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Novel application of immobilized Bacillus cells for biotreatment of furfural-laden wastewater

机译:固定化芽孢杆菌细胞在糠醛废水生物处理中的新应用

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Immobilization of growing bacterial cells was considered as an innovative technique and very effective in dealing with major environmental challenges for bioremediation of organics-loaded wastewater. This study was undertaken to investigate the aerobic biodegradation of furfural in aqueous solution by using immobilized Bacillus cells in spouted bed bioreactor. Bacillus cells were individually immobilized in the matrices of sodium alginate, guar-gum, and agar-agar; each was cross linked in polyvinyl alcohol. Immobilized cells exhibited efficient furfural degradation in several successive reuse batches up to 3 cycles without losing their degradation activity which could provide economic advantages when used in industrial-scale applications. Results of batch experiments in fluidized spouted bed bioreactor demonstrated that complete removal of furfural using immobilized Bacillus cells in the first and second cycles was achieved after 450 and 480 min, respectively. The removal efficiency of furfural was 100%, 100%, and 95% for the 1st, 2nd, and 3rd, cycles, respectively. Unlike the free cells, the potentiality of the immobilized cells is that they could be reused without reduction in their ability to degrade hazardous furfural. Additional advantage of immobilized cells compared to free cells, is their ability to tolerate high concentrations of furfural.
机译:固定生长中的细菌细胞被认为是一项创新技术,对于处理有机物负载废水的生物修复面临的主要环境挑战非常有效。这项研究旨在研究通过在喷床生物反应器中固定的芽孢杆菌细胞对水溶液中糠醛的需氧生物降解。将芽孢杆菌细胞分别固定在海藻酸钠,瓜尔豆胶和琼脂中。每个都在聚乙烯醇中交联。固定的细胞在几个连续的重复使用批次中表现出有效的糠醛降解,直至3个循环,而不会丧失其降解活性,这在工业规模应用中可提供经济优势。在流化床生物反应器中进行分批实验的结果表明,分别在450和480分钟后,在第一和第二个循环中使用固定的芽孢杆菌细胞完全去除了糠醛。在第一个,第二个和第三个循环中,糠醛的去除效率分别为100%,100%和95%。与游离细胞不同,固定细胞的潜力在于它们可以重复使用而不会降低其降解有害糠醛的能力。与游离细胞相比,固定化细胞的另一个优势是它们能够耐受高浓度的糠醛。

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