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Simultaneous Reduction and Immobilization of Cr_2O_7~(2-) in Metakaolinite-based Geopolymer Complexed Reductant

机译:基于Metakaolinite的地质聚合物络合剂的Cr_2O_7〜(2-)的同时还原和固定化

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Reduction and immobilization of Cr(VI) as Cr_2O_7~(2-) is investigated by using metakaolinite-based geopolymer complexed reductant. Without reductants, the leached Cr concentration from metakaolinite-based geopolymer containing Cr(VI) is very high. Adding reductants as FeCl_2-4H_2O, FeSO4-7H_2O, and Na_2S-9H_2O respectively during geopolymerization, the leached Cr concentration is below 5 mg L~(-1) with high Cr immobilization rate above 99 %. By comparison with the immobilization of Cr (III), the added reductants reduced Cr (VI) to Cr (III) which can be locked successfully in the amorphous structure of geopolymer. Meanwhile, Cr (VI) initial concentration is lower than 0.7 wt. % in metakaolinite-based geopolymer, the above reductants can all meet the requirements. While for Cr (VI) initial concentration larger than 0.7 wt. %, Na_2S-9H_2O is more appropriate. Such a simultaneous reduction and immoboilization process enables the feasibility of using metakaolinite-based geopolymer complexed reductant to implement a one-step procedure for chromite ore processing residue cleanup.
机译:还原和Cr(VI)作为Cr_2O_7〜(2-)的固定是通过使用基于偏高岭土-地质聚合物络合还原剂调查。无还原剂,从含有铬(VI)的基于偏高岭土-地质聚合物沥滤Cr浓度是非常高的。地质聚合过程中加入还原剂如FeCl_2-4H_2O,FeSO4-7H_2O,和Na_2S-9H_2O分别浸出Cr浓度低于5毫克的L〜(-1)与高铬固定率99%以上。通过用铬(III)的固定化的比较,所添加的还原剂还原Cr(VI)为Cr(III),其可以成功地在地质聚合物的无定形结构被锁定。同时,铬(VI)的初始浓度高于0.7重量低。 %基于偏高岭土,地质聚合物,上述还原剂都可以达到要求。虽然铬(VI)初始浓度大于0.7重量大。 %,Na_2S-9H_2O是比较合适的。这种同时减少和immoboilization方法能够使用基于偏高岭土-地质聚合物络合还原剂以实现用于铬铁矿矿石处理残余物清理单步过程的可行性。

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