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Sequential Substrate Removal in Response to Qualitative Shock Loading of Activated Sludge Systems

机译:响应活性污泥系统的定性冲击载荷,顺序去除基质

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Heterogeneous populations acclimated to sorbitol or mannitol were subjected to shock loading with glucose during growth on the sugar alcohol. Under these severe shock-loading conditions, glucose caused immediate cessation of sorbitol or mannitol removal. Metabolism of these compounds was renewed subsequent to glucose exhaustion. Under similar shock-loading conditions, with the use of cells operationally defined as “old,” the sugar alcohols were removed concurrently with glucose. In the absence of a nitrogen source with old cells, the added glucose was removed slowly in the presence of sorbitol and not at all in the mannitol-acclimated system. These results indicate the potential variability in purification efficiency attributable to substrate interaction.
机译:在糖醇上生长期间,适应山梨糖醇或甘露糖醇的异质种群受到葡萄糖的冲击负荷。在这些严重的冲击负荷条件下,葡萄糖导致山梨糖醇或甘露醇的去除立即停止。这些化合物的代谢在葡萄糖耗尽后得以更新。在类似的冲击负荷条件下,使用操作上定义为“陈旧”的细胞,将糖醇与葡萄糖同时去除。在没有氮源和旧细胞的情况下,添加的葡萄糖在山梨糖醇存在下缓慢除去,而在甘露醇适应的系统中根本没有。这些结果表明归因于底物相互作用的纯化效率的潜在可变性。

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