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1)  head formation
生泡
2)  bubble formation
气泡生成
1.
The dynamics of bubble formation through aeration with liquid cross-flow and its numerical simulation;
横向流中曝气气泡生成动力学及模拟研究
2.
Laser image measurement of the single bubble formation in non-newtonian fluids;
非牛顿流体中单气泡生成的激光影像测量
3.
Numerical simulation of bubble formation in liquid-solid suspensions;
液固悬浮液中气泡生成的数值模拟
3)  biological foam
生物泡沫
1.
Sludge bulking and biological foams of activated sludge process are usual problem in the operation of wastewater treatment plant.
污泥膨胀和生物泡沫现象是众多泥法污水厂常见的运行难题。
2.
Control of biological foaming by adding H2O2 in an activated sludge Sewage t reatment plant is introduced.
投加低浓度H2O2可控制污水处理厂生物泡沫的产生,实验数据表明,投加低浓度H2O2能氧化部分生物残渣和消除生物代谢过程产生的毒素,并能改善菌胶团菌生活的微环境,促进菌胶团菌的生长。
4)  Kyropoulos method
泡生法
1.
With Yb3+ as sensitizer for Ho3+,monoclinic-like Ho∶Yb∶KGW crystal has been grown by the Kyropoulos method,which is identified as β-Ho∶Yb∶KGW by X-ray diffractometer(XRD).
以Yb3+作为Ho3+的敏化剂,采用泡生法生长出了单斜晶系的Ho∶Yb∶KGW晶体。
2.
The growth principle,technics and points of Kyropoulos method for producing the high quality colourless sapphire crystal are introduced in detail.
详细介绍了泡生法生长高质量无色蓝宝石的原理、生长工艺和技术要点,讨论了高质量无色蓝宝石应用于衬底材料和发光二极管(LED)中的广泛前景。
3.
In this paper,KYb(WO_4)_2(KYbW) crystal has been grown by Kyropoulos method,and the craft parameters were obtained,cooling growth at(0.
对顶部籽晶提拉法(TSSG)进行了改进,采用泡生法生长KYb(WO4)2晶体(简称KYbW),以0。
5)  pickle processing
泡菜生产
1.
The primary study on the application of HACCP system in pickle processing was discussed in brief in this paper, in order to provide reference to the later application of HACCP system in pickle processing.
对HACCP在泡菜生产中的应用进行了探讨,以期为HACCP体系在泡菜生产中的建立和应用提供理论依据。
2.
This dissertation mainly discusses the application of HACCP system in the production of pickle, and analyzes the possible hazards during pickle processing.
主要探讨了HACCP体系在泡菜生产中的应用,对泡菜生产过程中各个环节可能造成的危害进行分析,进而确定关键控制点、监测方法和纠偏措施,从而为HACCP体系在泡菜生产中的应用提供理论依据。
6)  bubble growth
气泡生长
补充资料:生物泡沫塑料

巴西坎皮纳斯大学最近开发出一种新的环保材料,可取代现在的泡沫塑料,以消除白色污染的祸患。这种材料称为“生物泡沫塑料”,它主要是由天然的可循环物质制成。其中70%的成分是由粟米、大豆和蓖麻等多种油料制品提炼而成,石油提取物仅占30%。

该大学化学研究人员说,生物泡沫塑料可以用于轻型包装材料,由于它能够在大自然中迅速进行生物降解,是取代泡沫塑料的佳品。生物泡沫塑料与历时数百年也不会降解的泡沫塑料不同,它可在不到两个月内化解在大自然中,而且其生产成本低,不会产生有毒物质。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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