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Chromium(VI) bioaccumulation capacities of adapted mixed cultures isolated from industrial saline wastewaters

机译:从工业盐水废水中分离出来的适应性混合培养物的铬(VI)生物富集能力

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Enrichment mixed cultures tolerating relatively high concentrations of chromium and salt ions were isolated and their bioaccumulation properties improved by adaptation. Mixed cultures were enriched in Nutrient Broth media containing 25-300 mg 1(-1) Cr(VI) and 0%, 2%, 4%, 6% (w/v) NaCl. Bioaccumulation of Cr(VI) was studied in a batch system as a function of initial pH (7, 8 and 9), Cr(VI) and NaG concentrations. Increasing NaCl and Cr(VI) concentrations led to significant decreases in percentage uptake and dried weight of mixed cultures but increased maximum specific chromium uptake. The maximum specific chromium uptake value at pH 8 was 58.9 mg g(-1) for 316.1 mg 1(-1) Cr(VI) in the absence of NaCl, while at pH 9 it was 130.1 mg g(-1) in media including 194.5 mg 1(-1) Cr(VI) and 2% NaCl concentrations. At 4% NaCl, the maximum Cr(VI) uptake of 127.0 mg g(-1) for 221.1 mg 1(-1) Cr(VI) occurred at pH 9, while at 6% NaCl the maximum Cr(VI) uptake of 114.9 mg g(-1) for 278.1 mg 1(-1) Cr(VI) was found at pH 7. (c) 2006 Elsevier Ltd. All rights reserved.
机译:分离了耐受相对较高浓度的铬和盐离子的富集混合培养物,并通过适应提高了它们的生物蓄积性能。混合培养物富含含有25-300 mg 1(-1)Cr(VI)和0%,2%,4%,6%(w / v)NaCl的营养肉汤培养基。在分批系统中研究了Cr(VI)的生物蓄积,该生物富集是初始pH(7、8和9),Cr(VI)和NaG浓度的函数。 NaCl和Cr(VI)浓度的增加导致混合培养物的摄取百分比和干重显着降低,但最大比铬摄取增加。在不存在NaCl的情况下,pH值为8时316.1 mg 1(-1)Cr(VI)的最大比铬吸收值为58.9 mg g(-1),而在pH 9中,介质中的最大铬吸收值为130.1 mg g(-1)包括194.5 mg 1(-1)Cr(VI)和2%NaCl浓度。在4%NaCl浓度下,221.1 mg 1(-1)Cr(VI)的最大Cr(VI)吸收量为pH值为9时的221.1 mg 1(-1),而在6%NaCl浓度下,最大Cr(VI)吸收量为127.0 mg g(-1)。在pH值为7时发现114.9 mg g(-1)表示278.1 mg 1(-1)Cr(VI)。(c)2006 Elsevier Ltd.保留所有权利。

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