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Transient Response of Continuously Cultured Heterogeneous Populations to Changes in Temperature

机译:连续培养的异质种群对温度变化的瞬态响应

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摘要

Completely mixed, once-through continuous culture systems of heterogeneous microbial populations of sewage origin were systematically examined for response to changes in reactor temperature. Systems were operated at two dilution rates of 0.125 and 0.25 per h. „Steady state” conditions of the systems were assessed with the reactors operating at 25 C. From this base line, temperature was decreased to as low as 8 C and increased to as high as 57.5 C. Response was assessed in the ensuing transient phase as the system approached a new „steady state.” The response was measured by changes in amount and type of carbon source in the reactor effluent as determined by the chemical oxygen demand test, the anthrone test, and gas chromatography. Biological solids concentration and cell composition (protein, carbohydrate, ribonucleic acid and deoxyribonucleic acid) were also determined. These systems responded more favorably to increases than to decreases in temperature. Regardless of the direction of change, the system with the lowest dilution rate (D = 0.125 per h) responded more successfully; i.e., there was less leakage of carbon source in the effluent and less dilute-out of cells during the transient phase.
机译:系统地检查了污水来源异质微生物种群的完全混合,一次性连续培养系统对反应堆温度变化的响应。系统以0.125和0.25 / h的两种稀释率运行。使用反应器在25°C下运行时评估系统的“稳定状态”条件。从该基准线开始,温度降低至低至8°C并升高至高达57.5°C。在随后的过渡阶段评估响应为系统达到了新的“稳定状态”。通过化学需氧量测试,蒽酮测试和气相色谱法确定的反应器流出物中碳源的数量和类型的变化来测量响应。还测定了生物固体浓度和细胞组成(蛋白质,碳水化合物,核糖核酸和脱氧核糖核酸)。这些系统对温度升高的响应比对温度降低的响应更有利。无论改变方向如何,稀释率最低(D = 0.125 / h)的系统响应都更成功。也就是说,在过渡阶段,废水中碳源的泄漏较少,细胞的稀释较少。

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