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1)  In raffinate
萃铟余液
1.
This article introduces the concept of Ga recovery technology from In raffinate by two-stage solvent extraction and electrowinning with hydroximic acid YW-100 with high carbon chain+kerosene+isooctanol and N503+kerosene isooctanol The principle process flowsheet for Ga recovery is presented.
介绍了用高碳链的羟肟酸[YW-100(高)]+煤油+异辛醇及N503+煤油+异辛醇两段溶剂萃取和电积法从萃铟余液中回收镓的工艺设想,提出了回收镓的原则工艺流程。
2)  extractant [iks'træktənt]
萃余液
3)  indium solvent extraction
铟萃取
4)  extraction raffinate
萃余
1.
Based on production practice, various factors affecting the H2O2 content in the extraction raffinate during hydrogenperoxide production by anthraquinone process were summarized.
根据生产实践,总结蒽醌法生产双氧水中影响萃余液中双氧水含量的各种因素,指出萃余液中H2O2超标的危害,找到控制萃余的有效途径。
5)  Solution of displasing indium
铟置换液
6)  coal residue
萃余煤
1.
GC/MS analysis of products from oxidation of two coal residues by hydrogen peroxide;
两种萃余煤的双氧水氧化产物的GC/MS分析
2.
The resulting two coal residues were oxidized in 30% hydrogen peroxide aqueous solution at 60 ℃.
3( P3)标准煤样进行了彻底萃取 ,在 60℃下用 30 %双氧水溶液分别氧化了所得的两种萃余煤 ,用 GC/MS对反应混合物中的水溶液的苯可溶物和水不溶物的 CS2 可溶物进行了分析 。
3.
In order to look for more appending utilization and big molecular structure information of coal,the resulting coal residue was oxidized in 30% hydrogen peroxide aqueous solution at 40 ℃ and 60 ℃.
在40℃和60℃下用30%双氧水溶液氧化得到萃余煤,用GC/MS分析了反应混合物中的水不溶物的CS2可溶物(A)和水溶液的苯可溶物(B),并用FTIR分析了反应混合物中水溶液的苯不溶物(C),以寻求煤的高附加值利用及其大分子结构信息。
补充资料:萃萃
1.聚积貌。 2.崒崒。巍巍高大貌。萃,通"崒"。
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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