Transactions of Nonferrous Metals Society of China The Chinese Journal of Nonferrous Metals

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中国有色金属学报

ZHONGGUO YOUSEJINSHU XUEBAO

第11卷    第4期    总第43期    2001年8月

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文章编号:  1004-0609(2001)04-0707-05
苯二氧基二乙酸的相转移催化合成及其浮选性能
张剑锋1,2,胡岳华2,王淀佐2

(1. 中南大学 化学化工学院, 长沙 410083;
2. 中南大学 矿物工程系, 长沙 410083
)

摘 要:  用三丁基乙基硫酸乙酯铵作相转移催化剂,以苯二酚、一氯乙酸和氢氧化钠为原料,用三氯甲烷作溶剂,合成了3种不同结构的苯二氧基二乙酸。分别以油酸钠、十二胺和丁黄药为浮选捕收剂,考察了苯二氧基二乙酸对方解石、一水硬铝石和黄铁矿的抑制性能。结果表明,苯二氧基二乙酸的抑制能力较强,对上述3种矿物的抑制性能大小顺序为:方解石>一水硬铝石>黄铁矿,可作为方解石等含钙、镁脉石矿物的有效抑制剂。 从基团电负性、浮选剂特性指数和亲憎平衡值等方面,对苯二氧基二乙酸的抑制性能进行了讨论。用MINDO 3方法对3种药剂进行了量化计算,量化计算结果表明,它们的抑制能力大小顺序为:对位>间位>邻位;它们均以负一价离子的形式与矿物中的金属离子发生作用,未离解的羧基则难以发生离解,从而保证药剂与矿物作用后的亲水性,使矿物得到抑制。

 

关键字:   苯二氧基二乙酸; 相转移催化; 浮选性能;抑制

Phase transfer catalyzed synthesis and
 flotation performance of biphenoxyl bi(acetic acid)
ZHANG Jian-feng1,, HU Yue-hua2, WANG Dian-zuo2

1. School of Chemistry and Chemical Engineering,
Central South University, Changsha 410083, P.R.China;
2. Department of Mineral Engineering, Central South University,
Changsha 410083, P.R.China

Abstract: In the presence of tributylethylammonium ethosulfate as a phasetransfer catalyst, three kinds of biphenoxyl bi(acetic acid) are synthesized from biphenol, chloroacetic acid and sodium hydroxide in a chloroform solvent. The depressing performance of biphenoxyl bi(acetic acid) to calcite, diaspore and pyrite was studied. The results show that biphenoxyl bi(acetic acid) possesses good depressing ability to the three minerals in the following order: calcite>diaspore>pyrite. It can be used as an efficient depressant for calcite and diaspore. The electronegativity of group, reagent specific exponent and HLB of biphenoxyl bi(acetic acid) are discussed. Quantum calculation was operated by Mopac Method on MSI workstation, which has explained the depressing mechanism and the structure-performance relations of the synthesized reagents.

 

Key words:  biphenoxyl bi(acetic acid); phase transfer catalysis; flotation; depression

ISSN 1004-0609
CN 43-1238/TG
CODEN: ZYJXFK

ISSN 1003-6326
CN 43-1239/TG
CODEN: TNMCEW

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