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首页> 外文期刊>The Canadian Journal of Chemical Engineering >UTILISATION OF IMMOBILISED ACTIVATED SLUDGE FOR THE BIOSORPTION OF CHROMIUM (VI)
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UTILISATION OF IMMOBILISED ACTIVATED SLUDGE FOR THE BIOSORPTION OF CHROMIUM (VI)

机译:利用固定化活性污泥对铬(VI)进行提纯

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摘要

The objective of this investigation was to study the biosorption of Cr (VI) on immobilised activated sludge <1AS) and calcium alginate (CA) using batch system. The optimal pH for Cr (VI) biosorption by IAS and CA was 2.0 and 4.0, respectively. Equilibrium was attained at approximately 120 min for both biosorbents. For both biosorbents, the equilibrium biosorption capacity (mg/g) increased as the initial metal ion concentration increased and the concentration of biosorbent decreased. The rate of biosorption onto IAS and pure CA (as mg/g) increased from 5.02 to 87.66 and 4.97 to 79.09 as the concentration of Cr (VI) ions increased from 10 to 1000 mg/L, respectively. In the case of biosorbent concentration, as the concentration of IAS and pure CA increased from 1 to 20g/L, the equilibrium uptake (q_e) decreased from 21.33 to 1.57 and 19.41 to 1.38 mg/g, respectively. The biosorption data showed that the Langmuir model was more suitable than the Freundlich model. Also, the results indicated that the pseudo-second order model was the most suitable for Cr (VI) biosorption onto IAS and CA.
机译:这项研究的目的是使用分批系统研究Cr(VI)在固定化活性污泥<1AS)和藻酸钙(CA)上的生物吸附。 IAS和CA对Cr(VI)生物吸附的最佳pH分别为2.0和4.0。两种生物吸附剂均在约120分钟时达到平衡。对于两种生物吸附剂,随着初始金属离子浓度的增加和生物吸附剂浓度的降低,平衡生物吸附量(mg / g)均增加。随着Cr(VI)离子浓度从10 mg / L分别增加,在IAS和纯CA上的生物吸附率从5.02增加到87.66,从4.97上升到79.09。在生物吸附剂浓度的情况下,随着IAS和纯CA浓度从1增加到20g / L,平衡吸收(q_e)分别从21.33减少到1.57和19.41到1.38 mg / g。生物吸附数据表明,Langmuir模型比Freundlich模型更合适。而且,结果表明,伪二级模型最适合Cr(VI)生物吸附到IAS和CA上。

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