Oehmen Adrian, Lemos Paulo C, Carvalho Gilda, Yuan Zhiguo, Keller Jürg, Blackall Linda L, Reis Maria A M
CQFB/REQUIMTE, Chemistry Department, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, 2829-516 Caparica, Portugal.
Water Res. 2007 Jun;41(11):2271-300. doi: 10.1016/j.watres.2007.02.030. Epub 2007 Apr 16.
The enhanced biological phosphorus removal (EBPR) process has been implemented in many wastewater treatment plants worldwide. While the EBPR process is indeed capable of efficient phosphorus (P) removal performance, disturbances and prolonged periods of insufficient P removal have been observed at full-scale plants on numerous occasions under conditions that are seemingly favourable for EBPR. Recent studies in this field have utilised a wide range of approaches to address this problem, from studying the microorganisms that are primarily responsible for or detrimental to this process, to determining their biochemical pathways and developing mathematical models that facilitate better prediction of process performance. The overall goal of each of these studies is to obtain a more detailed insight into how the EBPR process works, where the best way of achieving this objective is through linking together the information obtained using these different approaches. This review paper critically assesses the recent advances that have been achieved in this field, particularly relating to the areas of EBPR microbiology, biochemistry, process operation and process modelling. Potential areas for future research are also proposed. Although previous research in this field has undoubtedly improved our level of understanding, it is clear that much remains to be learned about the process, as many unanswered questions still remain. One of the challenges appears to be the integration of the existing and growing scientific knowledge base with the observations and applications in practice, which this paper hopes to partially achieve.
强化生物除磷(EBPR)工艺已在全球许多污水处理厂得到应用。虽然EBPR工艺确实能够实现高效的磷去除性能,但在许多看似有利于EBPR的条件下,全尺寸工厂多次出现干扰和长时间磷去除不足的情况。该领域最近的研究采用了广泛的方法来解决这个问题,从研究对该过程起主要作用或有害的微生物,到确定它们的生化途径以及开发有助于更好地预测工艺性能的数学模型。这些研究的总体目标是更深入地了解EBPR工艺的工作原理,实现这一目标的最佳方法是将使用这些不同方法获得的信息联系起来。这篇综述文章批判性地评估了该领域最近取得的进展,特别是与EBPR微生物学、生物化学、工艺操作和工艺建模领域相关的进展。还提出了未来研究的潜在领域。尽管该领域以前的研究无疑提高了我们的理解水平,但很明显,关于这个过程仍有许多有待了解的地方,因为许多问题仍未得到解答。其中一个挑战似乎是将现有的和不断增长的科学知识库与实践中的观察和应用相结合,本文希望能部分实现这一点。