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Simultaneous photocatalytic and microbial degradation of dye-containing wastewater by a novel g-C3N4-P25/photosynthetic bacteria composite

机译:新型g-C3N4-P25 /光合细菌复合材料同时光催化降解微生物染料

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摘要

Azo dyes are very resistant to light-induced fading and biodegradation. Existing advanced oxidative pre-treatment methods based on the generation of non-selective radicals cannot efficiently remove these dyes from wastewater streams, and post-treatment oxidative dye removal is problematic because it may leave many byproducts with unknown toxicity profiles in the outgoing water, or cause expensive complete mineralization. These problems could potentially be overcome by combining photocatalysis and biodegradation. A novel visible-light-responsive hybrid dye removal agent featuring both photocatalysts (g-C3N4-P25) and photosynthetic bacteria encapsulated in calcium alginate beads was prepared by self-assembly. This system achieved a removal efficiency of 94% for the dye reactive brilliant red X-3b and also reduced the COD of synthetic wastewater samples by 84.7%, successfully decolorized synthetic dye-contaminated wastewater and reduced its COD, demonstrating the advantages of combining photocatalysis and biocatalysis for wastewater purification. The composite apparently degrades X-3b by initially converting the dye into aniline and phenol derivatives whose aryl moieties are then attacked by free radicals to form alkyl derivatives, preventing the accumulation of aromatic hydrocarbons that might suppress microbial activity. These alkyl intermediates are finally degraded by the photosynthetic bacteria.
机译:偶氮染料对光诱导的褪色和生物降解具有很高的抵抗力。现有的基于生成非选择性自由基的先进的氧化预处理方法无法有效地从废水中去除这些染料,并且后处理氧化染料的去除是有问题的,因为它可能会在出水中留下许多毒性未知的副产物,或者导致昂贵的完全矿化。这些问题可以通过结合光催化和生物降解来克服。通过自组装制备了一种新型的可见光响应型杂化染料去除剂,其特征在于包封在藻酸钙珠粒中的光催化剂(g-C3N4-P25)和光合细菌。该系统对染料活性艳红X-3b的去除效率达到94%,并且将合成废水样品的COD降低了84.7%,成功地将合成染料污染的废水脱色并降低了COD,证明了光催化与化学反应相结合的优势。生物催化净化废水。该复合物显然通过首先将染料转化为苯胺和苯酚衍生物而降解X-3b,后者的芳基部分随后受到自由基的攻击而形成烷基衍生物,从而阻止了可能抑制微生物活性的芳烃的积累。这些烷基中间体最终被光合细菌降解。

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