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Different optimization conditions required for enhancing the biodegradation of linear alkylbenzosulfonate and sodium dodecyl sulfate surfactants by novel consortium of Acinetobacter calcoaceticus and Pantoea agglomerans

机译:钙乙酸不动杆菌和团聚体的新型财团增强线性烷基苯甲磺酸盐和十二烷基硫酸钠表面活性剂生物降解所需的不同优化条件

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摘要

The anionic surfactants linear alkylbenzosulfonate (LAS) and sodium dodecyl sulfate (SDS) were degraded by a consortium of the mixed facultative anaerobes Acinetobacter calcoaceticus and Pantoea agglomerans which were isolated from wastewater. The growth of this consortium in nutrient broth medium at temperature of 30 °C; pH 8.5; and agitation rates of 250 rpm, was able to degrade high biomass of the two surfactants. Under these growth conditions a complete degradation of 4000 ppm SDS biomass was achieved within 120h incubation time while a longer period (150 h) was capable of degrading only 60% of 300 ppm LAS biomass. However, a full degradation of LAS was accomplished by additional supplementation of the mixed culture with some carbon sources. Also, an alternative supplementation with nitrogen nutrients has increased the biodegradation extent of LAS from 60% to 90%. In contrast, such supplementation of the mixed culture with carbon and nitrogen nutrients had adverse effects on the induction of SDS degradation.Both surfactants at higher concentrations became toxic to the mixed co-culture bacteria particularly affecting the A. calcoaceticus strain of the consortium.The supplementation of either surfactant as sole carbon source to the mixed culture growing in minimal medium produced 10% degradation of SDS and 60% degradation of LAS, respectively. These data are discussed in terms of differences between the enzymic induction of LAS and SDS bacterial biodegradation.
机译:阴离子表面活性剂线性烷基苯甲磺酸盐(LAS)和十二烷基硫酸钠(SDS)被混合的兼性厌氧菌钙乙酸不动杆菌和泛细菌团聚体降解,这些厌氧菌是从废水中分离出来的。该财团在温度为30°C的营养肉汤培养基中的生长; pH值8.5; 250rpm的搅拌速率能够降解两种表面活性剂的高生物量。在这些生长条件下,在120h的孵育时间内可完全降解4000 ppm SDS生物质,而更长的时间(150 h)只能降解300 ppm LAS生物质的60%。但是,通过向混合培养物中补充一些碳源,可以完全降解LAS。另外,氮素营养的替代补充已使LAS的生物降解程度从60%增加到90%。相比之下,向混合培养物中添加碳和氮养分会对SDS降解产生不利影响。较高浓度的两种表面活性剂均对混合共培养细菌有毒,特别影响财团的A.calcoaceticus菌株。向在基本培养基中生长的混合培养物中补充两种表面活性剂作为唯一的碳源,分别导致SDS降解10%和LAS降解60%。根据LAS的酶促诱导与SDS细菌生物降解之间的差异讨论了这些数据。

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