黄芪百合颗粒干法制粒工艺研究
发布时间:2018-07-30 06:44
【摘要】:目的:研究黄芪百合颗粒干法制粒的最佳工艺条件。方法:采用单因素试验考察送料变频、压片变频、制粒变频和干膏粉含水量对颗粒一次成型率的影响,再通过L_(16)(4~5)正交试验优选黄芪百合颗粒干法制粒工艺条件。结果:最佳制粒工艺条件为:送料变频9 Hz、压片变频13 Hz、制粒变频10 Hz、干膏粉含水量2.0%。结论:黄芪百合颗粒干法制粒优化后的工艺稳定、可行,为以后该产品产业化应用提供了可靠依据。
[Abstract]:Objective: to study the optimum conditions for dry granulation of Huangqi lily granules. Methods: single factor test was used to investigate the effects of feed frequency, press frequency conversion, granulation frequency conversion and dry paste water content on the granulation rate. The dry granulation conditions of Huangqi lily granules were optimized by L _ (16) (4 ~ (5) orthogonal test. Results: the optimum granulation technology conditions were as follows: feed frequency conversion 9 Hz, press plate frequency conversion 13 Hz, granulation frequency conversion 10 Hz, dry paste powder water content 2.0. Conclusion: the optimized dry granulation process of Huangqi lily granules is stable and feasible, which provides a reliable basis for the industrial application of this product.
【作者单位】: 甘肃中医药大学/甘肃省高校重大疾病分子医学与中医药防治研究重点实验室;敦煌医学与转化省部共建教育部重点实验室;甘肃省中医方药挖掘与创新转化重点实验室;
【基金】:甘肃省科技支撑计划项目(1306ZC009) 甘肃省陇原人才扶持计划(2014-93-72) 甘肃省中医方药挖掘与创新转化重点实验室开放基金项目(ZYFYZH-KJ-2015-001)
【分类号】:R283.6
本文编号:2154166
[Abstract]:Objective: to study the optimum conditions for dry granulation of Huangqi lily granules. Methods: single factor test was used to investigate the effects of feed frequency, press frequency conversion, granulation frequency conversion and dry paste water content on the granulation rate. The dry granulation conditions of Huangqi lily granules were optimized by L _ (16) (4 ~ (5) orthogonal test. Results: the optimum granulation technology conditions were as follows: feed frequency conversion 9 Hz, press plate frequency conversion 13 Hz, granulation frequency conversion 10 Hz, dry paste powder water content 2.0. Conclusion: the optimized dry granulation process of Huangqi lily granules is stable and feasible, which provides a reliable basis for the industrial application of this product.
【作者单位】: 甘肃中医药大学/甘肃省高校重大疾病分子医学与中医药防治研究重点实验室;敦煌医学与转化省部共建教育部重点实验室;甘肃省中医方药挖掘与创新转化重点实验室;
【基金】:甘肃省科技支撑计划项目(1306ZC009) 甘肃省陇原人才扶持计划(2014-93-72) 甘肃省中医方药挖掘与创新转化重点实验室开放基金项目(ZYFYZH-KJ-2015-001)
【分类号】:R283.6
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