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首页> 外文期刊>Environmental Science and Pollution Research >Biodegradation of microcystin-RR and nutrient pollutants using Sphingopyxis sp. YF1 immobilized activated carbon fibers-sodium alginate
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Biodegradation of microcystin-RR and nutrient pollutants using Sphingopyxis sp. YF1 immobilized activated carbon fibers-sodium alginate

机译:微囊糖素-RR和营养污染物的生物降解使用鞘皮XIS SP。 YF1固定化活性炭纤维 - 海藻酸钠

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摘要

A novel biological material named activated carbon fibers-sodium alginate@Sphingopyxis sp. YF1 (ACF-SA@YF1) was synthesized for microcystin-RR (MC-RR) and nutrient pollutant degradation in eutrophic water. The synthesized biomaterial was characterized by scanning electron microscopy (SEM). Box-Behnken design and response surface methodology (RSM) were utilized for the optimization of conditions during the MC-RR degradation. The degradation of MC-RR and nutrient pollutants was dynamically detected. The results revealed that the optimal conditions were temperature 32.51 degrees C, pH 6.860, and inoculum 14.97%. The removal efficiency of MC-RR, nitrogen, phosphorus, and chemical oxygen demand were 0.76 mu g/mL/h, 32.45%, 94.57%, and 64.07%, respectively. In addition, ACF-SA@YF1 also performed satisfactory cyclic stability, while the MC-RR removal efficiency was 70.38% after seven cycles and 78.54% of initial activity after 20 days of storage. Therefore, it is reasonable to believe that ACF-SA@YF1 is an effective material which has a great prospect in removing MC-RR and nutrients from freshwater ecosystems.
机译:一种名为活性炭纤维的新型生物材料 - 海藻酸钠纯化XIS SP。 YF1(ACF-SA @ YF1)是用于微囊藻(MC-RR)和富营养化水中的营养污染物降解。通过扫描电子显微镜(SEM)的特征在于合成的生物材料。 Box-Behnken设计和响应表面方法(RSM)用于在MC-RR降解期间优化条件。动态检测MC-RR和营养污染物的降解。结果表明,最佳条件为温度为32.51℃,pH6.860和接种物,14.97%。 MC-RR,氮,磷和化学需氧量的去除效率分别为0.76μg/ ml / h,32.45%,94.57%和64.07%。此外,ACF-SA @ YF1还进行了令人满意的循环稳定性,而MC-RR去除效率在7个循环后的70.38%,储存20天后的初始活性的78.54%。因此,相信ACF-SA @ YF1是一种有效的材料是合理的,其具有从淡水生态系统中去除MC-RR和营养素的巨大前景。

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