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Towards a generalized physicochemical framework (Review)

机译:迈向广义理化框架(综述)

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Process models used for activated sludge, anaerobic digestion and in general wastewater treatment plant process design and optimization have traditionally focused on important biokinetic conversions. There is a growing realization that abiotic processes occurring in the wastewater (i.e. 'solvent') have a fundamental effect on plant performance. These processes include weak acid-base reactions (ionization), spontaneous or chemical dose-induced precipitate formation and chemical redox conversions, which influence pH, gas transfer, and directly or indirectly the biokinetic processes themselves. There is a large amount of fundamental information available (from chemical and other disciplines), which, due to its complexity and its diverse sources (originating from many different water and process environments), cannot be readily used in wastewater process design as yet. This position paper outlines the need, the methods, available knowledge and the fundamental approaches that would help to focus the effort of research groups to develop a physicochemical framework specifically in support of whole-plant process modeling. The findings are that, in general, existing models such as produced by the International Water Association for biological processes are limited by omission of key corrections such as non-ideal acid-base behavior, as well as major processes (e.g., ion precipitation). While the underlying chemistry is well understood, its applicability to wastewater applications is less well known. This justifies important further research, with both experimental and model development activities to clarify an approach to modeling of physicochemical processes.
机译:传统上,用于活性污泥,厌氧消化以及一般废水处理厂过程设计和优化的过程模型着重于重要的生物动力学转化。人们越来越认识到,废水中发生的非生物过程(即“溶剂”)对工厂的性能有根本影响。这些过程包括弱酸碱反应(电离),自发或化学剂量诱导的沉淀形成以及化学氧化还原转化,这会影响pH值,气体转移以及生物动力学过程本身。有大量可用的基础信息(来自化学和其他学科),由于其复杂性和来源(源自许多不同的水和工艺环境),这些信息目前还不能轻易用于废水工艺设计中。本立场文件概述了需要,方法,可用知识和基本方法,这些方法,方法,知识和基本方法将有助于集中研究小组的工作,以开发专门用于支持全厂过程建模的物理化学框架。结果发现,通常来说,现有模型(例如由国际水协(International Water Association)为生物过程制得的模型)受到省略诸如非理想酸碱行为以及主要过程(例如离子沉淀)等关键校正的限制。尽管基本化学原理已广为人知,但其在废水处理中的适用性却鲜为人知。这证明了重要的进一步研究的合理性,同时开展了实验和模型开发活动,以阐明物理化学过程建模的方法。

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