Nemani Kirti S, Peldszus Sigrid, Huck Peter M
Department of Civil and Environmental Engineering, University of Waterloo, Ontario N2L 3G1, Canada.
ACS ES T Water. 2023 Apr 20;3(5):1305-1313. doi: 10.1021/acsestwater.2c00627. eCollection 2023 May 12.
Robustness is the ability of a drinking water treatment plant (DWTP) to achieve the desired finished water quality even during adverse raw water quality events. Increasing the robustness of a DWTP is beneficial for regular operations and especially for extreme weather adaptation. This paper proposes three robustness frameworks: (a) a general framework outlining the main steps and methodology for systematic assessment and improvement of the robustness of a DWTP, (b) a parameter-specific framework applying the general framework to a water quality parameter (WQP), and (c) a plant-specific framework applying the parameter-specific framework to a DWTP. A parameter-specific framework for turbidity is presented using the turbidity robustness index (TRI) for evaluation and applied to a full-scale DWTP in Ontario, Canada. This evaluation was conducted with historical plant data, as well as bench-scale experimental data simulating extremely high-turbidity scenarios. The framework application is capable of identifying (i) less robust processes which are likely to be vulnerable during climate extremes, (ii) operational responses to increasing short-term robustness, and (iii) a critical WQP threshold beyond which capital improvements are necessary. The proposed framework provides insights into the current state of robustness of a DWTP and serves as a tool for climate adaptation planning.
稳健性是指饮用水处理厂(DWTP)即使在原水水质不利事件期间仍能达到所需成品水水质的能力。提高DWTP的稳健性有利于常规运行,特别是有利于适应极端天气。本文提出了三个稳健性框架:(a)一个概述系统评估和提高DWTP稳健性的主要步骤和方法的通用框架,(b)将通用框架应用于水质参数(WQP)的参数特定框架,以及(c)将参数特定框架应用于DWTP的工厂特定框架。使用浊度稳健性指数(TRI)提出了一个针对浊度的参数特定框架用于评估,并将其应用于加拿大安大略省的一个全尺寸DWTP。该评估使用了工厂历史数据以及模拟极高浊度场景的实验室规模实验数据。该框架应用能够识别:(i)在极端气候期间可能易受影响的稳健性较差的工艺,(ii)提高短期稳健性的运行响应,以及(iii)一个关键的WQP阈值,超过该阈值就需要进行资本改进。所提出的框架提供了对DWTP稳健性当前状态的见解,并作为气候适应规划的工具。