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A combination of bentonite-supported bimetallic Fe/Pd nanoparticles and biodegradation for the remediation of p-chlorophenol in wastewater

机译:膨润土负载双金属Fe / Pd纳米颗粒与生物降解相结合修复废水中的对氯苯酚

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While it is possible to dechlorinate p-chlorophenol (p-CP) into phenol using iron-based nanoparticles, phenol is still a toxic contaminant. This study examines the complete degradation of p-CP using a combination of dechlorinating p-CP with bentonite-supported Fe/Pd nanoparticles (B/Fe/Pd), and the subsequent oxidation of phenol into non-toxic compounds via the Bacillus fusiformis (BFN) strain. Batch experiments showed that 98.7% of p-CP was dechlorinated and 92.3% of phenol was formed using 5 g/L of B/Fe/Pd in 120 min. With regard to biodegradation, the Bacillus fusiformis (BFN) strain grew well in the presence of B/Fe/Pd up to 2 g/L in medium. A high concentration of B/Fe/Pd added to the cell resulted in inhibited cell growth and SEM indicated that Fe/Pd nanoparticles adhered to cell membranes. However, 94.7% of phenol was removed using BFN in 12 h at pH 6.7,30 °C, and 0.2% of inoculum concentration in the presence of 2 g/L B/Fe/Pd. Furthermore, biodegradation kinetics fitted well to the pseudo first-order model. Finally, the method proposed here demonstrated the possibility of removing p-CP from wastewaters.
机译:尽管可以使用铁基纳米颗粒将对氯苯酚(p-CP)脱氯为苯酚,但苯酚仍然是有毒污染物。这项研究检查了将p-CP脱氯与膨润土负载的Fe / Pd纳米颗粒(B / Fe / Pd)结合使用后对p-CP的完全降解,以及随后苯酚芽孢杆菌将苯酚氧化为无毒化合物( BFN)应变。批量实验表明,使用120 g / L的5 g / L的B / Fe / Pd可以对98.7%的p-CP进行脱氯,并形成92.3%的苯酚。关于生物降解,在培养基中B / Fe / Pd高达2 g / L的情况下,梭状芽孢杆菌(BFN)菌株生长良好。高浓度的B / Fe / Pd添加到细胞中会导致细胞生长受到抑制,并且SEM表明,Fe / Pd纳米粒子粘附在细胞膜上。但是,在pH 6.7,30°C的条件下,在12小时内使用BFN去除了94.7%的苯酚,在2 g / L B / Fe / Pd的存在下去除了0.2%的接种物浓度。此外,生物降解动力学非常适合拟一级模型。最后,这里提出的方法证明了从废水中去除p-CP的可能性。

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