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Advanced oxidation processes for recalcitrant compounds removal comparison with biofiltration by Corbicula fluminea

机译:高级氧化方法,用于通过Corbicula Flumea与生物滤膜去除比较

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Conventional treatments cannot remove the emerging contaminants due to their refractory character, therefore improved methodologies should be applied for obtaining their total removal. The need of development of suitable technologies to treat these recalcitrant compounds is related with the wastewater reclamation. Advanced oxidation technologies such as photocatalysis and ozonation appear as suitable solutions for recalcitrant compounds removal. Moreover, the biofiltration can be applied as a pest management approach integrated with wastewater treatment. Due to the invasive character of Corbicula fluminea their usage as biofilter hosts can work as a reduction of their impact over native species or industrial damage. These methodologies were used to promote the degradation of a mixture of SMX, CBZ and LRZ at initial concentration of 1 mg/L of each one. Single ozonation was capable to remove totally SMX and CBZ in 5 min. Whereas only 50% of LRZ were removed in 60 min. The weather can affect the sunlight radiation photon flux which will promote impact on the photocatalytic oxidation using 1?wt% of Ag and Pd-TiO2 as catalysts, for SMX, CBZ and LRZ abatement. C. fluminea was capable to remove about 30% of CBZ and LRZ in 24h.
机译:由于其耐火性特征,常规治疗不能除去新兴污染物,因此应施加改进的方法来获得总去除。需要开发合适的技术来治疗这些醋酸化合物的额外的化合物与废水填海有关。光催化和臭氧等先进的氧化技术表现为核批量化合物去除的合适溶液。此外,生物滤光可以作为与废水处理一体化的害虫管理方法应用。由于Corbicula Fluminea的侵袭性,因为生物过滤器主持人可以作为对原生物种或工业损伤的影响降低。这些方法用于促进SMX,CBZ和LRZ的混合物的降解,每种初始浓度为1mg / L.单一臭氧能够在5分钟内全部除去全部SMX和CBZ。然而,只有50%的LRZ在60分钟内除去。天气可能会影响阳光辐射光子磁通,这将促进使用1·wt%的Ag和Pd-TiO2作为催化剂对光催化氧化的影响,用于SMX,CBZ和LRZ减排。 C.24h的培养物能够去除约30%的CBZ和LRZ。

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