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1)  sulfur capacity
硫容
1.
Study on the measurement of the sulfur capacity and the measurement conditions of the nanocrystalline ZnO desulfurizer;
纳米ZnO脱硫剂硫容的测定及其测定条件的研究
2.
Zinc oxide desulfurizer is less steady at moderate or high temperature and its sulfur capacity is low at low temperature.
针对氧化锌脱硫剂在中温、高温脱硫时稳定性较差、低温硫容低、再生温度高导致脱硫活性下降、脱硫过程未实现无害化等问题,提出了研制纳米氧化锌脱硫剂是提高氧化锌脱硫技术水平的研究方向。
3.
The sulfur capacity of desulfurizer was inc.
结果表明 :活性炭载体在适当条件下用水蒸气预处理 ,其脱硫性能明显优于活性炭未处理制备的脱硫剂 ;随着非贵金属含量的增加 ,脱硫剂的硫容增加 ,当非贵金属质量分数增加5 。
2)  sulphur capacity
硫容量
1.
High Sulphur Capacity Slag Series Containing BaO for Ultra-Low Sulphur Steel Refining;
硫容量含BaO超低硫钢精炼脱硫渣系
2.
The sulphur capacity of CaO-SiO2-Al2O3-MgO-FetO slags with fixed slag composition,at different temperature and under different gas pressure was measured using gas-slag equilibrium techniques.
采用气-渣平衡法,用铂坩埚作反应容器,CO-CO2-SO2-N2混合气体提供体系的氧分压和硫分压,测定了一定炉渣成分,不同温度和气氛条件下CaO-SiO2-Al2O3-MgO-FetO五元渣系的硫容量。
3.
In this presentation,the effects of LF-slag oxygenation,slag basicity,consumption per ton on the slag sulphur capacity were analyzed and discussed in the process of LF refining treatment.
本文结合生产试验对LF炉精炼工艺中的炉渣氧化性控制,吨钢渣料消耗、炉渣碱度对炉渣硫容量的影响等问题进行分析与探讨,以期在此基础上对本厂LF精炼炉渣的改进提供指导,达到精炼目的,满足连铸生产对钢水质量的要求。
3)  sulphide capacity
硫容量
1.
Calculation and analysis of sulphide capacity and sulphur partition ratio;
硫容量和硫分配比的计算及分析
2.
The sulphide capacity of B.
采用气-渣平衡法测定了1 500℃时含碱高炉渣的硫容量。
3.
Heat equilibrium experiments of sulphide capacity were carried out in 500 g Mo furnace.
在 5 0 0g钼丝炉内进行了硫容量热平衡试验研究 ,试验结果表明 ,相同摩尔数的BaO脱硫能力大于CaO ,其中以CaO SiO2 MgO Al2 O3 CaF2 系A1为顶渣 (MI=0 31,C (S) =4 2 ,L(S) =182 5 )、CaO BaO CaF2 系B2为喂线渣的A1+B2方案 (C (S) =83,L (S) =2 5 9 17)最适于极低硫钢精炼脱硫 ,喂线渣中BaO的“最佳”配比为 :I =w(BaO) /w (CaO) =5 /
4)  container loading sulfur-bearing material
含硫容器
5)  sulfide capacity
硫容量
1.
In order to determine desulfurising ability of the top-slag in LF refining process, the variation of sulfide capacity with composition in the slag system CaO-SiO_2-Al_2O_3-MgO (5%) at 1 627 ℃ was illustrated by means of calculating the optical basicity.
为了确定LF精炼过程中顶渣的脱硫能力,通过对光学碱度的计算,得出了1627℃时CaO SiO2 Al2O3 MgO(5%)渣系组成与硫容量的关系图。
2.
The variation of sulfide capacity with composition in the slag system CaO-SiO2-Al2O3-MgO(10%) at 1 873 K was calculated by using the optical basicity.
利用光学碱度计算了1873 K时CaO-Si O2-Al2O3-MgO(10%)四元精炼渣系的硫容量,从理论上分析了精炼高级别管线钢超低硫控制的工艺条件,绘制出精炼渣硫容量、渣中硫、钢中溶解氧与钢中硫的关系图。
3.
The sulfide capacity(CS) and equilibrium distribution ratio of sulphur(LS) are important indicators to measure desulfurization capacity of slag system.
硫容量和硫平衡分配比是衡量炼钢过程中渣系脱硫能力的重要指标。
6)  breakthrough sulfur capacity
穿透硫容
1.
) Rare earth oxide was doped in ZnO based desulfurizer, the breakthrough sulfur capacity could increase 4.
研究了在氧化锌基复合脱硫剂中掺入不同含量的稀土对脱硫效果的影响,结果表明:当掺入5%(质量分数)含量的La2O3时,穿透硫容能提高4。
补充资料:5-硫基-3-苯基-2-硫-1,3,4-硫代二唑,钾盐
CAS: 17654-88-5
分子式: C8H6N2S3
中文名称: 铋试剂II;3-苯基-1,3,4-噻二唑亚基-2,5-二硫酮;5-硫基-3-苯基-2-硫-1,3,4-硫代二唑,钾盐;铋试剂 II

英文名称: BismuthiolII;5-Mercapto-3-phenyl-2-thio-1,3,4-thiodiazole, potassium salt;4-thiadiazole-2-thione, 5-mercapto-3-phenyl-2h-3;4-thiadiazolidine-2,5-dithione, 3-phenyl-3;3-phenylbismuthol;5-mercapto-3-phenyl-2h-1,3,4-thiadiazole-2-thione;3,4-Thiadiazolidine-2,5-dithione, 3-phenyl-1
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