中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Recovery of Trace Rare Earths from High-Level Fe3+ and Al3+ Waste of Oil Shale Ash (Fe-Al-OSA)

文献类型:期刊论文

作者Yang HL ; Wang W ; Zhang DL ; Deng YF ; Cui HM ; Chen J ; Li DQ
刊名industrial & engineering chemistry research
出版日期2010
卷号49期号:22页码:11645-11651
关键词CONSTANT INTERFACIAL CELL SOLVENT-EXTRACTION PHOSPHORIC-ACID IONIC LIQUID LAMINAR-FLOW SEPARATION THORIUM(IV) MEDIA BASTNAESITE CERIUM(IV)
ISSN号0888-5885
通讯作者chen j
中文摘要an experimental investigation was undertaken to study the high-efficient and clean enrichment of trace rare earths from high-level fe3+ and al3+ waste of oil shale ash (fe-al-osa). the optimum leaching temperature, ratio of solid to liquid, acidity, and reaction time for fe-al-osa were 30 degrees c, 1:7, 50% (v/v), and 1 h by the taguchi method, respectively, and the leaching rate of rare earths has been reached up to 96.24%. the optimal extraction conditions for removing fe3+ from leaching liquor of fe-al-osa were as follows: the organic phase was 30% n235 + 10% isooctyl alcohol (roh) + 60% n-heptane, acidity of aqueous phase was about 3.00 mol/l, and phase ratio (v-o:v-w) was 8:5. more than 92.09% of fe3+ was recovered by using countercurrent extraction process with 4-5 stages. the 99.76% of high pure fe byproduct was obtained by stripping the loaded n235 organic phase, and it can be used as chemistry pure reagent directly. after adjusting the ph of the raffinate to 6.00 with mgo and saturated na2co3 solution, all of the al3+ and rare earths were transformed to hydroxide precipitation and separated from the solution, together with other small amounts of coexisting metal ions such as ca2+ and mg2+. then, the precipitation was washed, collected, and dissolved by hno3. rare earths can be separated from the solution by solvent extraction with 30% tributyl phosphate (tbp) +70% n-heptane at the phase ratio (v-o:v-w) 3:2. the recovery rate of rare earths from fe-al-osa has reached 86,30% in the whole separation process. the residual al3+ in solution was recycled. this work shows that such a treatment route is one kind of highly efficient and clean method for separating fe3+ and al3+, and concentrating rare earths from fe-al-osa. the solid waste (fe-al-osa) from the refinery can also be utilized effectively to solve the ecological and environmental problems caused by the waste heap.
收录类别SCI收录期刊论文
语种英语
WOS记录号WOS:000283916700059
公开日期2012-04-25
源URL[http://ir.ciac.jl.cn/handle/322003/43302]  
专题长春应用化学研究所_长春应用化学研究所知识产出_期刊论文
推荐引用方式
GB/T 7714
Yang HL,Wang W,Zhang DL,et al. Recovery of Trace Rare Earths from High-Level Fe3+ and Al3+ Waste of Oil Shale Ash (Fe-Al-OSA)[J]. industrial & engineering chemistry research,2010,49(22):11645-11651.
APA Yang HL.,Wang W.,Zhang DL.,Deng YF.,Cui HM.,...&Li DQ.(2010).Recovery of Trace Rare Earths from High-Level Fe3+ and Al3+ Waste of Oil Shale Ash (Fe-Al-OSA).industrial & engineering chemistry research,49(22),11645-11651.
MLA Yang HL,et al."Recovery of Trace Rare Earths from High-Level Fe3+ and Al3+ Waste of Oil Shale Ash (Fe-Al-OSA)".industrial & engineering chemistry research 49.22(2010):11645-11651.

入库方式: OAI收割

来源:长春应用化学研究所

浏览0
下载0
收藏0
其他版本

除非特别说明,本系统中所有内容都受版权保护,并保留所有权利。