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Polyhydroxyalkanoate form and polyphosphate regulation: keys to biological phosphorus and glycogen transformations?

机译:聚羟基链烷酸酯形式和聚磷酸盐调节:生物磷和糖原转化的关键?

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Experimental studies with both synthetic and real domestic wastewater showed that poly-3-hydroxy-butyrate (3HB) and poly-3-hydroxy-valerate (3HV) formed in direct proportion to the acetate/propionate (Ace/Pro) ratio of the influent wastewater during Enhanced Biological Phosphorus Removal (EBPR). Acetic acid resulted in higher anaerobic phosphorus (P) release, polyhydroxyalkanoate (PHA) yield, 3HB content, and glycogen (CH) degradation. Linear regression showed that anaerobic P release (P-rel) and CH degradation (CHdeg) were both a function of Ace-->3HB, but not of Pro-->3HV. Aerobic P uptake (P-up) correlated best with preceding P-rel rather than PHA (but note P-rel correlated with Ace-->3HB). Aerobic CH formation (CHform) correlated best with CHdeg and 3HB. The results imply the acetate/propionate content of influent has a major influence on PHA, CH, and P transformations. Short-term increases in acetic or propionic acid increased P-rel, but were always offset by corresponding changes in P-up to yield the same net P removal as the control reactor. Thus net P removal, and EBPR process performance, was probably a function of the population selected (i.e. XPAO fraction) during long-term cultivation. [References: 14]
机译:对合成和实际生活污水的实验研究表明,聚3-羟基丁酸酯(3HB)和聚3-羟基戊酸酯(3HV)的比例与进水的乙酸/丙酸酯(Ace / Pro)比例成正比增强生物除磷(EBPR)过程中产生的废水。乙酸导致较高的厌氧磷(P)释放,聚羟基链烷酸酯(PHA)产量,3HB含量和糖原(CH)降解。线性回归表明厌氧P释放(P-rel)和CH降解(CHdeg)均是Ace-> 3HB的函数,而不是Pro-> 3HV的函数。有氧P吸收与先前的P-rel关系最好,而不是PHA(但请注意P-rel与Ace-> 3HB相关)。有氧CH的形成(CHform)与CHdeg和3HB最相关。结果表明进水中乙酸/丙酸酯含量对PHA,CH和P的转化有重要影响。乙酸或丙酸的短期增加会增加P-rel,但总是被P-up的相应变化所抵消,以产生与对照反应器相同的净P去除量。因此,净P去除量和EBPR工艺性能可能是长期培养期间所选种群(即XPAO分数)的函数。 [参考:14]

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