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decoction process相关的网络例句

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与 decoction process 相关的网络例句 [注:此内容来源于网络,仅供参考]

Comparing with conventional air handling process, the liquid desiccant air-conditioning system can dehumidify air without cooling down to its dew point. Meanwhile, counteraction cooling and heating can be avoided, which usually happened in conventional air handling process and led to huge energy waste. In addition, during the air handling process no condensation water separates out of the air in the liquid desiccant air-conditioning system, thus, avoid fungi thrives in moist environment of traditional air handling process. Not only being applied in dehumidification process in summer, the system can also realize humidification process in winter conditions efficiently.

与传统的空气处理方式相比,采用溶液式空气处理方式,具有如下优越性:取消了冷凝水表面,消除了霉菌等生长所需的潮湿环境;既可以对空气除湿处理,又能实现冬季对于空气的加湿处理过程;可方便调节处理后的相对湿度,不再是常规冷凝除湿方式中接近100%相对湿度的出口空气参数;避免了常规空调系统冷凝除湿后温度过低还需再热带来的冷热抵消问题;可以充分利用低品位能源如太阳能和废热实现溶液再生,节省系统电耗。

In the dehydrogenation process of HD process, the temperature set at 580℃ and pressure set at 100Pa is a perfect parameter, it can make the magnet to have high magnetic performance. In the HDDR process experiment, the paper contrast four HDDR process such as C-HDDR V-HDDR V-HD-S-DR and d-HDDR by the anisotropy and magnetic performance of ternary NdFeB magnetic material. The results show that adjusting the parameter of the d-HDDR process can make the anisotropy and magnetic performance of ternary NdFeB magnetic powders to catch up with the hexahydric NdFeBCoZrGa magnetic powders. At the end the paper discusses the betterment of the equipment which produces ternary NdFeB magnetic with the d-HDDR process.

和580℃的脱氢温度相搭配的脱氢气压选择在100Pa左右是理想的工艺参数,这样的搭配使得最终烧结磁体综合磁性能优异;在HDDR制粉工艺实验中,本文对比了C-HDDR、V-HDDR、V-HD-S-DR和d-HDDR四种HDDR工艺对于三元NdFeB合金各向异性和磁性能的影响,得出结论:通过发展d-HDDR工艺,调整工艺参数和控制水平,可以使三元NdFeB合金磁粉的性能达到或接近六元NdFeBCoZrGa合金磁粉的水平,在文章末尾,还对配合使用d-HDDR工艺设备的改造进行了分析。

During the intermissive fed-batch process, the feeding medium was added 10 times separately to make the total amount of C and N sources equal to those added in the batch process, and the yield of maduramicin was improved to 9645 μgmL^(-1), which is 15.7% higher than that obtained during the batch process. In the continuous fed-batch process, the maduramicin yield reaches 10328 μgmL^(-1), which is 6.0% higher than that obtained in the intermissive fed-batch process, and is 29.4% higher than that obtained in the batch process.

在间歇补料分批发酵工艺中,分10次补加培养基,使碳、氮源的总浓度与分批发酵相同,马杜霉素发酵单位提高到9645μgmL^(-1),比分批发酵提高了15.7%;在连续补料分批发酵工艺中,马杜霉素发酵单位可达10328μgmL^(-1),比间歇补料分批发酵提高了6.0%,比分批发酵提高了29.4%。

The results showed high class PbSt2 could be synthesized by this new saponifying process.Compared with metathetical process,the reaction time shortened,liquid-solid ratio and moisture content of filter cake decreased.Powder product could be prepared by one-step process,and particle product by two-step process.For the optimum processing conditions,the reaction temperature and time for one-step process were 65℃ and 10min,the amount of alkali added in the first step was 50%;reaction temperture and time were 65℃ and 10min for the two-step process.

结果表明,用皂化法工艺可得到优等品PbSt2,较复分解工艺,反应时间缩短、液-固比降低、滤饼湿含量比减小,一步式工艺得到粉状产品,二步式工艺得到颗粒状产品;最佳工艺条件为:一步式工艺反应温度65℃,反应时间10min;二步式工艺第一步的加碱量比50%,反应温度65℃,反应时间10min。

In this paper, two assemblies of special test equipments have been designed and fabricated by authors in our laboratory: namely Catalyst Molding Process Analyzer and Catalyst Mechanical Process Tester. These new skills are developed for the dynamic studies on whole mold forming process and crushing process of Fe-Cr WGHS catalyst pellet. Based on the orthogonal experimental design, the effects of some factors during the forming process of solid catalyst, such as predensification proportion, calcination time, calcination temperature and content of graphite on the mechanical strength of catalyst pellets are systematically examined, and the molding conditions have been optimized. Based on the experimental data, the relationship between catalyst density and forming pressure are educed, and the physical significances of some related parameters are described. The parameter of macro scopic elastic moduls has been suggested to character the mechanical properties of molding catalyst. The effects of molding pressure on mechanical properties of catalyst pellets are discussed, and results show that there exists a optimal molding pressure for the ideal mechanical properties: when over-high or over-low pressure is applied, the specific surface area and side crushing strength of catalyst pellets will decreased. The "rebound effect" will be undermined by the unsuitable pressure maintain process, resulting in the apparent decrease of mechanical strength of catalyst pellets.

本研究通过自行设计制造的催化剂模压成型过程分析仪(Catalyst Molding Process Analyzer, CMPA)和催化剂力学性质测试仪(Catalyst Mechanical Properties Tester, CMPT),以Fe-Cr系高温变换催化剂片剂为研究对象,对成型过程和受压破碎过程提供了全过程动态研究的新手段;本研究利用正交实验设计方法考察了固体催化剂成型过程中诸因素(包含预密致比例、煅烧时间、煅烧温度和石墨含量等)对催化剂成型体强度的影响,并对成型条件进行了优化;根据实验结果,关联确定了固体催化剂成型过程中的密度-压力关系式,并对方程中诸因子的物理意义进行了描述;提出了一种利用宏观弹性模量来表征成型催化剂的力学性质的方法;研究讨论了成型压力对催化剂成型体强度性质的影响,结果表明:对于催化剂成型体的强度和比表面性质,成型压力存在着一个最佳值,过高的成型压力会导致比表面积和侧压强度的降低;不适当的成型压力的维持时间会破坏&压力回弹&作用,造成催化剂成型体的机械强度明显降低。

A integrated mathematical model was established in accordance with the process of metallurgical production and it was composed of the process models and the raw materials distribution models. The process models include the sintering process model, the pelleting process model and the iron making process model.

数学模型分为6个子模型,其中工艺模型有烧结机优化模型、竖炉优化模型、高炉优化模型,物料配置模型有铁精粉优化配置模型,烧结矿优化配置模型和球团矿优化配置模型,模型之间交互的数据流为原料或产品的物料流量、物料性能、价格及原料性能的影子价格。

Objective: To study the process in vivo of the components in the precipitation of Xiexin decoction.

中文摘要:目的:研究泻心汤配伍沉淀物的大鼠体内过程。

Abjective: The UF process of model systerm of Huanglianjiedu decoction is researched in the study to lay a foundation for the exploring of the substance foudation of membrane fouling, and for the the optimal design of membrane technology in the production of chinese drugs preparation.

中文摘要:目的:以黄连解毒汤模拟体系为研究对象,探讨中药水提液超滤过程污染机制,为中药膜分离技术应用系统的优化设计奠定基础。

The boiling process takes from 30-60 minutes and the resulting decoction will be consumed several times during the day.

沸腾过程需要从30-60分钟,并由此产生的汤将消耗数次在白天进行。

To meet this demand,this article,through analyzing the current situation of preparation research in hospitals,discusses the process of antivirus preparation and common Dreparation of western medicine,Chinese traditional medicine preparation,the new—typed Chinese traditional c0Hlmon medicine preparation,the processing of Chinese traditional medicine,Chinese traditional medicine decoction preparation and the architectural combination,architectural plane and design requirement for the preparation loom.

为适应这种需要,本文根据医院目前开展的制剂情况,对西药灭菌制剂、普通制剂、中药传统制剂、中药新型普通制剂、中药加工、中药汤剂制剂的工艺流程、建筑组合、建筑平面、设计要求进行了论述,并提出了灵活适用的设计方案,可供医院与设计单位参考。摘要:随着医院管理体制与医药分离改革的发展,开展中西药制剂将成为医院增收节支、持续发展的重要手段。

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