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BIOSORPTION OF HEAVY METALS BY RED ALGAE (PALMARIA PALMATA)

机译:赤藻对重金属的生物富集(PALMARIA PALMATA)

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The biosorption of heavy metals from aqueous solutions was investigated, using a cheap and abundant dry biomass of red algae P. palmata. The Freundlich, Langmuir and Brunauer Emmer and Teller (BET) models were used to describe the uptake of lead (Pb~(2+)), copper (Cu~(2+)), nickel (Ni~(2+)), cadmium (Cd~(2+)) and zinc (Zn~(2+)) on P. palmata. The good fits of the Langmuir and BET models to the experimental data reflected that the sorption on P. palmata was a multi-layer sorption, in which a Langmuir equation could be applied to each layer. The highest maximum sorption capacity q_(max), derived from the Langmuir model was 15.17 mg g~(-1) for lead and 6.65 mg g~(-1) for copper (dry weight metal/dry weight biosorbent) at a pH of 5.5-6. The affinity of metals for P. palmata was found to decrease in the order: Pb~(2+) > Cd~(2+) > Cu~(2+) > Ni~(2+). The factors influencing copper and lead uptake were found to be contact time, pH, initial concentration and temperature. Biosorption of copper and lead was a rapid process, with 70% and 100% of the respective uptakes occurring within the first 10 minutes.
机译:使用廉价和丰富的干红藻(P. palmata)干生物质,研究了水溶液中重金属的生物吸附。 Freundlich,Langmuir和Brunauer Emmer and Teller(BET)模型用于描述铅(Pb〜(2+)),铜(Cu〜(2+)),镍(Ni〜(2+))的吸收,棕榈果上的镉(Cd〜(2+))和锌(Zn〜(2+))。 Langmuir和BET模型与实验数据的良好拟合反映出对棕榈棕榈的吸附是多层吸附,其中Langmuir方程可以应用于每一层。由Langmuir模型得出的最大最大吸附容量q_(max)在pH值为20时对铅为15.17 mg g〜(-1),对铜为6.65 mg g〜(-1)(干重金属/干重生物吸附剂)。 5.5-6。发现金属对棕榈假单胞菌的亲和力依次降低:Pb〜(2+)> Cd〜(2+)> Cu〜(2+)> Ni〜(2+)。发现影响铜和铅吸收的因素是接触时间,pH,初始浓度和温度。铜和铅的生物吸附是一个快速的过程,分别有70%和100%的吸收发生在前10分钟之内。

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