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首页> 外文期刊>Minerals >Application and Mechanism of Anionic Collector Sodium Dodecyl Sulfate (SDS) in Phosphate Beneficiation
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Application and Mechanism of Anionic Collector Sodium Dodecyl Sulfate (SDS) in Phosphate Beneficiation

机译:阴离子捕收剂十二烷基硫酸钠在磷酸盐选矿中的应用及机理

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Phosphate ore is a valuable strategic resource. Most phosphate ore in China is collophane. Utilization of mid-low grade collophane is necessary to maintain social sustainable development. The gravity-flotation combination separation process can be utilized to separate mid-low grade collophane, but the process consumes a large quantity of acid in the reverse stage. Sodium dodecyl sulfate (SDS) was used as a dolomite collector in this study to reduce the acid consumption of collophane flotation. SDS effectively removed dolomite from the gravity concentrate when no other reagents were present. Flotation test results showed that, compared to the conventional gravity-flotation process, the proposed SDS-based process reduced phosphoric acid dosage from 6.1 kg/t to 3.9 kg/t with similar separation results. The SDS action mechanisms on dolomite were further investigated by zeta potential analysis, single mineral flotation tests, infrared spectrum detection, and theoretical analysis. The results indicate that the SDS adsorption on dolomite is mainly physical adsorption, and that favorable separation effects between collophane and dolomite may be attributed to physical adsorption and entrainment. In addition, it also indicates that the physical adsorption can be utilized to remove dolomite from phosphate on account of zeta potential differences when the separate feed is coarse.
机译:磷酸盐矿是宝贵的战略资源。在中国,大多数磷矿是可波罗的。为了维持社会的可持续发展,必须利用中低档的玻璃纸。重力浮选组合分离工艺可用于分离中低档的玻璃纸,但该工艺在相反阶段消耗大量的酸。在这项研究中,十二烷基硫酸钠(SDS)被用作白云石的捕收剂,以减少胶体浮选的酸消耗。当不存在其他试剂时,SDS可有效地从重力浓缩物中去除白云石。浮选试验结果表明,与传统的重力浮选工艺相比,拟议的基于SDS的工艺将磷酸用量从6.1 kg / t降低到3.9 kg / t,分离效果相似。通过ζ电位分析,单矿物浮选试验,红外光谱检测和理论分析,进一步研究了SDS对白云石的作用机理。结果表明,SDS在白云石上的吸附主要是物理吸附,并且胶体与白云石的良好分离效果可能归因于物理吸附和夹带。另外,这还表明当单独进料较粗时,由于ζ电势差,可以利用物理吸附从磷酸盐中除去白云石。

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