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Removal of phenol in a constructed wetland system and the relative contribution of plant roots, microbial activity and porous bed

机译:在人工湿地系统中去除苯酚以及植物根,微生物活性和多孔床的相对贡献

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摘要

Analysis of a low organic load constructed wetland (CW) system was performed in order to understand the relative role of its various components contribution in phenol removal (100 mg/L) under controlled plant biomass/gravel/water experimental ratios (50 g/450 g/100 mL). The results [expressed as phenol_(50)/time (hours) required to remove 50% of the initial phenol concentration] showed that the highest phenol removal occurred by combined biofilms from roots and gravel attached (phenol_(50) = 19), followed by gravel biofilm (phenol_(50) = 105) and planktonic (suspended in water) bacteria (phenol_(50) = >200). An in depth analysis revealed that plants contribution alone (antibiotics sterilized) was minor (phenol_(50) = >89) while roots supported biofilm resulted in a significant phenol removal (phenol_(50) = 15). Therefore in this type of CW, the main phenol removal active fraction could be attributed to plant roots' biofilm bacteria.
机译:为了了解在受控的植物生物质/砾石/水实验比例(50 g / 450)下,低有机负荷湿地(CW)系统的分析,以了解其各种成分在苯酚去除(100 mg / L)中的相对作用。 g / 100 mL)。结果[表示为去除初始苯酚浓度的50%所需的苯酚_(50)/时间(小时)]显示,去除根和砾石的生物膜合计,苯酚去除率最高(苯酚_(50)= 19),其次通过砾石生物膜(酚_(50)= 105)和浮游细菌(悬浮在水中)细菌(酚_(50)=> 200)。深入分析显示,仅植物贡献(灭菌的抗生素)微不足道(苯酚(50)=> 89),而根系支持的生物膜可显着去除苯酚(苯酚(50)= 15)。因此,在这种类型的化学废物中,主要的除酚活性成分可以归因于植物根部的生物膜细菌。

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