Physical Simulation of Bubble Behaviors and Optimization …
147
2. Chen HY (2019) The status quo of resource utilization of phosphate phosphogypsum in
Guizhou. Sulfuric Acid Ind (07):5–6+10
3. Zhang W, Zhang FZ, Ma LP (2020) CO 2 capture and process reinforcement by hydrolysate of
phosphogypsum decomposition products. 36:253–262
4. Huang YH (2020) Study on the production of ammonium sulfate from phosphogypsum. J
Chengdu Teach Coll 4(04):66–74
5. Jiang YQ, Wang Y (2020) The strategic planning, implementation and guarantee of phosphogypsum consumption in Guizhou Province. Heilongjiang Sci 11(08):128–131+135
6. Zhang XF, Liu SQ, Chen M (2002) Study on the preparation of ammonium sulfate and calcium
chloride from phosphogypsum. J Hefei Univ Technol (Nat Sci Ed) 01:67–70
7. Cordell GB (1968) Reaction kinetics of production of ammonium sulfate from anhydrite. Ind
Eng Chem Process Des Dev 7(2):278–285
8. Yang BJ, Chen X, Wang BN (2011) Precipitation conditions for the preparation of light calcium
carbonate by one-step phase transfer-precipitation method. J Hefei Univ Technol (Nat Sci Ed)
10:1551–1554
9. He SQ, Sun HJ, Peng TJ (2013) Experimental study on carbonation and fixation of carbon
dioxide by phosphogypsum. J Rock Mineral 32(6):899–904
10. Hou DB, Wang KB, Song CL, Qin QK, Guo WQ, Cui SRD, LW, (2019) Experimental study
on the effect of vibration on fine bubbles. J Jilin Instit Chem Technol 36(03):30–33
11. Liu A, Han F, Li ZH, Liu AR, Fan MQ (2018) Research progress on the application of nanobubbles in the flotation of fine-grained minerals. Miner Resour Conserv Util
215(03):81–86
12. Wang J, Hu H (2020) Microbubble-assisted pressure carbonation for preparation of high purity
lithium carbonate. J Mater Res Technol 9(5):9498–9505
13. An YH, Peng ZL, Du XQ (2017) Application of microbubble air flotation system in coking
wastewater pretreatment. Chem Eng Des Commun 43(09):224–225
14. Guchi M, Kaji M, Morita Z (1998) Effects of pore size, bath surface pressure, and nozzle size
on the bubble formation from a porous nozzle. Metall Mater Trans B J 29(11):1209–1218
15. Gadallah AH, Siddiquib K (2015) Bubble breakup in co-current upward flowing liquid using
honeycomb monolith breaker. Chem Eng Sci 131:22–40
147
2. Chen HY (2019) The status quo of resource utilization of phosphate phosphogypsum in
Guizhou. Sulfuric Acid Ind (07):5–6+10
3. Zhang W, Zhang FZ, Ma LP (2020) CO 2 capture and process reinforcement by hydrolysate of
phosphogypsum decomposition products. 36:253–262
4. Huang YH (2020) Study on the production of ammonium sulfate from phosphogypsum. J
Chengdu Teach Coll 4(04):66–74
5. Jiang YQ, Wang Y (2020) The strategic planning, implementation and guarantee of phosphogypsum consumption in Guizhou Province. Heilongjiang Sci 11(08):128–131+135
6. Zhang XF, Liu SQ, Chen M (2002) Study on the preparation of ammonium sulfate and calcium
chloride from phosphogypsum. J Hefei Univ Technol (Nat Sci Ed) 01:67–70
7. Cordell GB (1968) Reaction kinetics of production of ammonium sulfate from anhydrite. Ind
Eng Chem Process Des Dev 7(2):278–285
8. Yang BJ, Chen X, Wang BN (2011) Precipitation conditions for the preparation of light calcium
carbonate by one-step phase transfer-precipitation method. J Hefei Univ Technol (Nat Sci Ed)
10:1551–1554
9. He SQ, Sun HJ, Peng TJ (2013) Experimental study on carbonation and fixation of carbon
dioxide by phosphogypsum. J Rock Mineral 32(6):899–904
10. Hou DB, Wang KB, Song CL, Qin QK, Guo WQ, Cui SRD, LW, (2019) Experimental study
on the effect of vibration on fine bubbles. J Jilin Instit Chem Technol 36(03):30–33
11. Liu A, Han F, Li ZH, Liu AR, Fan MQ (2018) Research progress on the application of nanobubbles in the flotation of fine-grained minerals. Miner Resour Conserv Util
215(03):81–86
12. Wang J, Hu H (2020) Microbubble-assisted pressure carbonation for preparation of high purity
lithium carbonate. J Mater Res Technol 9(5):9498–9505
13. An YH, Peng ZL, Du XQ (2017) Application of microbubble air flotation system in coking
wastewater pretreatment. Chem Eng Des Commun 43(09):224–225
14. Guchi M, Kaji M, Morita Z (1998) Effects of pore size, bath surface pressure, and nozzle size
on the bubble formation from a porous nozzle. Metall Mater Trans B J 29(11):1209–1218
15. Gadallah AH, Siddiquib K (2015) Bubble breakup in co-current upward flowing liquid using
honeycomb monolith breaker. Chem Eng Sci 131:22–40
