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Integrated Sonochemical and Microbial Treatment for Decontamination of Nonylphenol-Polluted Water

机译:声化学和微生物综合处理对壬基酚污染的水进行去污

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摘要

Advanced oxidation processes (AOPs) are among the most efficient methods for wastewater treatment. To achieve the degradation of persistent organic pollutants (POPs), AOPs have been developed that employ Fenton reactions promoted by ultrasound (US) or microwaves (MW). Integrated methods combining AOPs with biological treatments are also of great interest. The present paper describes such an integrated approach for the decontamination of water from nonylphenol (NP), a common pollutant that accumulates in aquatic organisms and is quite resistant to biodegradation. Polluted water (containing 1,000 ppm of NP) was sequentially subjected to a sonochemical Fenton reaction and biosorption by the filamentous fungus Paecilomyces lilacinus. Although these methods can be used separately, the sequential approach proved more advantageous. In 1 h the sonochemical oxidation, carried out in a 300 kHz US-reactor equipped with a cooling system, halved NP content in polluted water, as determined by GC- MS analysis. The water was then inoculated with pure cultures of the fungus, whose mycelial biomass further reduced NP content in 7 days. Thus an initial NP concentration of 1,000 ppm was reduced approximately by 90%.
机译:先进的氧化工艺(AOP)是最有效的废水处理方法之一。为了实现持久性有机污染物(POPs)的降解,已经开发出了AOP,其采用了超声(US)或微波(MW)促进的Fenton反应。将AOP与生物治疗相结合的集成方法也引起了人们的极大兴趣。本文介绍了一种从壬基酚(NP)中去除水污染的综合方法,壬基酚(NP)是一种在水生生物中积累的常见污染物,具有很强的生物降解能力。污染的水(包含1,000 ppm的NP)随后会通过丝状真菌淡紫色拟青霉进行声化学Fenton反应和生物吸附。尽管这些方法可以单独使用,但是顺序方法被证明更具优势。在1 h内,通过配备冷却系统的300 kHz US反应器进行声化学氧化,通过GC-MS分析测定,将污水中的NP含量减半。然后用纯真菌培养物接种水,其菌丝体生物量在7天内进一步降低了NP含量。因此,初始NP浓度为1,000 ppm大约减少了90%。

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