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首页> 外文期刊>Waste Management >Polyhydroxyalkanoates (PHA) production from fermented thermal-hydrolyzed sludge by mixed microbial cultures: The link between phosphorus and PHA yields
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Polyhydroxyalkanoates (PHA) production from fermented thermal-hydrolyzed sludge by mixed microbial cultures: The link between phosphorus and PHA yields

机译:通过混合微生物培养从发酵的热水解污泥生产聚羟基链烷酸酯(PHA):磷与PHA产量之间的联系

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Production of polyhydroxyalkanoates (PHA) from wastes has gained increasing attention for the related low costs and high environmental benefits. Phosphorus limitation is a potential strategy used to facilitate PHA production, yet excessive limitation was previously reported to cause negative effects. This study was the first to investigate the optimum phosphorus limitation for PHA accumulation from thermal-hydrolyzed sludge. The results showed that the maximum PHA content increased from 23 wt% to 51 wt% when phosphorus concentration was limited from 127.60 to 1.35 mg/L, indicating that a lower phosphorus concentration would promote maximum PHA accumulation. Batch tests performed with synthetic substrates (containing one specific VFA for each batch) confirmed that the effect of phosphorus content on PHA production was mainly devoted by the efficiency of the conversion of acetate to PHA. The PHA yields on acetate (Y-PHA/ac) were 0.68 and 0.05 Cmol/Cmol under phosphorus-limited (1 mg/L) and -excess (100 mg/L) conditions, respectively. A mathematical model was developed to describe the correlation between phosphorus concentration and Y-PHA/ac which can fit the experimental data and predict the results properly. Finally, further (ammonium-) nitrogen restriction did not efficiently cause the additional improvement of PHA production under the conditions of phosphorus limitation. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于相关的低成本和高环境效益,从废物中生产聚羟基链烷酸酯(PHA)引起了越来越多的关注。磷限制是用于促进PHA产生的一种潜在策略,但先前报道过高的限制会导致负面影响。这项研究是第一个研究热水解污泥中PHA积累的最佳磷限制的方法。结果表明,当磷浓度从127.60限制到1.35 mg / L时,最大PHA含量从23 wt%增加到51 wt%,表明较低的磷浓度将促进PHA的最大积累。用合成底物(每批包含一个特定的VFA)进行的批次测试证实,磷含量对PHA生产的影响主要是由乙酸盐转化为PHA的效率引起的。在磷限制(1 mg / L)和过量(100 mg / L)条件下,乙酸盐上的PHA产量(Y-PHA / ac)分别为0.68和0.05 Cmol / Cmol。建立了描述磷浓度与Y-PHA / ac之间关系的数学模型,该模型可以拟合实验数据并正确预测结果。最后,在磷限制条件下,进一步的(铵)氮限制不能有效地引起PHA产量的进一步提高。 (C)2019 Elsevier Ltd.保留所有权利。

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