说明:双击或选中下面任意单词,将显示该词的音标、读音、翻译等;选中中文或多个词,将显示翻译。
您的位置:首页 -> 句库 -> 再液化
1.
Comparative Analysis on Reliquefaction of BOG in LNG Carrier
液化天然气船蒸发气再液化方法分析
2.
Application of the Re-liquefaction Technology in LNG Carrier
液化天然气船舶再液化技术应用分析
3.
The Economic Analysis of the BOG Reliquefaction on LNG Carrier;
LNG船舶蒸发汽再液化经济性分析
4.
Feasibility of installation of reliquefaction plant onboard LNG carriers
LNG船舶配置再液化装置可行性分析
5.
The possibility of reliquification and water vapour condensation is analysed, and countermeasures are put forward.
分析了再液化或水分冷凝的可能性,提出了防范措施。
6.
Feasibility Study on Electrolysis Regeneration of Spent Electroless Nickel Plating Bath
电解再生化学镀镍老化液可行性研究
7.
Rejuvenation of Spent Electroless Nickel Plating Bath Recovered by Electrochemical Method Combined with Chemical Method
电化学与化学法结合再生化学镀镍老化液
8.
It is impossibls to rehydrate a mucus globule once it has become dehyrated.
一旦已经脱水,粘液不可能再水化。
9.
Study on the Recycling Regenerated Technology for Spent Electroless Nickel Plating Baths;
化学镀镍废液回收处理、再生技术研究
10.
The Remineralization of Enamel Lesions with Application of NaF and Containing Fluoride Calcifying Solution in Vitro;
氟化钠液、矿化液对脱矿牙釉质再矿化作用的体外研究
11.
Influence of operational parameters on boil off gas recondensation process
液化天然气接收站再冷凝工艺优化研究
12.
Optimization of boil-off gas recondensation process in LNG receiving terminal
液化天然气接收站蒸发气体再冷凝工艺的优化
13.
Ageing and Regeneration on Solution of Electroless Plating Composite Ni-P-Diamond
化学镀镍-磷—金刚石镀液的老化与再生研究
14.
Absorption, Regeneration, Resource Reuse and Harmless Utilization of Absorbent in Fe~ⅡEDTA Absorption of Nitric Oxide in Flue Gas;
Fe~ⅡEDTA湿法络合脱硝液的再生及资源化初探
15.
The Regenerating and Disposing Study on the Waste Water of Electroless Glass Fiber;
化学镀玻璃纤维废液的再生与处理研究
16.
A Study of Site-Remanufacturing Technology of LPG Spherical Tanks after Service;
液化石油气球罐现场再制造技术的研究
17.
Regeneration Technique by Surface Strengthening for Stator Seat of Hydraulic Torque Converter
液力变矩器导轮座的表面强化再生技术
18.
Once secreted onto the bronchial surface, mucus is capable of dyhydration but cannot be rehydrated.
一旦分泌到支气管表面,粘液便脱水,而且不能再被水化。