Barik S P, Park K H, Nam C W
Mineral Resources Research Division, Korea Institute of Geoscience & Mineral Resources (KIGAM), Daejeon 305-350, Republic of Korea; Resources Recycling, University of Science and Technology, Daejeon 305-350, Republic of Korea.
Mineral Resources Research Division, Korea Institute of Geoscience & Mineral Resources (KIGAM), Daejeon 305-350, Republic of Korea.
J Environ Manage. 2014 Dec 15;146:22-28. doi: 10.1016/j.jenvman.2014.06.032. Epub 2014 Aug 23.
A process for recovering V(V) and Ni(II) from an industrial solid waste using sulfuric acid leaching, solvent extraction, precipitation and crystallization has been developed. The leaching parameters investigated were time, temperature and H2SO4 concentration. To quantify the linear and interaction coefficients a 2(3) full factorial experimental design was used. Regression equations for the extraction of V(V) and Ni(II) were determined and the adequacy of these equations was tested by Student's t-Test. More than 98% of both V(V) and Ni(II) were extracted in 90 min using 1.35 M H2SO4 at 40 °C. In addition, solvent extraction of V(V) with LIX 84-I in kerosene from the acidic leach liquor bearing 10.922 g/L V(V) and 18.871 g/L of Ni(II) was investigated. V(V) was extracted selectively using 40% LIX 84-I followed by stripping with NH4OH solution. McCabe-Thiele plots at O:A = 2:3 with 40% LIX 84-I and O:A = 3:1 with 15% (v/v) NH4OH showed two and three theoretical stages are needed for quantitative extraction and stripping of V(V), respectively. Ni(II) was selectively recovered from the V(V) free raffinate by adding ammonium oxalate at 60 °C. The purity of different products such as ammonium vanadate, nickel oxalate and nickel oxide obtained during the processes were analyzed and confirmed from the XRD studies.
已开发出一种使用硫酸浸出、溶剂萃取、沉淀和结晶从工业固体废物中回收V(V)和Ni(II)的工艺。所研究的浸出参数为时间、温度和H2SO4浓度。为了量化线性和相互作用系数,采用了2(3)全因子实验设计。确定了V(V)和Ni(II)萃取的回归方程,并通过学生t检验测试了这些方程的适用性。在40℃下使用1.35M H2SO4,90分钟内V(V)和Ni(II)的萃取率均超过98%。此外,还研究了用煤油中的LIX 84-I从含10.922g/L V(V)和18.871g/L Ni(II)的酸性浸出液中萃取V(V)。使用40% LIX 84-I选择性萃取V(V),然后用NH4OH溶液反萃。在O:A = 2:3、LIX 84-I浓度为40%以及O:A =