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Multistage fluidized bed bioreactor for dye decolorization using immobilized polyurethane foam: A novel approach

机译:用于使用固定化聚氨酯泡沫的染料脱色的多级流化床生物反应器:一种新的方法

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摘要

A multistage fluidized bed bioreactor (M-FBBR) was developed for Congo Red (CR) dye removal using Polyurethane foam (PUF)-immobilized Bacillus subtilis. The active surface area for microbial growth and biological interaction are important factors to be considered for immobilization mediated decolorization. In the present study, the active surface area can be improved in the reactor in two ways, (i) by avoiding the accumulation of PUF on the top surface of reaction volume and (ii) by providing free moving foams in larger number. To achieve this, existing FBBR was modified by introducing a porous stainless steel box (PSSB), which is au-toclavable, custom made, and cost-effective. To elucidate this, dye decolorization studies were conducted in both FBBR and M-FBBR. The enhanced CR dye removal was observed in M-FBBR. Further, optimization study for M-FBBR approach showing the maximum CR dye removal (92%), was obtained at a dye concentration of 100 mg/L, PUF weight- 5 g, pH-8, and glucose concentration- 4 g/L respectively. Extensive mineralization has been performed for synthetic and real textile wastewater (RTW), and the significant COD reduction (86.6%, 90.15%) and TOC reduction (57.54%, 69.13%) were observed for synthetic wastewater and RTW respectively.
机译:使用聚氨酯泡沫(PUF)-immobilized的枯草芽孢杆菌,开发了一种多级流化床生物反应器(M-FBBR),用于刚果红色(CR)染料去除。用于微生物生长和生物相互作用的活性表面积是用于固定介导的脱色的重要因素。在本研究中,通过避免在反应体积的顶表面和(ii)上通过提供较大数量的自由移动泡沫,通过两种方式(i)在反应器中可以在反应器中改善活性表面积。为此,通过引入多孔不锈钢盒(PSSB)来修改现有的FBBR,这是一种互动的,定制的,经常致力于经济效益。为了阐明这一点,在FBBR和M-FBBR中进行染料脱色研究。在M-FBBR中观察到增强的Cr染料去除。此外,在染料浓度为100mg / L,PUF重量-5g,pH-8和葡萄糖浓度-4 g / l,获得显示最大Cr染料去除(92%)的M-FBBR方法的优化研究。分别。对于合成和真实纺织废水(RTW)进行了广泛的矿化,分别观察到合成废水和RTW的显着COD减少(86.6%,90.15%)和TOC还原(57.54%,69.13%)。

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