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The Composition and Implications of Polyphosphate-Metal in Enhanced Biological Phosphorus Removal Systems

聚磷酸盐 强化生物除磷 作文(语言) 磷酸盐 环境化学 金属 化学 生物 生物物理学 生物化学 污水处理 有机化学 哲学 工程类 废物管理 活性污泥 语言学
作者
Yueyun Li,Sheikh Mokhlesur Rahman,G. LI,William H. Fowle,Per Halkjær Nielsen,April Z. Gu
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:53 (3): 1536-1544 被引量:46
标识
DOI:10.1021/acs.est.8b06827
摘要

The individual cellular level and quantitative Polyphosphate (PolyP)-metal compositions in EBPR (enhanced biological phosphorus removal) systems have hardly been investigated and its potential link to EBPR performance therefore remain largely unknown. In this study, we applied scanning electron microscopy combined with energy dispersive X-ray spectroscopy (SEM/EDX) method that enabled detection and semiquantification of metal elemental compositions in intact intracellular PolyP granules in individual PAO (polyphosphate accumulating organism) cells. We, for the first time, revealed diverse and dynamic distributions of different metals ions in the PolyP-metal granules in different EBPR systems operated with the same influent metal composition but varying SRT of 5-30 days. We further demonstrated that the PolyP-metal composition diversity correlated with 16S rRNA gene based PAO phylogenetic diversity, suggesting the possible phylogeny-dependent PolyP-metal composition variation. The impact of PolyP metal composition in EBPR system, especially the Mg content in PolyP granules, was evidenced by the significant and strong positive correlation between PolyP-Mg content and the long-term stability of the four EBPR systems with varying SRTs. The PolyP-Mg content can therefore possibly serve as an indicator for EBPR performance monitoring. The results demonstrated that phenotyping techniques, such as PolyP-metal-based profiling, in compliment, or combined with genotyping techniques such as phylogenetic and functional gene sequencing, can provide more insights into the mechanisms and performance prediction of this important microbial ecosystem.
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