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[1]徐彩丽,池汝安*,吕仁亮,等.辛基羟肟酸浮选行为的研究进展[J].武汉工程大学学报,2019,(06):566-572.[doi:10. 3969/j. issn. 1674-2869. 2019. 06. 010]
 XU Caili,CHI Ruan*,L? Renliang,et al.Progress in Flotation Behavior of Octyl Hydroxamic Acid[J].Journal of Wuhan Institute of Technology,2019,(06):566-572.[doi:10. 3969/j. issn. 1674-2869. 2019. 06. 010]
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辛基羟肟酸浮选行为的研究进展(/HTML)
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《武汉工程大学学报》[ISSN:1674-2869/CN:42-1779/TQ]

卷:
期数:
2019年06期
页码:
566-572
栏目:
资源与土木工程
出版日期:
2021-01-24

文章信息/Info

Title:
Progress in Flotation Behavior of Octyl Hydroxamic Acid
文章编号:
20190610
作者:
徐彩丽1池汝安*2吕仁亮3薛永萍1阮耀阳2冯 健3
1. 武汉工程大学邮电与信息工程学院,湖北 武汉 430074; 2. 武汉工程大学兴发矿业学院,湖北 武汉 430074; 3. 武汉工程大学化工与制药学院,湖北 武汉 430205
Author(s):
XU Caili1CHI Ru’an*2L? Renliang3XUE Yongping1RUAN Yaoyang2FENG Jian3
1. The College of Post and Telecommunication of Wuhan Institute of Technology,Wuhan 430074,China; 2. School of Xingfa Mining Engineering,Wuhan Institute of Technology,Wuhan 430074,China; 3. School of Chemical Engineering and Pharmacy,Wuhan Institute of Technology,Wuhan 430205,China
关键词:
辛基羟肟酸浮选应用
Keywords:
octyl hydroxamic acidflotationapplication
分类号:
TD97;TD923.1
DOI:
10. 3969/j. issn. 1674-2869. 2019. 06. 010
文献标志码:
A
摘要:
羟肟酸是一类高效、低毒、选择性强的捕收剂,已被广泛应用于多种金属矿,特别是稀土矿物的浮选。其中,辛基羟肟酸(OHA)碳链长度适中,生产工艺简单且成本低,具有良好的浮选性能和起泡性能。介绍了OHA的合成方法、捕收机理、分析检测手段及其在稀土矿物、钨矿物、铁矿物、锡石、孔雀石等矿物浮选中的应用。OHA可通过络合作用与多种金属离子形成稳定的杂环螯合物,从而实现药剂在矿物表面的选择性吸附。OHA浮选pH范围较宽,pH为7左右浮选效果最佳。在抑制剂的作用下,OHA能实现稀土矿物、钨矿物等有价矿物与重晶石、萤石、石英等脉石矿物的有效分离。开发基于OHA 的组合药剂,有望获得更好的选别指标和经济效益。
Abstract:
Hydroxamic acids,one kind of flotation agents with high efficiency,low toxicity and excellent selectivity,have been widely used in the flotation of various metallic minerals,especially in rare earth minerals. octyl hydroxamic acid (OHA),one member of Hydroxamic acids,has characteristics of moderate alkyl chain length,simple production process,low cost,excellent flotation and foaming performance. The application of OHA in the flotation of metal ore was reviewed in details,including the chemical synthesis method,collecting mechanism,analysis and detection and its application in the flotation of rare earth minerals,tungsten minerals,iron ores,cassiterite,malachite and other minerals. OHA can form stable heterocyclic chelates with various metal ions through complexation,achieving the selective adsorption of reagents on specific mineral surface. OHA shows a broad operable pH range for floatation,and the optimum pH value is 7. OHA can effectively separate valuable minerals such as rare earth minerals and tungsten minerals from the gangue minerals such as barite, fluorite and quartz. It is expected to develop the composite collector based on OHA for better mineral processing indexes and economic benefits.

参考文献/References:

[1] POPPERLE J. Hydroxamate composition and method for froth flotation:DE,700735 [P]. 1940-6-15. [2] PETERSON H D, FUERSTENAU M C, RICKARD R S, et al. Chrysocolla flotation by the formation of insoluble surface chelates [J]. Transactions, SME/AIME, 1965,232:388-392. [3] DETTORI G,GASPA S,PORCHEDDU A,et al. A two- step tandem reaction to prepare hydroxamic acids directly from alcohols[J]. Organic & Biomolecular Chemistry,2014,12(26):4582-4585. [4] PAPADOPOULOS G N,KOKOTOS C G. Photoorganocatalytic one-pot synthesis of hydroxamic acids from aldehydes[J]. Chemistry-A European Journal,2016,22(20):6964-6967. [5] REDDY A S,KUMAR M S,REDDY G R. A convenient method for the preparation of hydroxamic acids[J]. Tetrahedron Letter,2000,41(33): 6285-6288. [6] ALLEN C L,ATKINSON B N,WILLIAMS J M J,et al. Transamidation of primary amides with amines using hydroxylamine hydrochloride as aninorganiccatalyst[J].Angewandte Chemie International Edition,2012,51(6):1383-1386. [7] ANDO W,TSUMAKI H. A facile preparation of aliphatic hydroxamic acid from N,N,O-tris(trimethylsilyl)hydroxylamine and acid chloride [J]. Synthetic Communications,1983,13(12):1053-1056. [8] 车丽萍,余永富,庞金兴,等. 羟肟酸类捕收剂的合成、性质及在稀土矿物浮选中的作用机理[J]. 稀土,2004,25(6):74-83. [9] 范小英,戴子林. 异羟肟酸的合成方法[J]. 广东有色金属学报,1997,7(2):100-105. [10] 曾伟,曾贵玉,秦圣英. 异羟肟酸的合成与应用研究新进展[J].有机化学,2003,23(11):1213-1218. [11] SOSNOVSKY G,KROGH J A. A new method for the preparation of aliphatic hydroxamic acids; reaction of primary nitroalkanes with selenium dioxide in the presence of triethylamine[J]. Synthesis,1980(8):654-656. [12] VOJTECH V,MARTINKOVA L,VESELA A B,et al. Biotransformation of nitriles to hydroxamic acids via a nitrile hydratase-amidase cascade reaction[J]. Journal of Molecular Catalysis B: Enzymatic,2011,71(1/2):51-55. [13] 张宝元. 羟肟酸类捕收剂的合成及其对钛铁矿的浮选性能研究[D]. 长沙:中南大学,2011. [14] 唐清. C8羟肟酸的合成及其浮选性能研究[D]. 长沙:中南大学,2014. [15] 朱玉霜,朱丹. 辛基羟肟酸在锡石表面吸附的热力学研究[J]. 有色金属,1994,46(1):24-28. [16] 朱玉霜,朱建光. 浮选药剂的化学原理[M]. 长沙:中南工业大学出版社,1996. [17] 饶金山,何晓娟,罗传胜,等. 辛基羟肟酸浮选氟碳铈矿机制研究[J]. 中国稀土学报,2015,33(3):370-377. [18] 刘三军,姚文明,岳琦,等. 辛基羟肟酸捕收一水硬铝石的浮选溶液化学研究[J]. 矿产保护与利用,2016(3):18-21. [19] 余雪花. 水溶液中羟肟酸测定方法的改进[J].有色金属(选矿部分),1990(1):23-24,35. [20] ZHANG B Y,ZHONG H. Determination of hydroxamic acids by directspectrophotometry of colored complex in acidic solution[J]. Research Chemical Intermediates,2010,36(5):495-501. [21] 郑晓,刘广义,黄耀国,等. 紫外分光光度法测定水溶液中的微量辛基羟肟酸[J]. 理化检验(化学分册),2016,52(7):774-777. [22] 高莉. 白钨矿浮选捕收剂的性能评价及浮选机理研究[D].赣州:江西理工大学,2014. [23] 罗礼英. 黑钨矿螯合类捕收剂的浮选性能评价[D].赣州: 江西理工大学,2013. [24] MENG Y Q,FENG Q M,OU L M. Flotation behavior and adsorption mechanism of fine wolframite with octyl hydroxamic acid[J]. Journal of Central South University,2016,23(6): 1339-1344. [25] 黄林旋,吴祥林. 异羟肟酸类型捕收剂的研制与浮选稀土矿物试验[ J]. 稀土,1985(3):1-7. [26] 朱申红,荀志运,冯婕,等. 浮选氟碳铈矿的捕收剂及药剂混用的研究[ J]. 金属矿山,2000(8):32-34. [27] 任浏祎,邱航,覃文庆,等. 辛基羟肟酸浮选锡石的机理[J]. 中国矿业大学学报,2017,46(6):1364-1371. [28] SREENIVAS T,PADMANABHAN N P H. Surface chemistry and flotation of cassiterite with alkyl hydroxamates[J]. Colloid and Surfaces A: Physicochemistry and Engineering Aspects,2002,205(1/2):47-59. [29] 何晓娟,程德明,宫中桂. 螯合型捕收剂——辛基羟肟酸浮选氧化锌矿机理的研究[J]. 广东有色金属学报,1991,1(1):1-6. [30] 孟庆波,徐晓萍,高玉德,等. 辛基羟肟酸钠和丁基黄药混合使用对孔雀石浮选行为的影响[J]. 金属矿山,2018(6):70-74. [31] 程奇,钟宏,王帅,等. 长碳链烷基羟肟酸对钛铁矿的浮选性能与机理研究[J]. 应用化工,2016,45(8):1407-1411. [32] 林江顺,高颖剑,张莱文. C5-9羟肟酸浮选赤铁矿[J]. 有色金属,1999,51(3):45-48. [33] 郭建斌,沈慧庭. 油酸钠与辛基羟肟酸钠组合用药在赤铁矿载体浮选中应用的研究[J]. 南方冶金学院学报,1993,14(4):288-293. [34] 任皞,纪绯绯,宋桂兰. 几种捕收剂对有价铌矿物浮选性能的比较[J]. 有色金属,2006,58(3):106-109. [35] LIU M X,LI H,JIANG T,et al. Flotation of coarse and fine pyrochlore using octyl hydroxamic acid and sodium oleate[J]. Minerals Engineering,2019,132: 191-201. [36] WANG W Q,ZHU Y G,ZHANG S Q,et al. Flotation behaviors of perovskite,titanaugite and magnesium aluminate spinel using octyl hydroxamic acid as the collector[J]. Minerals,2017,7(8):134(1)1-134(18). [37] ZHENG Y ,CUI Y T, WANG W Q. Activation mechanism of lead ions in perovskite flotation with octyl hydroxamic acid collector[J]. Minerals,2018,8(8):341(1)-341(14).

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备注/Memo

备注/Memo:
收稿日期:2019-03-02 基金项目:国家自然科学基金委员会-云南省人民政府联合基金(U1802252);国家自然科学基金(51734001) 作者简介:徐彩丽,博士研究生。E-mail:[email protected] *通讯作者:池汝安,博士,教授。 E-mail: [email protected] 引文格式:徐彩丽,池汝安,吕仁亮,等.辛基羟肟酸浮选行为的研究进展[J]. 武汉工程大学学报,2019,41(6):566-572.
更新日期/Last Update: 2020-01-20