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Article

Adsorption Kinetics of Various Frothers on Rising Bubbles of Different Sizes under Flotation Conditions

1
Department of Mining Engineering, Istanbul University-Cerrahpaşa, Buyukcekmece, Istanbul 34500, Turkey
2
Department of Mining Engineering, Adana Alparslan Türkeş Science and Technology University, Sarıçam, Adana 01250, Turkey
3
Department of Physical Chemistry, Sofia University,1 James Bourchier Blvd, 1164 Sofia, Bulgaria
4
Department of Mineral Processing Engineering, Istanbul Technical University, Maslak, Istanbul 34469, Turkey
5
Rectorate, Harran University, Şanlıurfa 63510, Turkey
*
Authors to whom correspondence should be addressed.
Minerals 2021, 11(3), 304; https://doi.org/10.3390/min11030304
Submission received: 5 February 2021 / Revised: 27 February 2021 / Accepted: 3 March 2021 / Published: 16 March 2021
(This article belongs to the Special Issue Fine Particle Flotation: Experimental Study and Modelling)

Abstract

This paper studies the effect of the type and concentration of selected frothers, the gas flowrate, and the pore size of the porous frit on the bubble sizes (Sauter mean diameter, SMD) of bubbling flow produced in a micro-flotation cell, and the determination of bubble size distribution (BSD) in the presence of the frothers. The commercial frothers polypropylene glycols (PPG 200, 400, and 600), tri propylene glycol (BTPG), triethylene glycol (BTEG), dipropylene glycol (BDPG), and Methyl Isobutyl Carbinol (MIBC) were used in the present investigation. The frother concentration varied from 1 to 1000 ppm. The flow rate varied in the range of 25 to 100 cm3/min. The pore sizes of the frit were selected as 10–16 μm, 16–40 μm, and 40–100 μm. Each frother exhibited its own unique ability in preventing coalescence of the bubbles in the order of BTEG < BDPG < PPG 200 < MIBC < BTPG < PPG 400 < PPG 600. The factorial experiments established that the type of the frother and its concentration have a major effect on the size of the bubbles. The bubbles decreased twice their size when the frother concentration was increased from 1 ppm to 1000 ppm. The pore size of the frit is a significant factor as well. The size of the bubbles can be reduced from about 10% to about 40% by decreasing the pores from 40–100 μm to 10–16 μm but the level of this decrease depends on the type of the frother. The increase of the flowrate from 25 cm3/min to 100 cm3/min produced bubbles smaller by 25% to 50% for the case of BTEG, BDPG, PPG 200, MIBC, BTPG, while a minimum of the bubble sizes was reached for the case of PPG 400 and PPG 600, beyond which the bubbles enlarged their size. The BSD in the presence of PPG 600 varied around 0.3 mm, whereas BTEG gave a wider BSD which indicated that the type of frother affected the bubble production. Our analysis shows that the first group of frothers adsorbs instantly on the bubbles, once they leave the porous frit, thus reaching equilibrium. PPG 400 and PPG 600 adsorb significantly slower on the bubbles, possibly not reaching equilibrium during their resident time.
Keywords: frothers; gas flowrate; frit pore size; sauter mean diameter; surface tension frothers; gas flowrate; frit pore size; sauter mean diameter; surface tension

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MDPI and ACS Style

Batjargal, K.; Guven, O.; Ozdemir, O.; Karakashev, S.I.; Grozev, N.A.; Boylu, F.; Çelik, M.S. Adsorption Kinetics of Various Frothers on Rising Bubbles of Different Sizes under Flotation Conditions. Minerals 2021, 11, 304. https://doi.org/10.3390/min11030304

AMA Style

Batjargal K, Guven O, Ozdemir O, Karakashev SI, Grozev NA, Boylu F, Çelik MS. Adsorption Kinetics of Various Frothers on Rising Bubbles of Different Sizes under Flotation Conditions. Minerals. 2021; 11(3):304. https://doi.org/10.3390/min11030304

Chicago/Turabian Style

Batjargal, Khandjamts, Onur Guven, Orhan Ozdemir, Stoyan I. Karakashev, Nikolay A. Grozev, Feridun Boylu, and Mehmet Sabri Çelik. 2021. "Adsorption Kinetics of Various Frothers on Rising Bubbles of Different Sizes under Flotation Conditions" Minerals 11, no. 3: 304. https://doi.org/10.3390/min11030304

APA Style

Batjargal, K., Guven, O., Ozdemir, O., Karakashev, S. I., Grozev, N. A., Boylu, F., & Çelik, M. S. (2021). Adsorption Kinetics of Various Frothers on Rising Bubbles of Different Sizes under Flotation Conditions. Minerals, 11(3), 304. https://doi.org/10.3390/min11030304

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