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首页> 外文期刊>Defence Science Journal >Preparation and Characterisation of e-CL-20 by Solvent Evaporation and Precipitation Methods
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Preparation and Characterisation of e-CL-20 by Solvent Evaporation and Precipitation Methods

机译:溶剂蒸发沉淀法制备e-CL-20及其表征

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摘要

6-CL-20 is prepared from raw CL-20 by solvent evaporation and precipitation methods. Experiments were also done using solvent evaporation coupled with in-situ ultrasonication method. Using precipitation method, ε-CL-20 is scaled up to 500 g batch. Raw CL-20 was assigned to a-CL-20. The chemical and polymorphic purity of prepared s-CL-20 was found to be about 98 per cent and > 95 per cent, respectively. e-CL-20 was obtained agglomeration free with well defined geometry in comparison with raw CL-20 and its crystal morphology is dominantly bi-pyramidal or lozenge crystal shapes. The obtained mean particle size of prepared e-CL-20 by solvent evaporation method with and without in-situ ultrasonication and also by precipitation methods is about 30 μm - 40 μm, 150 urn - 200 μm and 150 μm - 300 μm, respectively. The measured true density of prepared e-CL-20 by precipitation method with 100 g and 500 g batch scale using Helium gas pycnometer was 2.038 g/cm~3 and 2.043 g/cm~3, respectively. The lower value of calculated void percentage of ε-CL-20 (0.05-0.29%) indicate better crystal quality. Conclusively, prepared ε-CL20 has high true density with less percentage of voids, less total moisture content and free from agglomeration as compared with the starting raw CL-20 material.
机译:通过溶剂蒸发和沉淀法从原始CL-20制备6-CL-20。还使用溶剂蒸发结合原位超声方法进行了实验。使用沉淀法,将ε-CL-20放大至500 g批次。将原始的CL-20分配给a-CL-20。发现所制备的s-CL-20的化学和多晶型纯度分别为约98%和> 95%。与原始CL-20相比,获得的e-CL-20无团聚,具有明确的几何形状,并且其晶体形态主要为双锥体或菱形晶体形状。通过有和没有原位超声处理的溶剂蒸发法以及通过沉淀法获得的制备的e-CL-20的平均粒径分别为约30μm-40μm,150μm-200μm和150μm-300μm。使用氦气比重瓶,通过沉淀法分别以100 g和500 g批处理规模测量的制备的e-CL-20的真密度分别为2.038 g / cm〜3和2.043 g / cm〜3。 ε-CL-20的计算出的空隙率的较低值(0.05-0.29%)表明晶体质量更好。最终,与原始的CL-20原料相比,制得的ε-CL20具有较高的真实密度,具有较少的空隙率,较少的总水分含量和无团聚。

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