1)  slurry+phosphate rock
矿浆+磷矿
2)  pulp
矿浆
1.
Study on maximization of transportation capacity of concentrate pulp pipeline in Wengfu Phosphate Mine and its implementation;
瓮福磷矿精矿浆管道输送能力最大化的研究和实施
2.
Study on flotation pulp's magnetization effect and mechanism;
浮选矿浆的磁化处理效应和机理研究
3.
Pulp settlement areas of tailing samples from Nanfen Concentration Plant and Waitoushan Iron Mine are calculated using various classic methods of pulp settlement theory, and laboratory dynamic thickening tests are carried out.
运用矿浆沉降理论中的各种经典方法,对本溪钢铁公司南芬选厂及歪头山铁矿的尾矿样分别进行了矿浆沉降面积计算,同时进行了实验室动态浓缩试验。
3)  mineral slurry
矿浆
1.
The principal theory of particle size measurement for mineral slurry by ultrasonic techniques is introduced.
提出了在矿砂粒径尺寸级配情况下的不同粒径时的矿砂含量的公式,并由此得到了超声波衰减与矿浆中固体颗粒浓度、粒度之间的关系。
4)  Ore Pulp
矿浆
1.
Applications of Surfactant in the Pretreatment of Ore Pulp Filtration;
在矿浆过滤预处理中表面活性剂的应用
2.
Numerical simulation of the thermal process in a new type of aluminum oxide ore pulp calcination furnace;
新型氧化铝矿浆烧成炉内热过程的数值模拟
3.
According to the special performance of the tiny ore pulp, the new type composite filter has been deve loped which is more suitable for the high pressure filtration of tiny particle pulp.
根据微细矿浆的性质特点 ,开发出了一种更加适宜于高压过滤机处理微细颗粒浆体的新型复合滤布 ,其表面光滑且疏水 (接触角 10 0°~ 135°) ,孔隙率大于 70 % ,孔径范围可控制在 0 。
5)  slurry
矿浆
1.
The abrasion of 3 types of steel pipe's wall(i e A3,45 # and 16Mn) at different pH, flow speeds and slurry's particle sizes are investigated.
研究了在不同pH值、流速、矿浆颗粒粒度条件下铁精矿对A3、45 # 和 16Mn 3种钢材管壁的磨蚀情况 ,结果表明 ,16Mn和 45 # 钢材管道具有较好的耐磨性能 ,磨蚀率较A3钢低 ,在管道设计时应优先采用 ;颗粒粒径对管壁磨蚀具有显著影响 ,铁精矿颗粒 -0 。
2.
Studying of Quantitative analysis of contaminant transport of slurry, predicating the transport process under different engineering conditions have important meanings for protecting of the environment and functioning of the tailing dam.
定量分析尾矿库内矿浆污染物迁移规律,预测不同工况下的污染物迁移过程,对进行污染物防治的规划、设计、施工、尾矿坝正常运行、保护矿区环境具有重要意义。
6)  sludge
矿浆
参考词条
补充资料:部分酸化磷矿肥
分子式:
CAS号:

性质:又称部分酸化磷矿肥。用相当于生产过磷酸钙消耗硫酸量的10%~60%的硫酸分解磷矿,或用相当于生产重过磷酸钙消耗磷酸量的10%~60%的磷酸分解磷矿制得的磷肥,称为部分酸化磷矿肥。在酸性土壤上的肥效相当于过磷酸钙或重过磷酸钙的80%~100%。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。