站网密度公式,对遂川江夏溪站流域的雨量站网密度进行研究,揭示了影响面雨量计算精度的主要因素,确定了给定精度要求下区域... 确定雨量站网密度是水文规划的重要问题之一,也对开展水资源评价和水文预报至关重要。本文采用抽站法、江西雨量站网密度公式,对遂川江夏溪站流域的雨量站网密度进行研究,揭示了影响面雨量计算精度的主要因素,确定了给定精度要求下区域的合理雨量站布站的密度,为江西省遂川江流域及其他类似地区的雨量站网布设提供参考。 展开更多
关键词 降雨量 站网密度 抽站法 经验公式 遂川江流域
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The effects of pH, surfactant, ion concentration,coformer, and molecular arrangement on the solubility behavior of myricetin cocrystals
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作者 Shuzhen Ren Mingyu liu +5 位作者 Chao Hong guowen li Jiabin Sun Jianying Wang Lei Zhang Yan Xie 《Acta Pharmaceutica Sinica B》 SCIE CSCD 2019年第1期59-73,共15页
Pharmaceutical cocrystals are a promising technology that can be used to improve the solubility of poor aqueous compounds. The objective of this study was to systematically investigate the solubility of myricetin(MYR)... Pharmaceutical cocrystals are a promising technology that can be used to improve the solubility of poor aqueous compounds. The objective of this study was to systematically investigate the solubility of myricetin(MYR) cocrystals, including their kinetic solubility, thermodynamic solubility, and intrinsic dissolution rate(IDR). The effects of pH, surfactant, ion concentration, and coformers on the cocrystal solubility were evaluated. Furthermore, single crystal structures of MYR, myricetin–isonicotinamide(MYR–INM) and myricetin–caffeine(MYR–CAF) cocrystals were analyzed to discuss the possible reasons for the enhancement of cocrystal solubility from the perspective of the spatial structure.The results indicated that the kinetic solubility of MYR cocrystals was modulated by pH and cocrystal coformer(CCF) ionization in buffer solution, while it primarily depended on the CCF solubility in pure water. In addition, the solubility of MYR cocrystals was increased in a concentration dependent fashion by the surfactant or ion concentration. The thermodynamic solubility of MYR–INM(1:3) cocrystals decreased with the increases of the pH value of the dissolution media. The IDR of MYR cocrystals was faster than that of MYR in the same medium and extremely fast in pH 4.5 buffer. The improved solubility of MYR cocrystals was probably related to the alternate arrangements of MYR and INM/CAF molecules and increased intermolecular distance. The present study provides some references to investigate the solubility behavior of pharmaceutical cocrystals. 展开更多
关键词 COCRYSTAL SOLUBILITY MYRICETIN PH Coformer Crystal structure
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