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1.
super fine zinc powder production technology and equipment
超细锌粉生产技术与设备
2.
Analysis of Several Usual Problems to Running Zinc Dust Ore Smelting Electric Furnace
浅析锌粉矿热电炉生产中的几个问题
3.
Industrial practice for production of lithopone by wet method with zinc bearing waste from flue dust of steel plant
用钢铁厂烟道灰含锌废料湿法生产立德粉工业实践
4.
The amalgamated zinc powder as anode materials used in alkaline zinc manganese dioxide can effectively retrain the gas production from battery itself.
碱性锌锰电池的阳极锌粉,采用汞齐化方法抑制气体的产生具有很好的效果。
5.
Iron dust containing Zn and C can be used as feed materials for production of prereduction pellet and dezincing can be reached effctively throngh using C contained in the dust.
利用高碳高锌含铁粉尘自身所含的碳,可以生产高炉预还原球团,同时可有效脱锌。
6.
Production Practice of Producing Nano-zinc Oxide by Low-zinc Grade Lead-zinc Ore
低锌的铅锌混合矿制取纳米氧化锌的生产实践
7.
Over fifty thousand tons zinc slag is produced in hot zinc plated industry every year.
热镀锌行业每年产生5万余吨的锌渣。
8.
Practice of Producing High-Grade Zinc with High Cl and Mn Zinc Sulfate Solution
高氯、锰硫酸锌溶液生产优质锌实践
9.
production technique of high grade zinc oxide
高级氧化锌生产技术
10.
Similar to or yielding farina.
似淀粉的或产生淀粉的
11.
Mathematical Model for Hot Dip Galvanizing Strips Temperature at Entrance of Zinc Pot
镀锌生产带钢入锌锅温度数学模型的建立
12.
Effects of Mineral Nutrients (Cu, Fe, Ca, Zn) on the Occurrence of Cucumber Powdery Mildew and the Physiological and Biochemical Characteristics of the Host;
矿质元素(铜、铁、钙、锌)对黄瓜白粉病发生及其生理生化特性的影响
13.
While zine metal production is expected to jump by 11 per cent to 4.75m. tons.
锌的生产预计可跃增11%,达475万吨。
14.
Namiyanghuaxin, nano magnesium oxide, nano ceramic material production.
纳米氧化锌、米氧化镁、米陶瓷材料生产。
15.
Case-control Study on Premature Zinc Nutritional Status;
早产新生儿锌营养状况病例对照研究
16.
CORROSION PROBLEM IN HOT-DIP GALVANIZING PROCESS
热浸镀锌板生产过程中的腐蚀与对策
17.
INFLUENCE OF COATING POTATO WITH 58% FUBOL WETTABLE POWDER ON DISEASE RESISTANCE ADN YIELD
58%甲霜灵锰锌可湿性粉剂包衣马铃薯抗病增产效果研究
18.
Thiophene reacted with bromine and zinc to produce 3-bromothiophene via substitution and reduction reaction.
噻吩与溴、锌粉依次发生取代,还原反应生成3-溴噻吩。