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Production of a microcapsule agent of chromate-reducing Lysinibacillus fusiformis ZC1 and its application in remediation of chromate-spiked soil

机译:减少铬酸盐的梭状芽孢杆菌ZC1微胶囊剂的生产及其在铬酸盐污染土壤修复中的应用

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摘要

Lysinibacillus fusiformis ZC1 is an efficient Cr(VI)-reducing bacterium that can transform the toxic and soluble chromate [Cr(VI)] form to the less toxic and precipitated chromite form [Cr(III)]. As such, this strain might be applicable for bioremediation of Cr(VI) in soil by reducing its bioavailability. The study objective was to prepare a microcapsule agent of strain ZC1 for bioremediation of Cr(VI)-contaminated soil. Using a single-factor orthogonal array design, the optimal fermentation medium was obtained and consisted of 6 g/L corn flour, 12 g/L soybean flour, 8 g/L NH4Cl and 6 g/L CaCl2. After enlarged fermentation, the cell and spore densities were 5.9 × 109 and 1.7 × 108 cfu/mL, respectively. The fermentation products were collected and embedded with 1 % gum arabic and 1 % sorbitol as the microcapsule carriers and were subsequently spray-dried. Strain ZC1 exhibited viable cell counts of (3.6 ± 0.44) × 1010 cfu/g dw after 50-day storage at room temperature. In simulated soil bioremediation experiments, 67 % of Cr(VI) was reduced in 5 days with the inoculation of this microcapsule agent, and the Cr(VI) concentration was below the soil Cr(VI) standard level. The results demonstrated that the microcapsule agent of strain ZC1 is efficient for bioremediation of Cr(VI)-contaminated soil.
机译:梭状芽孢杆菌ZC1是一种有效的减少Cr(VI)的细菌,可将有毒和可溶性的铬酸盐[Cr(VI)]形式转化为毒性较小和沉淀的亚铬酸盐形式[Cr(III)]。因此,该菌株可通过降低其生物利用度而适用于土壤中Cr(VI)的生物修复。研究目的是制备菌株ZC1的微囊剂,用于生物修复受Cr(VI)污染的土壤。使用单因素正交阵列设计,获得了最佳发酵培养基,该培养基由6 g / L玉米粉,12 g / L大豆粉,8 g / L NH4Cl和6 g / L CaCl2组成。扩大发酵后,细胞和孢子密度分别为5.9×10 9 和1.7×10 8 cfu / mL。收集发酵产物并用1%阿拉伯胶和1%山梨糖醇作为微胶囊载体包埋,然后喷雾干燥。在室温下保存50天后,菌株ZC1的活细胞数为(3.6±0.44)×10 10 cfu / g dw。在模拟的土壤生物修复实验中,接种这种微胶囊剂可在5天内减少67%的Cr(VI),并且Cr(VI)的浓度低于土壤Cr(VI)的标准水平。结果表明,菌株ZC1的微胶囊剂可有效修复受Cr(VI)污染的土壤。

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