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Bubble Size Effects in Coal Flotation and Phosphate Reverse Flotation using a Pico-nano Bubble Generator.

机译:使用Pico-nano气泡发生器在煤浮选和磷酸盐反浮选中气泡尺寸的影响。

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摘要

Froth flotation is widely used in minerals industry. However, it is effective in a narrow size range, nominally 45--250 mum for coal and 10--150 mum for minerals. And the flotation performance of coal and minerals beyond this size range is not quite satisfactory. It is now recognized that the low-flotation efficiency of ultrafine particles is mainly due to the low probability of bubble-particle collision while the main reason for poor flotation recovery of coarse particles is the high probability of detachment of particles from the bubble surface.;Pico-nano bubbles refer to tiny bubbles smaller than 0.5 mum, which can be produced using ultrasonic or hydrodynamic cavitation method. A fundamental analysis has shown that pico-nano bubbles will serve as a secondary collector, bridging between hydrophobic particles and conventional sized bubbles, which can significantly improve the flotation recovery of hydrophobic particles by increasing the probability of collision and attachment and reducing the probability of detachment.;In order to obtain an optimal designed cavitation venturi tube for pico-nano bubbles' generation, different designs of cavitation venturi tubes were fabricated and tested in this study. The test results showed that maximum volume of pico-nano bubbles, 65% to 75%, and minimum mean pico-nano bubble size, 150 to 240 nm, were achieved at the medium ratio of the diameter of throat and outlet of the venturi tube (3 to 4), medium outlet angle (11°to 13°), high inlet angle (26° to 27°) and high ratio of the length of the throat and the diameter of throat (2.3 to 3).;The laboratory-scale coal flotation tests showed that, the combustible material recoveries for coarse fractions, -700+355 mum, and ultrafines fraction, -75 mum, were remarkably increased in the presence of pico-nano bubbles in coal flotation. The maximum combustible recovery of 85 to 90% and minimum clean coal ash of 9.5 to 11% were achieved from 29.6% ash content of Pittsburgh No. 8 seam coal. At a given flotation combustible material recovery, more than half of the collector can be saved by using pico-nano bubbles in the column flotation. The frother dosage was also reduced to half.;The laboratory-scale phosphate reverse flotation tests revealed that both the P2O5 grade and P2O5 recovery had been greatly improved in the presence of pico-nano bubbles. The column flotation using pico-nano bubble was capable of extending to float minus 75 mum and 355-700 mum particle size ranges much more effectively than column flotation with conventional sparger devices. The economic analysis performed in this study demonstrated that the application of pico-nano bubbles in both phosphate reverse flotation and coal flotation were economically feasible.
机译:泡沫浮选广泛用于矿物工业。但是,它在狭窄的尺寸范围内有效,名义上煤为45--250毫米,矿物为10--150毫米。并且超过该尺寸范围的煤和矿物的浮选性能不是很令人满意。现已认识到,超细颗粒的浮选效率低主要是由于气泡-颗粒碰撞的可能性低,而粗颗粒的浮选回收率差的主要原因是颗粒从气泡表面分离的可能性高。皮克纳米气泡是指小于0.5微米的微小气泡,可以使用超声或流体动力学空化方法产生。基本分析表明,皮纳级气泡将充当辅助收集器,在疏水性颗粒和常规尺寸的气泡之间架桥,可通过增加碰撞和附着的可能性并降低分离的可能性来显着提高疏水性颗粒的浮选回收率。为了获得用于皮纳纳米气泡产生的最佳设计的空化文氏管,在本研究中制造并测试了不同设计的空化文氏管。测试结果表明,在喉管直径和文丘里管出口的中等比例下,最大皮可纳米气泡体积为65%至75%,最小平均皮可纳米气泡尺寸为150至240 nm。 (3至4),中等出口角(11°至13°),高入口角(26°至27°)和高的喉管长度与喉管直径之比(2.3至3)。大规模浮选试验表明,在浮选过程中存在皮克-纳米气泡的情况下,粗级分-700 + 355 mum和超细级分-75 mum的可燃物回收率显着提高。匹兹堡8煤层煤的灰分含量为29.6%,最大可燃回收率为85-90%,最小清洁煤灰为9.5-11%。在给定的浮选可燃物回收率下,通过在柱浮选中使用皮克纳米气泡可以节省一半以上的收集器。起泡剂的用量也减少了一半。实验室规模的磷酸盐反向浮选试验表明,在存在皮纳米气泡的情况下,P2O5品位和P2O5的回收率都得到了极大的提高。使用皮纳级气泡进行的浮选比使用常规喷射器装置进行的浮选更有效地扩展至浮游负75微米和355-700微米的粒径范围。在这项研究中进行的经济分析表明,在磷酸盐反浮选和煤浮选中应用皮克纳米气泡在经济上都是可行的。

著录项

  • 作者

    Xiong, Yu.;

  • 作者单位

    West Virginia University.;

  • 授予单位 West Virginia University.;
  • 学科 Engineering Mining.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 233 p.
  • 总页数 233
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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