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首页> 外文期刊>The Science of the Total Environment >Evaluating formulation and storage of Arthrobacter aurescens strain TC1 as a bioremediation tool for terbuthylazine contaminated soils: Efficacy on abatement of aquatic ecotoxicity
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Evaluating formulation and storage of Arthrobacter aurescens strain TC1 as a bioremediation tool for terbuthylazine contaminated soils: Efficacy on abatement of aquatic ecotoxicity

机译:评价节杆菌菌株TC1的配制和储存,作为TC污染土壤的生物修复工具:减轻水生生态毒性的功效

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Recently, a bioremediation tool consisting of freshly grown cells of the Arthrobacter aurescens strain TC1 proved successful in the cleanup of terbuthylazine (TBA) contaminated soil, with potential to prevent TBA dispersal via the soil-water pathway. The present work aimed at examining the feasibility of preparing and formulating bioaugmentation bacterial cells in advance which retain adequate viability and herbicide-degrading activity during storage and transport to contaminated sites. Three different types of formulation of A. aurescens TC1 cells were performed, namely cell paste, lyophilized, and adsorbed onto the mineral carrier vermiculite. Vermiculite-based cell material and cell paste offered survival rates significantly higher (= 78% of cells recovered viable, when compared to the initial numbers) than lyophilized cells (= 65%) after storage at 4 degrees C for up to a maximum period of 30 days. Inocula prepared from the three types of formulated and stored cells supported adequate levels of herbicide-biodegradation activity, ultimately allowing an almost complete removal of TBA from either liquid buffer or soil. In soil microcosms, the efficacy of bioremediation of TBA-contaminated soil in terms of decontamination (%) based on the ecotoxicity assessment of soil eluates towards a freshwater microalga was found to differ within formulations in the order: lyophilized cells (similar to 100% efficacy at the end of one or two weeks of bioremediation treatment with an initial inoculum of similar to 2.5 x 10(7) viable cells/g of soil; similar to fresh cells) vermiculite-adsorbed cells (81% with similar to 2.4 x 10(8) cells/g) cell paste (68% with similar to 2.4 x 10(8) cells/g). The limitations and advantages of each type of bacterial formulation, together with the prediction of their applicability in the field are discussed. (C) 2019 Elsevier B.V. All rights reserved.
机译:最近,事实证明,由金黄色节杆菌菌株TC1的新鲜生长细胞组成的生物修复工具已成功清除了被叔丁嗪(TBA)污染的土壤,并有望防止TBA通过土壤-水途径扩散。目前的工作旨在检查事先准备和配制生物强化细菌细胞的可行性,该细菌细胞在储存和运输到受污染的地点期间仍具有足够的活力和除草剂降解活性。进行了三种不同类型的金黄色葡萄球菌TC1细胞的配制,即细胞糊剂,冻干并吸附到矿物载体ver石上。以4石为基础的细胞材料和细胞糊剂在4摄氏度下储存后的存活率(> == 78%,比初始数目大得多)比冻干细胞(> => 65%)高。期限为30天。由三种配制和储存的细胞制备的接种物具有足够水平的除草剂生物降解活性,最终使液体缓冲液或土壤中的TBA几乎完全去除。在土壤微观世界中,根据土壤洗出液对淡水微藻的生态毒性评估,以去污率(%)表示的TBA污染土壤的生物修复功效在配方内的顺序不同:冻干细胞(类似于100%功效)在一两周的生物修复处理结束时,初始接种量约为2.5 x 10(7)个活细胞/克土壤;类似于新鲜细胞)> ver石吸附的细胞(81%的吸附量类似于2.4 x 10 (8)个细胞/ g)>细胞糊(68%,类似于2.4 x 10(8)个细胞/ g)。讨论了每种细菌制剂的局限性和优势,以及它们在该领域的适用性预测。 (C)2019 Elsevier B.V.保留所有权利。

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