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Biosorption of aluminum through the use of non-viable biomass of Pseudomonas putida

机译:通过使用恶臭假单胞菌的无生命生物量对铝进行生物吸附

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Living and non-living biomass of Pseudomonas putida A (ATCC 12633) was used as biosorbent for the removing of Al3+ from aqueous solutions. The process was stable with time, efficient at pH 4.3 and between 15 degrees C and 42 degrees C. Two isotherms models were applied to describe the interaction between the biosorbent and Al3+. Non-living biomass of P. putida A (ATCC 12633) was found to be the most efficient at adsorbing Al3+ with a maximum sorption capacity of 0.55 mg Al3+/gr adsorbent and with 36 x 10(5) binding sites of Al3+/microorganisms. Infrared spectroscopy analysis shows that the biosorbent present some vibrational band of functional groups that change in presence of Al3+: hydroxyl, carboxyl and phosphate. Considering that Al3+ binds to the phosphate group of phosphatidylcholine, non-viable biomass of P. putida PB01 (mutant lacking phosphatidylcholine) was used. Aluminum adsorption of the parental strain was 30 times higher than values registered in P. putida PB01 (36 x 10(5) sites/microorganism vs 1.2 x 10(5) sites/microorganism, respectively). This result evidenced that the absence of phosphatidylcholine significantly affected the availability of the binding sites and consequently the efficiency of the biomass to adsorb Al3+. (C) 2016 Elsevier B.V. All rights reserved.
机译:恶臭假单胞菌A(ATCC 12633)的有生命和无生命生物量被用作从水溶液中去除Al3 +的生物吸附剂。该过程随时间稳定,在pH值4.3和15℃至42℃之间有效。使用了两个等温线模型来描述生物吸附剂和Al3 +之间的相互作用。已发现恶臭假单胞菌A(ATCC 12633)的非生物质最有效地吸附Al3 +,最大吸附容量为0.55 mg Al3 + / gr吸附剂,并具有36 x 10(5)的Al3 + /微生物结合位点。红外光谱分析表明,生物吸附剂存在一些官能团的振动带,这些振动带会在Al3 +的存在下发生变化:羟基,羧基和磷酸根。考虑到Al 3+与磷脂酰胆碱的磷酸基团结合,使用恶臭假单胞菌PB01(缺乏磷脂酰胆碱的突变体)的无效生物量。亲本菌株的铝吸附量比恶臭假单胞菌PB01中的铝吸附值高30倍(分别为36 x 10(5)个位点/微生物与1.2 x 10(5)个位点/微生物)。该结果证明,不存在磷脂酰胆碱会显着影响结合位点的可用性,并因此影响生物质吸附Al 3+的效率。 (C)2016 Elsevier B.V.保留所有权利。

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