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首页> 外文期刊>Journal of Environmental Science and Health >Biodegradation of bisphenol-A in river sediment
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Biodegradation of bisphenol-A in river sediment

机译:河流沉积物中双酚A的生物降解

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This research investigated the aerobic and anaerobic degradation of bisphenol-A (BPA) in river sediment. With the addition of 250 μg g~(-1) BPA, the percentages of BPA remaining in sediment from sites A, B, and C were 21.9 %, 3.5 % and 12.5 %, respectively, after 5 days of incubation under aerobic conditions; degradation was not significant after 140 days of incubation under anaerobic conditions. The aerobic degradation of BPA was enhanced by adding yeast extract (5 mg L(-1)), sodium chloride (1 %), cellulose (0.96 mg L(-1)), brij 30 (55 Μm), brij 35 (91 Μm), rhamnolipid (130 mg L~(-1)), or surfactin (43 mg L~(-1)), with rhamnolipid yielding higher BPA degradation than the other additives. 2,4-bis (1,1-dimethyl ethyl) phenol, an intermediate product resulting from the aerobic degradation of BPA was accumulated in sediments. Of the bacterial strains isolated from the sediment, strains J1, J2, J3, and J4 expressed the best aerobic degrading ability. The highest BPA degradation rate was found in the sediment by the addition of strains J1, J2, J3, and J4 combined, whereas the sediment without the addition of the 4 strains had the lowest biodegradation rate. This research offers feasible methods for the removal of BPA in river sediment for bioremediation.
机译:本研究调查了河流沉积物中双酚A(BPA)的需氧和厌氧降解。在有氧条件下孵育5天后,添加250μgg〜(-1)BPA,A,B和C位点沉积物中残留的BPA百分比分别为21.9%,3.5%和12.5%。在厌氧条件下孵育140天后,降解不明显。通过添加酵母提取物(5 mg L(-1)),氯化钠(1%),纤维素(0.96 mg L(-1)),brij 30(55μm),brij 35(91)可增强BPA的有氧降解),鼠李糖脂(130 mg L〜(-1))或表面活性素(43 mg L〜(-1)),鼠李糖脂的BPA降解率高于其他添加剂。 2,4-双(1,1-二甲基乙基)苯酚是由BPA的需氧降解产生的中间产物,它沉积在沉积物中。从沉积物中分离出的细菌菌株中,菌株J1,J2,J3和J4表现出最佳的有氧降解能力。通过添加菌株J1,J2,J3和J4组合,在沉积物中发现最高的BPA降解速率,而未添加这4个菌株的沉积物中的生物降解速率最低。该研究为去除河道底泥中的双酚A提供了可行的生物修复方法。

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