This article reviews the progress made in CO2 separation and capture research and engineering. Various technologies, such as absorption, adsorption, and membrane separation, are thoroughly discussed. New concepts such...This article reviews the progress made in CO2 separation and capture research and engineering. Various technologies, such as absorption, adsorption, and membrane separation, are thoroughly discussed. New concepts such as chemical-looping combustion and hydrate-based separation are also introduced briefly. Future directions are suggested. Sequestration methods, such as forestation, ocean fertilization and mineral carbonation techniques are also covered. Underground injection and direct ocean dump are not covered.展开更多
目的考察11种大孔吸附树脂对肿节风总黄酮的吸附分离性能。方法采用静态吸附分离法确定适合的大孔吸附树脂;采用动态吸附分离法确定分离条件。以总黄酮吸附量、总黄酮质量分数和回收率为考察指标,采用紫外分光光度法测定总黄酮。结果HPD...目的考察11种大孔吸附树脂对肿节风总黄酮的吸附分离性能。方法采用静态吸附分离法确定适合的大孔吸附树脂;采用动态吸附分离法确定分离条件。以总黄酮吸附量、总黄酮质量分数和回收率为考察指标,采用紫外分光光度法测定总黄酮。结果HPD 400大孔吸附树脂对肿节风总黄酮有良好的吸附分离性能,其分离肿节风总黄酮的工艺条件为:肿节风总黄酮上样质量浓度为10 m g/mL,肿节风总黄酮最大吸附量为9.5 m g/mL,吸附体积流量为2.5 mL/m in,洗脱剂为70%乙醇,洗脱剂用量为3倍柱体积,树脂可重复使用3次。结论采用HPD 400大孔吸附树脂吸附分离肿节风总黄酮简便有效,总黄酮回收率为85%左右。展开更多
文摘This article reviews the progress made in CO2 separation and capture research and engineering. Various technologies, such as absorption, adsorption, and membrane separation, are thoroughly discussed. New concepts such as chemical-looping combustion and hydrate-based separation are also introduced briefly. Future directions are suggested. Sequestration methods, such as forestation, ocean fertilization and mineral carbonation techniques are also covered. Underground injection and direct ocean dump are not covered.
文摘目的考察11种大孔吸附树脂对肿节风总黄酮的吸附分离性能。方法采用静态吸附分离法确定适合的大孔吸附树脂;采用动态吸附分离法确定分离条件。以总黄酮吸附量、总黄酮质量分数和回收率为考察指标,采用紫外分光光度法测定总黄酮。结果HPD 400大孔吸附树脂对肿节风总黄酮有良好的吸附分离性能,其分离肿节风总黄酮的工艺条件为:肿节风总黄酮上样质量浓度为10 m g/mL,肿节风总黄酮最大吸附量为9.5 m g/mL,吸附体积流量为2.5 mL/m in,洗脱剂为70%乙醇,洗脱剂用量为3倍柱体积,树脂可重复使用3次。结论采用HPD 400大孔吸附树脂吸附分离肿节风总黄酮简便有效,总黄酮回收率为85%左右。