硫酸铅
- 网络Lead sulfate;lead sulphate
-
从铋冶炼浸渣制取三盐基硫酸铅的研究
Study on preparation tribasic lead sulphate from bismuth hydrometallurgy waste residue
-
而硫酸铅的阳极氧化反应则是众所周知的。
The anodic oxidation of lead sulphate is well known .
-
研究了样品的密度,内部纳米铅或硫酸铅颗粒的大小、形状各因素与高能X射线和β射线衰减性能之间的关系。
The relations between density , the size and shape of inner particles and high-energy X-and β - radiation attenuation property were researched .
-
从含铅废渣中生产通明g酸铅进行研究,得到了硫酸铅转化为碳酸铅的最佳工艺条件,制得了团组gMtf;
Study on the production of lead stearate from sediment containing lead , the optimal technical conditions of converting lead sulfate to lead carbonate are obtained .
-
测得了各样品对高能X射线和β射线的屏蔽率、样品中纳米铅和纳米硫酸铅颗粒的大小和形状。
The shielding rate of high-energy X-and β - radiation , the size of nanometer lead or nanometer lead sulphate in the samples , were measured .
-
首先,制备PVC混炼片,以硬脂酸钙为润滑剂、DOP为增塑剂、三盐基性硫酸铅为稳定剂。
First , preparation of PVC mixing films , acid calcium as lubricant , DOP as plasticizer , three base lead sulfate as stabilizer .
-
结果表明,三盐基硫酸铅、二盐基亚磷酸铅、硬脂酸铅和柠檬酸对发泡剂AC都有较强的活化作用,属于加速型发泡助剂;
The results showed that tribasic lead sulfate , dibasic lead phosphite , lead stearate and citric acid were the fast secondary blowing agents and had a stronger activating effect on blowing agent AC ;
-
其中,溶液中可检测出的元素包括Pb、As、Fe、Cr等多种,既有如硫酸铅这样的无机物,也包括油类等有机物。
Among them , the solution can detect elements including Pb , As , Fe , Cr and other , both inorganic substances such as lead sulfate , including oil and other organic matter . 2 .
-
对四碱式硫酸铅(4BS)的结构、电化学性质以及电池正极活性物质的形成机理进行了阐述。
The structure , electrochemical performance and the mechanism of formation of positive active material of tetrabasic lead sulfate ( 4BS ) were elaborated .
-
铅酸蓄电池正极材料硫酸铅的研究
Study on lead sulfate as positive active material for lead-acid batteries
-
由方铅矿精矿直接制备硫酸铅粉末材料的方法
Method of direct preparation of lead sulfate powders from galena concentrates
-
研究了合成条件对硫酸铅产品纯度和粒度的影响。
The conditions of synthesis the lead sulfate are studied .
-
铅上阳极硫酸铅膜的还原过程
Reduction of Anodic Lead Sulfate Film on Lead in Sulfuric Acid Solution
-
用方铅矿精矿直接湿法制备电池材料硫酸铅
Preparation of PbSO_4 Used as Lead-Acid Batteries From Galena Concentrate
-
从烟灰铅渣中提取三盐基硫酸铅的生产实践
The Production Practice of Tribasic Lead Sulfate from Flue Dust Lead Slag
-
硫酸铅产品质量影响因素的研究
Research on the Factors Affecting the Quality of Lead Sulfate
-
阳极二氧化铅膜的阴极还原为硫酸铅的机理
The Mechanism of the Cathodic Reduction of Anodic PbO _2 Film to PbSO_4
-
用脱碲铅渣制备三盐基硫酸铅的研究
Study on Preparation of tribasic lead sulfate from lead slag formed during tellurium
-
介绍了三盐基硫酸铅废渣回收生产工艺。
The recovery processes of waste residue of tribasic lead sulfate were introduced .
-
湿法回收废铅蓄电池制备三碱式硫酸铅
Recovery of lead from waste lead accumulator and preparation of tribasic lead sulfate
-
三盐基硫酸铅的生产工艺条件研究
Study on the Production Process of Tribasic Lead Sulfate
-
利用玻壳厂铅尘生产三盐基硫酸铅的研究
Study on production of tribasic lead sulfate from lead dust of glass shell plant
-
粗铅、还原铅生产硫酸铅新工艺
New Technology on the Production of Lead Sulfate from Crude Lead and Reducing Lead
-
合成的产品三碱式硫酸铅质量符合原化工部行业标准(HG2340&1992)。
The quality of the tribasic lead sulfate synthesized can meet the enterprise standard ( HG2340-1992 ) .
-
聚氯乙烯&稀土改性三盐基性硫酸铅稳定体系热降解特性的研究
A Study of the Heat Degradation Characteristics of PVC Rare Earth Modified Tribasic Lead Sulfate Stabilizing System
-
利用含铅粉尘制备硫酸铅及硝酸铅的研究
Dust explosion study on the production of lead sulfate and lead nitrate from waste powder containing lead
-
在本研究中,以经过浮选处理的方铅矿精矿为原料,采用湿法直接制备铅酸电池用材料硫酸铅。
It is researched to obtaining directly PbSO_4 used as lead-acid batteries by processing the flotation-galena concentrate .
-
介绍了以铜烟尘酸浸渣为原料,采用转化、沉淀、调变的方法生产三盐基硫酸铅的实验室试验。
Acid residue of copper dust is used as raw material for the production of tribasic lead sulfate .
-
制备了不同铅含量、不同树脂类型的树脂/纳米铅和树脂/纳米硫酸铅防高能辐射复合材料。
High-energy radiation protection composites were prepared , which contained different quantity of lead and different category of resin .
-
从方铅矿精矿和软锰矿直接制备硫酸铅和四氧化三锰材料的研究-0.5mm锰矿选矿研究与生产实践
Investigations of Preparating Lead-sulfate and Mangano-manganic-oxide from Galena Concentrate and Pyrolusit ; Dressing Practice of - 0.5 mm Manganese Ore