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1)  enriching residue
富集渣
1.
The passage describes the current flow of recovering In from indium enriching residue in a company and studies the process according to the variation of raw materials.
文章描述了某企业目前从铟富集渣回收铟的工艺流程,并针对原料的变化进行了工艺研究,对铟浸出、浸出液净化、萃取、反萃液净化等进行了试验,根据试验结果进行了工业化试验,取得了较为明显的效果,回收率由80%提高到了85%,系统产能由每年50 t提高到66 t。
2)  indium-rich slag
铟富集渣
1.
Process design and production transformation from indium-rich slag to refined indium
从铟富集渣到精铟的工艺设计及生产改造
3)  Boron-rich Slag
富硼渣
1.
Study on Feasibility of Decomposition of Boron-rich Slag by Carbonchlorination Reaction;
碳热氯化法分解富硼渣的可行性研究
2.
Influence of process parameters on synthesis of(Ca,Mg)α′-Sialon-AlN-BN powders from boron-rich slag by carbothermal reduction-nitridation
工艺参数对富硼渣合成(Ca,Mg)α′-Sialon-AlN-BN的影响
4)  titanium slag
富钛渣
1.
Preparation of rutile titanium dioxide from titanium slag using molten method;
熔盐法处理富钛渣制备金红石型TiO_2
5)  manganese-rich slag
富锰渣
1.
The process investigation of preparing anhydrous MnCl_2 from manganese-rich slag;
由富锰渣制备无水氯化锰的工艺探索
2.
To reduce electricity consumption, the process of preheating manganese ore and hot charging in rotary kiln is to adopted to produce manganese-rich slag for smelting metal manganese and high carbon ferromanganese.
为降低电耗,提高电炉生产能力,采用回转窑预热锰矿和热装工艺生产富锰渣用于冶炼金属锰和高碳 锰铁。
3.
During the experiment, smelting parameters such as smelting temperature, smelting time, material particle size, slag basicity and manganese-rich slag ratio were adjusted to lead to electricity decrease.
试验采用中频感应炉进行AlMnSiTi合金冶炼试验,并用正交试验法对冶炼相关参数如冶炼温度、冶炼时间、原料粒度、炉渣碱度和富锰渣配比量等进行调整,从而达到节能的目的。
6)  rich Ag residue
富银渣
1.
The ICP-AES method was used to determine directly Ag,Au,Cu,Ni,Sb,Bi,Zn,Al,As,Sn in the rich Ag residue.
试样用HNO3与HCl溶解,ICP-AES法直接测定富银渣中0。
补充资料:干渣渣
1.缺乏水分而呈渣屑的样子。
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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