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Hemoglobin immobilized on mesOporous silica as effective material for the removal of polycyclic aromatic hydrocarbons pollutants from water

机译:固定在介孔二氧化硅上的血红蛋白是从水中去除多环芳烃污染物的有效材料

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摘要

Free hemoglobin (Hb) in water at pH 5 is able to oxidize 11 polycyclic aromatic hydrocarbons (PAH) (300 nM each) in the presence of H2O2 amounting to 75% PAH removal. PAH are carcinogenic, mutagenic and xenobiotic pollutants found in wastewaters of oil refineries. However Hb is pH sensitive and is effective only at pH 5. In order to use Hb for real wastewater treatment (6.5 < pH < 8.5), Hb was immobilized by simple adsorption in selected large pore mesoporous silicas at a loading of 300 mg Hb per g silica. The reaction of Hb with PAH is pseudo-catalytic because an excess of H2O2 ([H2O2]/[PAH] > 2500) and of Hb ([Hb]/[PAH] > 2) is necessary to reach an optimal PAH removal. The excess of Hb depends on the PAH physico-chemical characteristics. At pH = 7, the activity of free Hb decreased to 47% of PAH removal, whereas the Hb-immobilized silica allowed 82% of PAH removal. Immobilization of Hb in silicas leads to a protection of Hb towards pH, solvent, temperature and inactivation by H2O2. These results open the perspective for a new biotechnology process aimed at cleaning contaminated wastewaters by a reactive adsorption process followed by filtration.
机译:水中的游离血红蛋白(Hb)在pH 5时能够在存在H2O2的情况下氧化11种多环芳烃(PAH)(各自为300 nM),PAH去除率达到75%。 PAH是在炼油厂废水中发现的致癌,致突变和异源污染物。但是,Hb对pH敏感,并且仅在pH 5时才有效。为了将Hb用于实际废水处理(6.5 H <8.5),通过简单吸附将Hb固定在选定的大孔介孔二氧化硅中,负载量为300 mg Hb克二氧化硅。 Hb与PAH的反应是假催化,因为要达到最佳的PAH去除率,必须过量的H2O2([H2O2] / [PAH]> 2500)和Hb([Hb] / [PAH]> 2)。 Hb的过量取决于PAH的理化特性。在pH = 7时,游离Hb的活性降低到PAH去除的47%,而固定化Hb的二氧化硅则可以去除82%的PAH。 Hb在二氧化硅中的固定化导致Hb对pH,溶剂,温度的保护以及H2O2的灭活作用。这些结果为一种新的生物技术工艺开辟了前景,该工艺旨在通过反应性吸附工艺然后过滤来净化受污染的废水。

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