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Pentachlorophenol Removal from Water by Soybean Peroxidase and Iron(Ⅱ) Salts Concerted Action

机译:五氯苯酚通过大豆过氧化物酶和铁(Ⅱ)盐齐全的作用

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摘要

Soybean peroxidase (SBP) has been employed for the treatment of aqueous solutions containing pentachlorophenol (PCP) in the presence of hydrogen peroxide at pH range 5-7. Reaction carried out with 1mg/L of PCP, 4mg/L of H2O2, and 1.3x10(-9)M of SBP showed a fast initial elimination of PCP (ca. 30% in 20min), but the reaction does not go beyond the removal of 50% of the initial concentration of PCP. Modification in SBP and PCP amounts did not change the reaction profile and higher amounts of H2O2 were detrimental for the reaction. Addition of Fe(II) to the system resulted in an acceleration of the process to reach nearly complete PCP removal at pH 5 or 6; this is more probably due to a synergetic effect of the enzymatic process and Fenton reaction. However, experiments developed in tap water resulted in a lower PCP elimination, but this inconvenience can be partly overcome by leaving the tap water overnight in an open vessel before reaction.
机译:已经使用大豆过氧化物酶(SBP)用于在pH范围5-7的过氧化氢存在下处理含有五氯苯酚(PCP)的水溶液。用1mg / L的PCP,4mg / L的H2O2和1.3×10(-9)M m含有SBP的反应显示,SBP的快速初始消除PCP(约30分钟内30%),但反应不会超越去除PCP的初始浓度的50%。 SBP和PCP的改性不改变反应曲线,更高量的H 2 O 2对反应有害。向系统添加Fe(II)导致加速过程以在pH 5或6处达到几乎完全的PCP去除;这更可能是由于酶促过程和芬顿反应的协同作用。然而,在自来水中开发的实验导致了PCP消除较低,但在反应前将自来水过夜留下自来水过夜可以部分地克服这种不便。

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