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1)  F model compound glass additive
F型复合玻璃添加剂
1.
The refining effects of the F model compound glass additive in white glass have been studied in our workshop.
本文采用在生产车间一条线上做试验,试制F型复合玻璃添加剂在高白料中的澄清效果。
2)  glass additive
玻璃添加剂
3)  glass powder additive
玻璃粉添加剂
4)  composite additive
复合添加剂
1.
Study on lead-and cadmium-free composite additive for electroless nickel plating;
无铅无镉化学镀镍复合添加剂的研究
2.
In this paper,with respect to the low reactive activity of ludwigite from Wengquangou for the manufacture of borax by the CO2-soda process,a kind of composite additive was employed for the calcination of ludwigite.
针对碳碱法加工翁泉沟硼铁矿生产硼砂过程中存在的矿石活性低等问题,通过添加复合添加剂对硼铁矿进行活化焙烧,用常压碱解率评价焙烧矿的反应活性,分别考察了复合添加剂用量、焙烧温度以及焙烧时间对翁泉沟硼铁矿反应活性的影响。
3.
The results indicate that the composite additive is more excellent than the monocomponent additive in grinding and strength enhancement,the composite additive not only can increase the fineness of slag,improve particle size distribution,but also increase the strength of sla.
选择多元醇类阴离子表面活性剂分别与碱性激发剂和高效磺酸盐减水剂进行复合,研究了复合添加剂对矿渣粉体和矿渣-水泥浆体的物理化学性质的影响。
5)  composite additives
复合添加剂
1.
Influence of composite additives on performance of PbO_2 electrode and exploitation of its mechanism;
复合添加剂对PbO_2电极性能影响及机理探讨
2.
The results indicat that composite additives can greatly increase the permeate flux of the substrate membrane,the permeate flux decrease when the c.
结果表明,采用复合添加剂可以大大提高基膜的水通量;且水通量随铸膜液中聚砜含量的增加而减小,随复合添加剂含量的增加而增加,随芯液中溶剂含量的增加而下降。
3.
Objective To study the influence of composite additives on sintering temperature and microstructure of nano-zirconia toughened alumina ceramics.
目的探讨复合添加剂对烧结纳米氧化锆增韧氧化铝陶瓷烧结温度和显微结构的影响。
6)  compound additives
复合添加剂
1.
Experimental on water mist contained compound additives extinguish kerosene pool fire;
含复合添加剂细水雾熄灭煤油池火实验
2.
The influence of oxides and compound additives on the stability of CaSO_4 at high temperature;
氧化物及复合添加剂对硫酸钙高温稳定性的影响
3.
Research on briquette compound additives at high temperature;
高温型煤复合添加剂的研究
补充资料:复合微量元素添加剂
分子式:
分子量:
CAS号:

性质:又名禽畜生长素。分禽用和畜用两种,其微量元素含量误差不大于0.5%。可为禽畜补充在天然饲料中不能满足其需要的微量元素。可促进禽畜的新陈代谢,增强抗病力,生长率可提高10%以上。用于禽畜日粮或饲料厂生产配(混)合饲料。按一定比例,将Cu、Fe、Zn、Mn等盐类混合于CaCO3载体中,经精制而得。

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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