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耐汞假单胞菌 FB-1 连续培养生物去除无机 Hg(II)为气态元素 Hg(0)。

Biological removal of inorganic Hg(II) as gaseous elemental Hg(0) by continuous culture of a Hg-resistant Pseudomonas putida strain FB-1.

机构信息

Dipartimento di Biologia Ambientale, Università di Siena, Via P.A. Mattioli 4, I-53100, Siena, Italy.

出版信息

World J Microbiol Biotechnol. 1993 Mar;9(2):275-9. doi: 10.1007/BF00327854.

Abstract

A strain of broad-spectrum, mercury-resistant Pseudomonas putida FB1 was used to remove mercury as the gaseous element (Hg(0)) from a continuous axenic culture, fed with a synthetic medium containing 1 mg Hg l(-1) as HgCl2. Mercury determinations were performed in steady-state cultures using various culture fractions [whole culture, filtered supernatant, bacterial cells (dry wt), recovery trap liquid] in order to determine the removal efficiency at different dilution rates (from 0.1 to 3.0 day(-1)). The removal efficiency ranged from 99.2% to 99.8%, and the residual Hg was maintained below 5 μ l(-1) (the maximum allowable concentration of Hg in liquid wastes according to Italian law) at a dilution rate of 1.0 day(-1), corresponding to a Hg flux of 40 μg l(-1) h(-1). Hg accumulation by cell biomass was negligible for dilution rates under 1.0 day(-1). A progressive accumulation of Hg, both in the liquid phase and in cells, occurred at a higher dilution rate (3.0 day(-1); close to washout), corresponding to a Hg concentration of 25 μg g(-1) (dry wt). The estimated Km and Vmax for Hg reduction were 0.241 mg l(-1) and 9.5 mg g(-1) h(-1), respectively. In batch experiments maximum Hg removal occurred at the optimum growth temperature (28°C) of P. putida. The maximum recovery of Hg in the liquid trap was 78%.

摘要

一株广谱、抗汞假单胞菌 FB1 被用于从连续的无菌培养物中去除气态汞(Hg(0)),该培养物以含有 1 mg Hg l(-1) 作为 HgCl2 的合成培养基为食。在稳态培养物中使用不同的培养物馏分(整个培养物、过滤上清液、细菌细胞(干重)、回收阱液体)进行汞测定,以确定在不同稀释率(从 0.1 到 3.0 天(-1))下的去除效率。去除效率从 99.2%到 99.8%不等,在稀释率为 1.0 天(-1)时,残留的汞保持在 5 μ l(-1) 以下(根据意大利法律,液体废物中汞的最大允许浓度),对应的 Hg 通量为 40 μg l(-1) h(-1)。在稀释率低于 1.0 天(-1)时,细胞生物量对 Hg 的积累可以忽略不计。在较高的稀释率(3.0 天(-1);接近洗出)下,无论是在液相还是在细胞中,Hg 都会发生逐渐积累,对应的 Hg 浓度为 25 μg g(-1)(干重)。Hg 还原的估计 Km 和 Vmax 分别为 0.241 mg l(-1) 和 9.5 mg g(-1) h(-1)。在分批实验中,Hg 的最大去除发生在假单胞菌的最佳生长温度(28°C)。液体阱中 Hg 的最大回收率为 78%。

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