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A sequential zero valent iron and aerobic biodegradation treatment system for nitrobenzene

机译:硝基苯序贯零价铁和好氧生物降解处理系统

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The remediation of nitroaromatic contaminated groundwater is sometimes difficult because nitroaromatic compounds are resistant to biodegradation and, when they do transform, the degradation of the products may also be incomplete. A simple nitroaromatic compound, nitrobenzene, was chosen to assess the feasibility of an in situ multi-zone treatment system at the laboratory scale. The proposed treatment system consists of a zero valent granular iron zone to reduce nitrobenzene to aniline, followed by a passive oxygen release zone for the aerobic biodegradation of the aniline daughter product using pristine aquifer material from Canadian Forces Base (CFB) Borden, Ontario, as an initial microbial source. In laboratory batch experiments, nitrobenzene was found to reduce quickly in the presence of granular iron forming aniline, which was not further degraded but remained partially sorbed onto the granular iron surface. Aniline was found to be readily biodegraded with little metabolic lag under aerobic conditions using the pristine aquifer material. A sequential column experiment, containing a granular iron reducing zone and an aerobic biodegradation zone, successively degraded nitrobenzene and then aniline to below detection limits (0.5 μM) without any noticeable reduction in hydraulic conductivity from biofouling, or through the formation of precipitates.
机译:有时很难修复受硝基芳族化合物污染的地下水,因为硝基芳族化合物具有抗生物降解性,当它们转化时,产品的降解也可能不完全。选择一种简单的硝基芳族化合物硝基苯来评估实验室规模的原位多区域处理系统的可行性。拟议的处理系统包括一个零价粒状铁区,以将硝基苯还原成苯胺,然后是一个被动的氧气释放区,用于使用安大略省博登市加拿大部队基地(CFB)的原始含水层材料对苯胺子产品进行好氧生物降解。最初的微生物来源。在实验室分批实验中,发现存在粒状铁形成苯胺时硝基苯迅速减少,苯胺并没有进一步降解,但仍部分吸附在粒状铁表面。使用原始含水层材料,在有氧条件下,苯胺很容易被生物降解,几乎没有代谢滞后。包含颗粒状铁还原区和好氧生物降解区的顺序色谱柱实验,先降解硝基苯,然后将苯胺降解至检测限以下(0.5μM),而不会由于生物污染或形成沉淀而显着降低水力传导率。

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