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首页> 外文期刊>Ultrasonics sonochemistry >Hydrodynamic cavitation assisted degradation of persistent endocrine-disrupting organochlorine pesticide Dicofol: Optimization of operating parameters and investigations on the mechanism of intensification
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Hydrodynamic cavitation assisted degradation of persistent endocrine-disrupting organochlorine pesticide Dicofol: Optimization of operating parameters and investigations on the mechanism of intensification

机译:持续内分泌破坏有机氯农药Dicofol的流体动力空化辅助降解:优化运行参数和对强化机制的研究

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Dicofol, a recommended Stockholm convention persistent organic pollutants (POPs) candidate is well known for its endocrine disruptive properties and has been extensively used as an organochlorine pesticide worldwide. The hydrodynamic cavitation (HC) treatment of Dicofol in aqueous media induced by a liquid whistle hydrodynamic cavitaion reactor (LWHCR) has been investigated while considering important parameters such as inlet pressure, initial concentration of Dicofol, solution temperature, pH, addition of H2O2 and radical scavenger for the extent of degradation. The pseudo-first-order degradation rate constant (k) was determined to be 0.073 min(-1) with a cavitational yield of 1.26 x 10(-5) mg/J at optimum operating conditions and a complete removal of Dicofol was achieved within 1 h of treatment. Considering the removal rate and energy efficiency, the optimal inlet pressure was found to be 7 bar, resulting in a cavitation number of 0.17. High performance liquid chromatography (HPLC) and Gas chromatography mass spectroscopy (GC-MS) analyses indicated a sharp decline in the concentration of Dicofol with treatment time and indicated the presence of degraded products. An 85% total organic carbon (TOC) removal was achieved within 1 h of treatment time, demonstrating successful mineralization of Dicofol. The obtained results suggest that the degradation of Dicofol followed thermal decomposition and successive recombination reactions at bubble-vapor interface. Overall, the attempted hydrodynamic cavitation demonstrated successful and rapid removal of endocrine disruptive chemicals such as Dicofol and is expected to provide efficient solution for wastewater treatment.
机译:Dicofol,推荐的斯德哥尔摩公约持久性有机污染物(POPS)候选人均以其内分泌破坏性特性众所周知,并且已广泛用作全球有机氯农药。在考虑重要参数如入口压力,初始浓度的二氯酚,溶液温度,pH,加入H2O2和自由基的情况下,研究了液体口哨流动力学录音机(LWhcr)诱导的水性介质中的水性介质(LWhcr)的水性空化(HC)处理。清道夫为退化程度。在最佳操作条件下测定伪一阶降解速率常数(K)为0.073 min(-1),可容积1.26×10(-5)mg / j,在内部实现了完全除去二氯二醇1小时治疗。考虑到去除率和能量效率,发现最佳入口压力是7巴,导致空化数为0.17。高效液相色谱(HPLC)和气相色谱质谱(GC-MS)分析表明二摩洛浓度急剧下降,治疗时间并表明存在降解产物。在治疗时间的1小时内实现了85%的总有机碳(TOC)去除,证明了二脱奖的成功矿化。得到的结果表明,在气泡 - 蒸汽界面下的热分解和连续重组反应的降解。总的来说,尝试的流体动力空化证明了成功且快速地去除了内分泌破坏性化学品,如Dicofol,并且预期为废水处理提供有效的解决方案。

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