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Performance of a fungal based SBR under pH extreme and shock phenolic exposure

机译:在极端pH和冲击性酚暴露下,基于真菌的SBR的性能

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摘要

An investigation was performed to explore the capabilities of a filamentous fungal biomass to grow non-aseptically in a glucose-fed Sequencing Batch Reactor system in very extreme environment (pH 3.5) conditions. Trichoderma viride Pers: Fr. Isolate 8/90 was used as inoculum. Microscopic investigations were carried out to confirm fungal dominance in the open culture. In batch tests, the fungal biomass showed a significant ability to grow and remove the applied organic load (2000mg(Glucose) L-1 d(-1)), with high biomass yields. Furthermore, the biomass showed an ability to resist gallic acid toxicity at high concentraions (1 g L-1) without any pre-exposure acclimation of the biomass. The biomass (about 2.5 g(VSS) L-1) demonstrated significant aerobic removal of gallic acid in a timeframe of 20 h from initial exposure. The robust characteristics of this SBR system demonstrate potential for future development of fungal based treatment for recalcitrant feedstocks or operation under extreme environmental conditions.
机译:进行了一项研究,以探索丝状真菌生物质在非常极端的环境(pH 3.5)条件下在以葡萄糖喂养的测序间歇反应器系统中非无菌生长的能力。绿色木霉Pers:神父。分离物8/90用作接种物。进行了显微镜研究以确认在开放培养物中的真菌优势。在分批测试中,真菌生物量显示出显着的生长和去除施加的有机负荷的能力(2000mg(葡萄糖)L-1 d(-1)),具有高生物量产量。此外,生物质显示出在高浓度(1 g L-1)下抵抗没食子酸毒性的能力,而无需任何生物预暴露适应性。生物量(约2.5 g(VSS)L-1)在从初次暴露起的20小时内显示出对好氧酸的重要好氧去除。该SBR系统的强大特性证明了其在今后用于开发难处理原料的真菌基处理或在极端环境条件下运行的潜力。

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