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Studies on activated sludge response to variations in the composition of a synthetic surfactant-containing feed effluent [Review]

机译:含合成表面活性剂的进料废水组成变化对活性污泥响应的研究[综述]

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Laboratory batch and sequencing-batch reactors and closed respirometry techniques were used to study the response of activated sludge to non-ionic synthetic surfactants. Two laboratory-grade and three commercial surfactant mixtures used in the textile industry (alkyl- and alkylphenol-ethoxylate types) were tested. Respirometric profiles during degradation experiments were complemented with titrimetrio surfactant measurements and TOC determinations, representing primary and ultimate biodegradation, respectively. Though non-acclimatized sludge was apparently not inhibited by the surfactant products, total degradation took at least 20 hours with S-0/X-0 values in the 0.24-0.86 range. Respiration rate profiles (respirograms) showed several peaks, suggesting stepwise primary-ultimate degradation of the surfactant molecules. Acclimatization shortened degradation times and produced repirograms with a single peak. Biomass adaptation, response to load increases and memory loss was faster for primary than for ultimate degradation. Alkyl ethoxylate-adapted biomass was apparently more capable of adaptation to alkylphenol ethoxylate than the inverse. [References: 19]
机译:实验室分批和顺序分批反应器以及封闭的呼吸测定技术用于研究活性污泥对非离子合成表面活性剂的反应。测试了两种用于纺织工业的实验室级和三种商业表面活性剂混合物(烷基酚和烷基酚乙氧基化物类型)。降解实验期间的呼吸测定曲线与滴定度表面活性剂测量值和TOC测定值相辅相成,分别代表主要和最终的生物降解。尽管表面活性剂产品未明显抑制未适应的污泥,但总降解时间至少为20小时,S-0 / X-0值在0.24-0.86范围内。呼吸速率曲线(呼吸图)显示了几个峰,表明表面活性剂分子的逐步最终降解。驯化缩短了降解时间,并产生了带有单个峰的曲线图。生物量适应,负载增加的响应和内存丢失对于主要对象要比最终退化要快。烷基乙氧基化物适应的生物量显然比逆生物碱更能适应烷基酚乙氧基化物。 [参考:19]

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