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首页> 外文期刊>Journal of Hazardous Materials >Heavy metal removal by caustic-treated yeast immobilized in alginate
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Heavy metal removal by caustic-treated yeast immobilized in alginate

机译:固定在藻酸盐中的苛性碱处理酵母去除重金属

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摘要

Saccharomyces cerevisiae yeast biomass was heated in 0.75 M NaOH at 70-90℃ for 10-15 min to increase its biosorption for heavy metals, and then immobilized in alginate gel. Biosorption for Cu~(2+), Cd~(2+) and Zn~(2+) on alginate gel, native yeast, native yeast immobilized in alginate gel, and caustic-treated yeast immobilized in alginate gel, were all compared. Immobilized yeasts (native yeast and caustic-treated yeast) could be reactivated and reused in a manner similar to ion-exchange resins. Immobilized caustic-treated yeast has high heavy metal biosorption capacity and high metal removal efficiency over a rather wide pH region. The biosorption isotherm of immobilized caustic-treated yeast was studied and empirical equations were obtained. The initial pH of polluted water affected the metal removal efficiency in extreme pH regions, and the biosorption capacity almost remained constant over a wide pH range. The equilibrium biosorption appeared to be temperature independent in the range from 7℃ to 45℃ at low initial metal concentration.
机译:将酿酒酵母酵母生物质在0.75 M NaOH中于70-90℃加热10-15分钟,以增加其对重金属的生物吸附,然后固定在藻酸盐凝胶中。比较了藻酸盐凝胶,天然酵母,固定在藻酸盐凝胶上的天然酵母和固定在藻酸盐凝胶上的苛性处理酵母对Cu〜(2 +),Cd〜(2+)和Zn〜(2+)的生物吸附。固定化的酵母菌(天然酵母菌和经苛性碱处理的酵母菌)可以通过类似于离子交换树脂的方式重新激活并重新使用。固定的苛性碱处理酵母在相当宽的pH范围内具有较高的重金属生物吸附能力和较高的金属去除效率。研究了固定化碱处理酵母的生物吸附等温线,并获得了经验方程。污水的初始pH影响了极端pH区域的金属去除效率,并且在宽pH范围内生物吸附能力几乎保持恒定。在较低的初始金属浓度下,平衡生物吸附似乎与温度无关,范围为7℃至45℃。

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