Journal of Industrial and Engineering Chemistry, Vol.71, 327-335, March, 2019
Efficient extraction and separation of vanadium and chromium in high chromium vanadium slag by sodium salt roasting-(NH4)2SO4 leaching
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A novelty process based on sodium salt roasting-(NH4)2SO4 leaching was proposed to extract vanadium and chromium in high chromium vanadium slag (HCVS). V2O5 and Cr2O3 was then prepared. The effects of roasting and leaching conditions on vanadium and chromium extraction behavior were studied systematically and completely. Vanadium precipitation conditions and chromium reduction conditions were optimized further. 94.6% vanadium and 96.5% chromium were extracted when HCVS and Na2CO3 were mixed in the molar ratio of n(Na2CO3)/n(V2O3 + Cr2O3) of 2.5, then leached in 30 g/L (NH4)2SO4 solution. 94.8% vanadium was precipitated as ammonium polyvanadate (APV) just by adjusting the leaching liquid pH at 4.5, almost all chromium was remained in liquid, achieving the efficient separation of vanadium and chromium. Chromium was then recovered by reduction and precipitation. More than 99% chromium was reduced when Na2S2O5 was added in m(Na2S2O5)/m[Cr(VI)] above 3. By roasting the deposits of vanadium and chromium respectively, 91.49% V2O5 and 89.89% Cr2O3 were obtained. The supernatant after vanadium and chromium extraction containing NH4 + could be recycled as the new leaching medium with some new (NH4)2SO4 added, which greatly reduced the discharge of ammonianitrogen wastewater and made the whole process more environmentally friendly.
- Zhao LS, Wang LN, Qi T, Chen DS, Zhao HX, Liu YH, Hydrometallurgy, 149, 106 (2014)
- Zhang YM, Bao SX, Liu T, Chen TJ, Huang J, Hydrometallurgy, 109, 116 (2011)
- Wen J, Jiang T, Zhou M, Gao HY, Liu JY, Xue XX, Int. J. Miner. Metall. Mater., 25, 515 (2018)
- Dhal B, Thatoi HN, Das NN, Pandey BD, J. Hazard. Mater., 250-251, 272 (2013)
- Miretzky P, Cirelli AF, J. Hazard. Mater., 180(1-3), 1 (2010)
- Sun P, Huang K, Wang XQ, Song WY, Zheng H, Liu HZ, Sep. Purif. Technol., 179, 504 (2017)
- Jiang T, Wen J, Zhou M, Xue XX, J. Alloy. Compd., 742, 402 (2018)
- Wen J, Jiang T, Liu Y, Xue X, Miner. Process. Extr. Metall. Rev., 1 (2018).
- Li M, Xiao L, Liu JJ, Shi ZX, Fu ZB, Peng Y, Long PZ, Yang YJ, Mater. Sci. Forum, 863, 144 (2016)
- Li HY, Fang HX, Wang K, Zhou W, Yang Z, Yan XM, Ge WS, Li QW, Xie B, Hydrometallurgy, 156, 124 (2015)
- Zhang XF, Liu FG, Xue XX, Jiang T, J. Alloy. Compd., 686, 356 (2016)
- Diao J, Qiao Y, Zhang X, Ji CQ, Xie B, CrystEngComm, 17, 7300 (2015)
- Zhang X, Xie B, Diao J, Li XJ, IOM3, 39, 147 (2012)
- Ning PG, Lin X, Cao HB, Zhang Y, Sep. Purif. Technol., 137, 109 (2014)
- Lundkvist K, Bramming M, Larsson M, Samuelsson C, J. Clean Prod., 47, 43 (2013)
- Huang JN, Li YH, Cao YH, Peng F, Shao Q, Liu H, Guo ZH, J. Mater. Chem. A, 6, 13062 (2018)
- Gu HB, Xu XJ, Zhang HY, Liang CB, Lou H, Ma C, Li YJ, Guo ZH, Gu JW, Eng. Sci., 1, 46 (2018)
- Gong KD, Hu Q, Ya L, Li M, Sun DZ, Shao Q, Qiu B, Guo ZH, ACS Sustain. Chem. Eng., 6, 7283 (2018)
- Gong KD, Hu Q, Xiao YY, Cheng X, Liu H, Qiu B, Guo ZH, J. Mater. Chem. A, 6, 11119 (2018)
- Gong KD, Guo SY, Zhao Y, Hu Q, Liu H, Qiu B, Guo ZH, J. Mater. Chem. A, 6, 16824 (2018)
- Qiu JH, Zhang XF, Zhang XG, Feng Y, Li YX, Yang LY, Lu HQ, Yao JF, J. Hazard. Mater., 349, 234 (2018)
- Watts MP, Coker VS, Parry SA, Pattrick RA, Thomas RA, Kalin R, Lloyd JR, Appl. Geochem., 54, 27 (2015)
- Li XS, Xie B, Wang GE, Li XJ, Trans. Nonferrous Met. Soc. China, 21, 1860 (2011)
- Ji YL, Shen SB, Liu JH, Xue Y, J. Clean Prod., 149, 1068 (2017)
- Wang HG, Wang MY, Wang XW, Miner. Process. Extr. Metall. Rev., 124, 127 (2015)
- Yang YL, Master’s Thesis, Jishou University, 2015.
- Sun P, Huang K, Liu HZ, Hydrometallurgy, 165, 370 (2016)
- Jiang DD, Song NZ, Liao SF, Lian Y, Ma JT, Jia Q, Sep. Purif. Technol., 156, 835 (2015)
- Zhang Y, Zhang TA, Dreisinger D, Zhou WH, Xie F, Lv GZ, Zhang WG, Sep. Purif. Technol., 190, 123 (2018)
- Hu QY, Zhao JM, Wang FC, Huo F, Liu HZ, Sep. Purif. Technol., 131, 94 (2014)
- Fan YY, Wang XW, Wang MY, Hydrometallurgy, 136, 31 (2013)
- Liao XP, Tang W, Zhou RQ, Shi B, Adsorption, 14, 55 (2007)
- Li HY, Wang K, Hua WH, Yang Z, Zhou W, Xie B, Hydrometallurgy, 160, 18 (2016)
- Li M, Du H, Zheng SL, Wang SN, Zhang Y, Liu B, Dreisinger DB, Zhang Y, JOM, 69, 1970 (2017)
- Li M, Liu B, Zheng SL, Wang SN, Du H, Dreisinger DB, Zhang Y, J. Clean Prod., 149, 206 (2017)
- Li M, Zheng SL, Liu B, Wang SN, Dreisinger DB, Zhang Y, Du H, Zhang Y, Miner. Process. Extr. Metall. Rev., 38, 228 (2017)
- Zhang JH, Zhang W, Zhang L, Gu SQ, Int. J. Miner. Process., 138, 20 (2015)
- Liu B, Du H, Wang SN, Zhang Y, Zheng SL, Li LJ, Chen DH, AIChE J., 59(2), 541 (2013)
- Wen J, Jiang T, Gao HY, Liu YJ, Zheng XL, Xue XX, JOM, 70, 155 (2017)
- Zhao SX, Chen ZL, Shen JM, Kang J, Qu YF, Wang BY, Wang X, Yuan L, J. Environ. Manage., 202, 38 (2017)
- Moon DH, Wazne M, Koutsospyros A, Christodoulatos C, Gevgilili H, Malik M, Kalyon DM, J. Hazard. Mater., 166(1), 27 (2009)
- Shang JG, Zong MZ, Yu Y, Kong XR, Du Q, Liao QJH, J. Environ. Manage., 197, 33 (2017)
- Gheju M, Balcu I, Enache A, Flueras A, J. Environ. Manage., 203, 937 (2017)
- Fang D, Liao X, Zhang XF, Teng AJ, Xue XX, J. Hazard. Mater., 342, 436 (2018)
- Fang D, Zhang XF, Dong MG, Xue XX, J. Hazard. Mater., 336, 8 (2017)