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1.
High-efficiency Treatment of Cooling Wastewater in Coke Tower by Compound Chemicals
复合药剂高效处理焦炭塔吹气冷却废水
2.
Study on the Volatile Property of Organics in Coke Plant Wastewater under the Aerated Stripping Condition.
焦化废水中有机物曝气吹脱条件下的挥发特征
3.
For example, I inhaled air and circulating water cooling tower.
例如空气吸入口及循环水冷却塔等。
4.
A Comment on COG Cooling and Tar and Ammonia Liquor Separating Processes
焦炉煤气冷却及焦油氨水分离工艺的评述
5.
Elevating the temperature of the cooling water or reducing the wall temperature before water quenching can prevent walls from yielding effectively.
提高冷却水温度或降低进水冷焦前塔体温度能有效防止塔体产生塑性变形。
6.
Operation and Management of the Gas Purification Cooling Water in the Coking Plant of Baotou Steel
包钢焦化厂煤气净化系统冷却水的运行及管理
7.
The fuel burner of an open hearth furnace is water cool, as is the valve that regulate the flow of air and waste gases.
平炉的燃料燃烧室是用水冷却的,控制空气和废气的阀也是水冷的。
8.
Application of Surfactant in Stripping and Desorbing Coking Waste Water Containing Ammonia Using Coal Gas
表面活性剂在煤气吹脱解吸焦化含氨废水中的应用
9.
Research and Development on the Reuse Technology of Air-Cooling Wastewater from Glue Fiber Workshop;
粘胶纤维车间空气冷却废水回用技术开发
10.
Modeling of the Cooling Water Outlet Temperature of Closed Cooling Tower
封闭式冷却塔冷却水出口温度的建模
11.
"design for energy fluids: fuel gas, inert gas, cooling water, compressed air and waste water"
能源介质设计(到接点):燃气、保护气、冷却水、压缩空气和废水;
12.
Reasons for Coking in the Tube Joined to the Main Oil Gas Piping Exit at Coke Tower Top and Countermeasures
焦炭塔顶大油气管线出口接管结焦原因及措施
13.
THE STRESS ANALYSIS OF OIL- GAS PIPELINE ON TOP OF THE COKE TOWER IN LARGE-SCALE COKING UNIT
大型焦化装置焦炭塔顶油气管道的受力分析
14.
Study on Coking Plant Wastewater with Coagulation/Iron-Carbon Internal Electrolysis
混凝/铁炭内电解处理焦化废水的研究
15.
Study on the Extinguishing Coke Powder Replacing the Activated Carbon Comprehensive Treatment Coking Waste Water
熄焦粉取代活性炭综合处理焦化废水的研究
16.
MODIFIED COKE DEAL WITH COKE WASTE WATER BY ADSORPTION
焦炭及其改性吸附预处理焦化废水的试验研究
17.
cooling the preform mould by chiller instead of water tower could reduce the cycle time by 10%.
以冰水冷却瓶坯模具比水塔水冷却缩短冷却时间10%
18.
The condensate flows to a forced draft cooling tower3 where about 80 % is evaporated, depending on weather conditions.
凝结水流至一强迫通风冷却塔,约80%被蒸发掉,这要取决于天气条件。