ISEIT/Viseu, Instituto Piaget, Estrada do Alto do Gaio, Galifonge, Lordosa, Viseu, Portugal.
J Environ Sci Health A Tox Hazard Subst Environ Eng. 2013;48(2):166-72. doi: 10.1080/03601234.2012.716745.
This study attempts a treatment strategy of a bleached kraft pulp mill effluent with Rhizopus oryzae or Pleurotus sajor caju encapsulated on silica-alginate (biocomposite of silica-alginate-fungi, with the purpose of reducing its potential impact in the environment. Active (alive) or inactive (death by sterilization) Rhizopus oryzae or Pleurotus sajor caju was encapsulated in alginate beads. Five beads containing active and inactive fungus were placed in a mold and filled with silica hydrogel (biocomposites). The biocomposites were added to batch reactors containing the bleached kraft pulp mill effluent. The treatment of bleached kraft pulp mill effluent by active and inactive biocomposites was performed throughout 29 days at 28°C. The efficiency of treatment was evaluated by measuring the removal of organic compounds, chemical oxygen demand and the relative absorbance ratio over time. Both fungi species showed potential for removal of organic compounds, colour and chemical oxygen demand. Maximum values of reduction in terms of colour (56%), chemical oxygen demand (65%) and organic compounds (72-79%) were attained after 29 days of treatment of bleached kraft pulp mill effluent by active Rhizopus oryzae biocomposites. The immobilization of fungi, the need for low fungal biomass, and the possibility of reutlization of the biocomposites clearly demonstrate the industrial and environmental interest in bleached kraft pulp mill effluent treatment by silica-alginate-fungi biocomposites.
本研究尝试采用米根霉或姬松茸包埋在硅酸钠-藻酸盐(硅酸钠-藻酸盐-真菌的生物复合材料)上的处理策略,以降低其对环境的潜在影响。活的或死的(灭菌致死)米根霉或姬松茸被包埋在藻酸盐珠中。将 5 颗含有活性和非活性真菌的珠放入模具中,然后用硅水凝胶(生物复合材料)填充。将生物复合材料添加到含有经漂白纸浆厂废水的分批式反应器中。在 28°C 下,通过活性和非活性生物复合材料处理经漂白纸浆厂废水,共进行了 29 天。通过测量有机化合物的去除率、化学需氧量和相对吸光度比值随时间的变化来评估处理效率。两种真菌都表现出去除有机化合物、颜色和化学需氧量的潜力。经 29 天的处理后,活性米根霉生物复合材料对经漂白纸浆厂废水的颜色(56%)、化学需氧量(65%)和有机化合物(72-79%)的去除率达到最高值。真菌的固定化、低真菌生物量的需求以及生物复合材料的再利用可能性,都清楚地表明了硅酸钠-藻酸盐-真菌生物复合材料在处理经漂白纸浆厂废水中的工业和环境利益。