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1)  BBD dehydration
BBD脱湿
2)  BBD method
BBD法
1.
The experiment condition for microwave-assisted extraction of total falconoid from Diospyros kaki leaves was optimized with BBD method.
本文介绍一种广泛用于科学研究和生产实践中的实验条件多元优化方法——响应表面优化法(RSM),重点讨论其中应用最多的BBD法(Box-Behnken design),并通过详细论述应用BBD法优化微波辅助提取柿叶中总黄酮条件的过程,从实验设计、数据统计处理和分析对BBD法应用于天然产物成分提取进行系统的介绍。
3)  dehydration [英][,di:hai'dreiʃən]  [美][,dihaɪ'dreʃən]
脱湿
1.
Wet acetylene dehydration by polysulfone hollow fiber membrane;
聚砜中空纤维膜乙炔脱湿的研究
2.
The progress of membrane gas dehydration technology is presented.
介绍了膜法气体脱湿的主要工艺研究和应用进展,简单分析了各种工艺的优缺点,重点回顾了国内外膜法空气脱湿和膜法天然气脱湿的发展历史和现状,展望了膜法气体脱湿的应用前景。
3.
The unconfined compression strength of the undisturbed and remolded specimens are studied in the conditions of the dehydration or adding moisture content.
针对原状土样和重塑土样在脱湿或加湿过程中无侧限抗压强度的变化进行了研究。
4)  Dewetting [di:'wetiŋ]
脱湿
1.
Application of Dewetting Supply-Air in Blast Furnace Blowing;
脱湿技术在高炉鼓风中的应用
2.
For the contradiction of energy increasing and mechanical properties depressing of nitramine propellants,the cause of dewetting produced in the nitramine propellants was described.
针对硝胺推进剂能量提高与力学性能降低的矛盾,阐述了硝胺推进剂产生"脱湿"现象的原因,并根据键合剂的设计原则及相关技术,提出了聚醚环酰胺类键合剂的分子设计和合成路线,为硝胺推进剂键合剂的研究提供一条新途径。
3.
The cause of "dewetting" phenomenon produced by nitramine propellant and the methods of improving mechanical property were summarized.
综述了硝胺推进剂产生"脱湿"现象的原因及改善力学性能的方法,介绍了目前国内外用于改善硝胺推进剂力学性能的三种聚合物键合剂的作用机理和效果。
5)  dehumidification ['di:hju:,midifi'keiʃən]
脱湿
1.
Blast dehumidification of blast furnace can reduce energy consumption of smelting procedure of blast furnace and stabilize operating condition of blast furnace smelting.
进行高炉鼓风脱湿,可以降低高炉冶炼的工序能耗,稳定高炉冶炼工况,是企业节能降耗的重要途径。
2.
Dehumidification by membrane technology possesses many advantages, such as low investment, low energy consumption, convenient usage and flexible operation etc.
气体膜法脱湿工艺是近年来发展起来的新型脱湿技术,其在天然气和空气脱湿领域已有成功的应用。
6)  dehumidifying [英][,di:hju:'midifai]  [美][,dihju'mɪdə,faɪ]
脱湿
1.
Modeling and simulation of condensation and dehumidifying of high humidity industrial exhaust gases;
高湿度工业废气冷凝脱湿模型研究与数值模拟
补充资料:BBD
分子式:C13H10N4O3
分子量:270.25
CAS号:18378-20-6

性质:熔点206-209°C。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条