[1] ADNAN K,YAVUZ S D.CO2 emissions, economic growth, energy consumption, trade and urbanization in new EU member and candidate countries: A panel data analysis[J].Economic Modelling,2015,33:97-103 10.1016/j.econmod.2014.10.022
[2] LIANG G J, CHEN W M, NGUY A V, et al.Red mud carbonation using carbon dioxide: Effects of carbonate and calcium ions on goethite surface properties and setting[J].Journal of Colloid and Interface Science,2018,517(3):230-238 10.1016/j.jcis.2018.02.006
[3] 王海洋,张建良,王广伟,等. 铁前系统的二氧化碳减排技术浅析[J].中国冶金,2018(1):1-6
[4] WHIT C M,STRAZISAR B R,GRANITE E J, et al.Separation and capture of CO2 from large stationary sources and sequestration in geological formation-coalbeds and deep saline aquifers[J].Journal of the Air & Waste Management Association,2003,53(6):645-715 10.1080/10473289.2003.10466207
[5] ENICK R M,BECKMAN E J,SHI A C, et al.Remediation of metal-bearing aqueous waste streams via direct carbonation [J].Energy & Fuels,2001,15(2):256-262 10.1021/ef000245x
[6] RAMESH C S, RAJ K Pl, BANKIM C R.Neutralization of red mud using CO2 sequestration cycle[J].Journal of Hazardous Materials,2010,179(1):28-34 10.1016/j.jhazmat.2010.02.052
[7] BONENFANT D,KHAROUNE L,SAUVE S, et al.CO2 sequestration potential of steel slags at ambient pressure and temperature[J].Industrial & Engineering Chemistry Research,2008,47:7610-7616 10.1021/ie701721j
[8] 朱晓波,李望,管学茂,等. 拜耳法赤泥脱碱研究现状[J]. 硅酸盐通报,2014,33(9):2254-2257
[9] LI R B, ZHANG T A, LIU Y, et al.Characteristics of red mud slurry flow in carbonation reactor[J].Powder Technology,2017,311:66-76 10.1016/j.powtec.2016.11.028
[10] 南相莉,张廷安,刘燕,等. 我国赤泥的综合利用分析[J]. 过程工程学报,2010,10(1):264-270
[11] LIU Q, XIN R R, LI C C, et al.Application of red mud as a basic catalyst for biodiesel production[J].Journal of Environmental Sciences,2013,25(4):823-829 10.1016/S1001-0742(12)60067-9
[12] 南相莉,张延安,刘燕,等. 我国主要赤泥种类及其对环境的影响[J].过程工程学报,2009,9(1):459-464
[13] KLAUBER C,GRAEFE M,POWER G.Bauxite residue issues: II.Options for residue utilization[J].Hydrometallurgy,2011,108(1/2):11-32 10.1016/j.hydromet.2011.02.007
[14] 冯若,姚锦钟,关立勋. 超声波手册[M]. 南京:南京大学出版社,1996
[15] SUCHITA R,WASEWAR K L,MUKHOPADHYAY J, et al.Neutralization and utilization of red mud for its better waste management[J].Archives of Environmental Science,2012,6:13-33
[16] RIVERA R M, OUNOUGHENE G,BORRA C R, et al.Neutralisation of bauxite residue by carbon dioxide prior to acidic leaching for metal recovery[J].Minerals Engineering,2017,112:92-102 10.1016/j.mineng.2017.07.011
[17] FOIS E,ANTONIO L A, MURA G.Sulfur dioxide absorption in a bubbling reactor with suspensions of Bayer red mud[J].Industrial & Engineering Chemistry Research,2006,46(21):6770-6776 10.1021/ie0616904
[18] NAN X L, ZHANG T A.Study on absorption of low-concentration SO2 with basic slag intensified by ultrasonic wave[J].TMS Light Metals,2012,510(1):219-223
[19] BONENFANT D, KHAROUNE L, HAUSLER R, et al.CO2 sequestration by aqueous red mud carbonation at ambient pressure and temperature[J].Industrial & Engineering Chemistry Research,2008,47(20):7617-7622 10.1021/ie7017228
[20] 张彦娜,潘志华.不同温度下赤泥的物理化学特征分析[J]. 济南大学学报,2005,19(4):293-297
[21] 陈红霞,孙恒虎,李化建.热处理温度对赤泥胶凝活性的影响[J]. 轻金属,2006(9):22-25
[22] 曹沁波,罗斌,程金华,等.一种新型周边辐射超声波的浮选设备:CN205308587U[P].2016-06-15