1) active coal ash

活性粉煤炭
2) powdered coal activated carbon

煤质粉状活性炭
1.
The powdered coal activated carbon was dealt with acid and basis respectively to decrease the ash and the iron content,and its performance was tested .
分析了活性炭的发展及用途,对煤质粉状活性炭用酸,碱进行一系列处理以降低其灰分及铁元素等的含量,并测试其各项性能指标,验证煤质粉状活性炭可以通过处理,达到味精用活性炭的标准要求,从而开发煤质粉状活性炭的用途。
3) modified active carbon paste electrode

活性炭粉
1.
A new sodium alizarinsulfonate modified active carbon paste electrode was development for Cu(Ⅱ) determination by means of anodic stripping voltammetry.
将吸附修饰剂茜素红S(SodiumAlizarinsulfonate)的活性炭粉掺入碳糊中制成修饰碳糊电极,以应用于铜离子的阳极溶出法测定,响应电流与铜离子的浓度在1×10-8~3×10-3mol/L范围内呈良好的分段线性关系,最低检出限为5。
4) coal based activated carbon

煤基活性炭
1.
Determination of trace element of coal and coal based activated carbon using FAAS;

FAAS法测定煤及煤基活性炭中微量金属元素
5) coal-based activated carbon

煤基活性炭
1.
Study on the preparation of high specific surface area coal-based activated carbon and its adsorption properties;
高比表面积煤基活性炭的制备及其吸附性能的研究
2.
Study on property of the modified coal-based activated carbon to adsorb Cr(Ⅵ);

改性煤基活性炭对Cr(VI)吸附性能的试验
3.
Removal of inorganic matters from coal-based activated carbon by acid and alkali treatments under microwave heating;
煤基活性炭微波加热酸碱脱灰的研究
6) coal based activated carbon

煤质活性炭
1.
The technical feasibility of photocatalytic regeneration for coal based activated carbon saturated with phenol was investigated in immobilized system by using TiO 2 and Ag TiO 2 as photocatalysts, and using UV lamp ( λ =253 7 nm) as irradiation source.
研究了利用光催化氧化降解反应实现饱和吸附苯酚的煤质活性炭光催化再生的可行性 ,并分析了活性炭的光催化再生机理 。
2.
A coal based activated carbon with higher adsorptivity is produced in the laboratory by using Yangquan anthracite.
选用阳泉矿区的 3种无烟煤为原料 ,通过调整工艺参数 ,在实验室研制出具有较高吸附性能的煤质活性炭产品。
3.
Consideration on problems confronted in service life of activation furnace for production of coal based activated carbon,analysis shown that essentialinfluential factors include: blockage of product duct,improper furnace pre heating and defects in furnace construction.
针对煤质活性炭厂活化炉生产运行中存在的问题 ,分析了影响斯列普活化炉寿命的因素主要是产品道堵塞、烘炉不当以及炉体砌筑缺陷等 ,在实际生产中探讨了解决这些问题的有效途径 ,从而大大延长了活化炉的使用寿命。
补充资料:煤炭国际贸易(见煤炭市场)
煤炭国际贸易(见煤炭市场)
international trade of coal:see coal market
煤炭国际贸易见煤炭市场。(international trade of eoal)
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条