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Enhanced removal of dissolved aniline from water under combined system of nano zero-valent iron and Pseudomonas putida

机译:纳米零价铁与恶臭假单胞菌的联合体系增强了从水中去除溶解的苯胺的能力

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Aniline is a toxic chemical released by many industries. Removal of pollutants by micro-organisms is the most recent area of research whereas nano zero valent iron (nZVI) in recent time has been widely used in treatment of groundwater. The present study aims to understand the nature of interaction of nZVI with bacteria and removal of aniline under a combined system of bacteria and nZVI. nZVI were synthesized through conventional process and its adsorption studies on aniline removal were performed. Pseudomonas putida MTCC 1194 strain was acclimatized to aniline in Basal salt medium for a period of 2 months. The maximum growth rate and yield coefficient of cells were determined and within 6 h 99 % removal of 200 ppm aniline was found to be achieved. Adsorption studies were performed using nZVI of different concentration on 200 ppm aniline for 6 h. Maximum aniline removal was obtained at 85 % in distilled water and 92 % in basal salt medium, respectively using 5 g/L nZVI. nZVI was found to be growth inducer to the mentioned strain. A combined system of aniline removal was studied consisting of biodegradation and adsorption to nZVI in which 99 % aniline removal was obtained in 2.5 h containing 61 % of aniline removal through biodegradation and the rest through collective adsorption and biosorption. Maximum adsorption to nZVI was found during the lag phase of cell growth and on reaching log phase adsorption rate declined and removal through biodegradation dominated.
机译:苯胺是许多行业释放的有毒化学物质。微生物去除污染物是最近的研究领域,而最近的纳米零价铁(nZVI)已被广泛用于地下水处理。本研究旨在了解nZVI与细菌相互作用和在细菌与nZVI联合系统下去除苯胺的性质。通过常规工艺合成了nZVI,并进行了吸附去除苯胺的研究。将恶臭假单胞菌MTCC 1194菌株在基础盐培养基中使苯胺适应2个月。确定了细胞的最大生长速率和产量系数,发现在6小时内99%去除了200 ppm苯胺。在200 ppm苯胺上使用不同浓度的nZVI进行吸附研究6小时。使用5 g / L nZVI分别在蒸馏水中以85%的苯胺和在基础盐培养基中以92%的苯胺获得最大去除量。发现nZVI是所述菌株的生长诱导物。研究了由生物降解和吸附到nZVI组成的联合苯胺去除系统,其中2.5小时内获得99%苯胺去除,其中61%通过生物降解去除苯胺,其余通过集体吸附和生物吸附去除。在细胞生长的滞后阶段发现对nZVI的最大吸附,并且在达到对数期时,吸附速率下降,而通过生物降解的去除占主导。

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