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首页> 外文期刊>Chemosphere >Facile synthesis of economical feasible fly ash-based zeolite-supported nano zerovalent iron and nickel bimetallic composite for the potential removal of heavy metals from industrial effluents
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Facile synthesis of economical feasible fly ash-based zeolite-supported nano zerovalent iron and nickel bimetallic composite for the potential removal of heavy metals from industrial effluents

机译:容易合成经济可行的粉煤灰沸石负载的纳米零铁和镍双金属复合材料,用于潜在从工业污水中取出重金属

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Heavy metals contamination of water is one of the environmental issue globally. Thus prepared fly ash-based zeolite (FZA)-supported nano zerovalent iron and nickel (nZVI/Ni@FZA) bimetallic composite from low-cost fly ash waste for the potential treatment of anion (Cr(VI) and cation Cu(II)) heavy metals from industrial effluents at pH 3 and 5, respectively in this study. The systematic interaction between FZA and nZVI/Ni and the adsorptive removal mechanism was studied. The mean surface area of the nZVI/Ni@FZA (154.11 m(2)/g) was much greater than that of the FZA (46.6 m(2)/g) and nZVI (4.76 m(2)/g) independently, as determined by BET-N-2 measurements. The effect of influence factors on the removal of Cr(VI) and Cu(II) by nZVI/Ni@FZA, such as pH effect, initial concentration effect, time effect, temperature effect, coexisting metals, and ionic strength, and cumulative loading ability ; were discussed. The maximum adsorption capacity of nZVI/Ni@FZA was 48.31 mg/g and 147.06 mg/g towards Cr(VI) and Cu(II), respectively. These were higher than those of nZVI@FZA and FZA. It demonstrated that Ni could play an important role in enhancing the reduction ability of nZVI. Furthermore, isothermal and kinetic results revealed that both heavy metal adsorption processes were rate limiting monolayer Langmuir adsorption on homogeneous surfaces. Thermodynamic results suggested that the adsorptive removal of metal ions was endothermic with spontaneity. The applicability of nZVI/Ni@FZA on real industrial wastewater treatment results demonstrate that the concentration of heavy metals were removed under the acceptable standard levels. Further the adsorption capacity of nZVI/Ni@FZA was higher than the nZVI@FZA and FZA. The overall results demonstrated that nZVI/Ni@FZA was a promising, efficient, and economically feasible sorbent for potential wastewater treatment. Moreover this is first report on the preparation nZVI/Ni@FZA bimetallic composite. (C) 2020 Elsevier Ltd. All rights reserved.
机译:重金属污染水是全球环境问题之一。由此制备的粉煤灰基沸石(FZA) - 来自低成本飞灰废弃物的低成本粉煤灰镍(NZVI / Ni @FZA)双金属复合材料,用于阴离子的潜在处理(Cr(vi)和阳离子Cu(ii) )在本研究中分别在pH 3和5的工业流出物中的重金属。研究了FZA和NZVI / Ni与吸附去除机制之间的系统相互作用。 NZVI / Ni @FZA的平均表面积(154.11m(2)/ g)远大于FZA(46.6M(2)/ g)和NZVI(4.76m(2)/ g),由Bet-N-2测量确定。影响因素对NZVI / NI @ FZA除去Cr(VI)和Cu(II)的影响,例如pH效应,初始浓度效应,时间效应,温度效应,共存金属和离子强度,以及累积载荷能力 ;讨论了。 NZVI / Ni @FZA的最大吸附容量分别为Cr(VI)和Cu(II)的48.31mg / g和147.06mg / g。这些高于NZVI @FZA和FZA的那些。它表明,NI可以在提高NZVI的降低能力方面发挥重要作用。此外,等温和动力学结果显示,两种重金属吸附方法都是限制在均匀表面上的单层朗米尔吸附。热力学结果表明,具有自发性的空气离子的吸附去除。 NZVI / NI @ FZA对实际工业废水处理结果的适用性表明,在可接受的标准水平下除去重金属的浓度。此外,NZVI / NI @FZA的吸附能力高于NZVI @FZA和FZA。总体结果表明,NZVI / NI @FZA对于潜在的废水处理是有前途,有效和经济可行的吸附剂。此外,这是关于制备NZVI / NI @ FZA双金属复合材料的第一个报告。 (c)2020 elestvier有限公司保留所有权利。

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