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首页> 外文期刊>Chemical engineering journal >Adsorptive recovery of vanadium(V) from chromium(VI)-containing effluent by Zr(IV)-loaded orange juice residue
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Adsorptive recovery of vanadium(V) from chromium(VI)-containing effluent by Zr(IV)-loaded orange juice residue

机译:负载Zr(IV)的橙汁残留物从含铬(VI)的废水中吸附回收钒(V)

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摘要

Dried orange juice residue marketed as cattle food was converted into an economical and environmentally benign sorbent through chemical loading with zirconium(IV). Its adsorption properties for vanadium(V) and chromium(VI) from synthetic and actual waste water were investigated, The adsorption of V(V) is strongly dependent on solution pH, and the maximum separation coefficient (β_(v/cr) = 45) between V(V) and Cr(Vl) takes place at pH 2.85. The anion exchange or nucleophilic substitution reaction between OH~- and metal oxo-anions was proposed as the main adsorption mechanism. Langmuir adsorption and pseudo-second-order rate equations can describe well the adsorption of V(V) onto the gel. The maximum adsorption capacities for V(V) and Cr(VI) were estimated as 1.003 and 0.288 mmol/g, respectively. The adsorbed vanadium was effectively desorbed using a diluted NaOH solution. The negligible interference of coexisting anions, such as nitrates and chlorides, durability, reproducibility of the gel, and the column adsorption test through the mixture of V(V) and Cr(VI) followed by elution make the Zr(IV)-SOW a promisihg sorbent for the recovery of a small quantity of vanadium from chromium(VI)-containing effluent. Finally, a preliminary attempt to selectively enrich V(V) from the real dilute industrial effluent that contains Cr(VI) using the present gel has been carried out, and it was confirmed to be successfully achieved.
机译:市场上作为牛食品出售的橙汁残渣通过化学负载锆(IV)转化为经济且对环境无害的吸附剂。研究了其对合成废水和实际废水中钒(V)和铬(VI)的吸附性能,对V(V)的吸附强烈依赖于溶液的pH,最大分离系数(β_(v / cr)= 45在V(V)和Cr(V1)之间在pH 2.85下发生)。 OH〜-与金属氧代阴离子之间的阴离子交换或亲核取代反应被认为是主要的吸附机理。 Langmuir吸附和拟二级速率方程可以很好地描述V(V)在凝胶上的吸附。 V(V)和Cr(VI)的最大吸附容量分别估计为1.003和0.288 mmol / g。使用稀NaOH溶液有效地解吸了吸附的钒。共存阴离子(例如硝酸根和氯离子),耐久性,凝胶的重现性以及通过V(V)和Cr(VI)的混合物进行的柱吸附测试以及随后的洗脱所产生的微不足道的干扰使Zr(IV)-SOW用于从含铬(VI)的废水中回收少量钒的有前途的吸附剂。最后,已经进行了初步尝试,使用本发明的凝胶从含有Cr(VI)的实际稀工业废水中选择性富集V(V),并证实已成功实现。

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