首页> 外文期刊>Comptes Rendus de l'Academie Bulgare des Sciences: Sciences Mathematiques et Naturelles >PREPARATION OF NANO-BIOMATERIALS WITH LEPTOLYNGBIA FOVEOLARUM AND HEAVY METAL BIOSORPTION BY FREE AND IMMOBILIZED ALGAL CELLS
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PREPARATION OF NANO-BIOMATERIALS WITH LEPTOLYNGBIA FOVEOLARUM AND HEAVY METAL BIOSORPTION BY FREE AND IMMOBILIZED ALGAL CELLS

机译:游离和固定化藻类细胞制备具有鳞翅目小球藻的纳米生物材料和重金属的生物吸附

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摘要

Using the sol-gel procedure nano-biomaterials with incorporation of Lep-tolyngbia foveolarum in the silica matrix were manufactured. The immobiliza-tion of algal cells was confirmed with Scanning Electron Microscopy (SEM) investigations and photos. Observation of nano-biomaterials with Atomic Force Microscopy (AFM) shows nanostructure with well-defined nanounits and their aggregates. The potential of the Antarctic isolate L. foveolarum for sorption of Cu~(2+) and Cd~(2+) was studied by incubation of free algal cells and those immobilized in nano-biomaterials in the salts solutions of the two heavy metals. The rest of the heavy metal was determined with inductively coupled plasma atomic emission spectrometer (ICP-AES). It was established that the heavy metal biosorption capacity demonstrated by the free Leptolyngbia cells was retained after their incorporation in the nano-matrices. Free cells as well as embedded in silica nano-matrix sequestered the two heavy metals with greater affinity for copper. The highest binding capacity, 76% of the initial Cu~(2+) concentration possessed nano-biomaterials with incorporated vegetative L. foveolarum cells, compared to 68% of free cells. For cadmium the degree of biosorption was lower - 35% by free cells and 30.2% by those incorporated in the biocer.
机译:使用溶胶-凝胶法,制备了在二氧化硅基质中掺入了黄褐藻的纳米生物材料。藻类细胞的固定化已通过扫描电子显微镜(SEM)研究和照片得到证实。用原子力显微镜(AFM)观察纳米生物材料显示出具有明确定义的纳米单元及其聚集体的纳米结构。通过在两种重金属盐溶液中孵育游离藻类细胞和固定在纳米生物材料中的纳米藻,研究了南极分离物黄褐藻对Cu〜(2+)和Cd〜(2+)的吸附潜力。其余的重金属用电感耦合等离子体原子发射光谱仪(ICP-AES)测定。已经确定,通过将游离的鳞小鳞茎细胞掺入纳米基质中,其保留的重金属生物吸附能力得以保留。游离细胞以及嵌入二氧化硅纳米基质中的螯合剂螯合了两种重金属,对铜的亲和力更高。最高的结合能力是初始Cu〜(2+)浓度的76%具有纳米生物材料,其中掺入了营养性黄褐紫苏菌细胞,而游离细胞的68%。对于镉而言,其生物吸附度较低-游离细胞为35%,而掺入生物杀菌剂中的为30.2%。

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