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运行参数对一体化固定膜活性污泥法污水处理性能的影响

Effect of Operating Parameters on the Performance of Integrated Fixed-Film Activated Sludge for Wastewater Treatment.

作者信息

Waqas Sharjeel, Harun Noorfidza Yub, Sambudi Nonni Soraya, Abioye Kunmi Joshua, Zeeshan Muhammad Hamad, Ali Abulhassan, Abdulrahman Aymn, Alkhattabi Loai, Alsaadi Ahmad S

机构信息

Chemical Engineering Department, Universiti Teknologi PETRONAS, Bandar Seri Iskandar 32610, Malaysia.

Department of Chemical Engineering, Universitas Pertamina, Simprug, Jakarta Selatan 12220, Indonesia.

出版信息

Membranes (Basel). 2023 Jul 28;13(8):704. doi: 10.3390/membranes13080704.

Abstract

Integrated fixed-film activated sludge (IFAS) is a hybrid wastewater treatment process that combines suspended and attached growth. The current review provides an overview of the effect of operating parameters on the performance of IFAS and their implications for wastewater treatment. The operating parameters examined include hydraulic retention time (HRT), solids retention time (SRT), dissolved oxygen (DO) levels, temperature, nutrient loading rates, and aeration. Proper control and optimization of these parameters significantly enhance the treatment efficiency and pollutant removal. Longer HRT and appropriate SRT contribute to improved organic matter and nutrient removal. DO levels promote the growth of aerobic microorganisms, leading to enhanced organic matter degradation. Temperature influences microbial activity and enzymatic reactions, impacting treatment efficiency. Nutrient loading rates must be carefully managed to avoid system overload or inhibition. Effective aeration ensures uniform distribution of wastewater and biofilm carriers, optimizing contact between microorganisms and pollutants. IFAS has been used in water reuse applications, providing a sustainable and reliable water source for non-potable uses. Overall, IFAS has proven to be an effective and efficient treatment process that can provide high-quality effluent suitable for discharge or reuse. Understanding the effects of these operating parameters helps to optimize the design and operation for efficient wastewater treatment. Further research is needed to explore the interactions between different parameters, evaluate their impact under varying wastewater characteristics, and develop advanced control strategies for improved performance and sustainability.

摘要

一体化固定膜活性污泥法(IFAS)是一种将悬浮生长和附着生长相结合的混合废水处理工艺。本综述概述了运行参数对IFAS性能的影响及其对废水处理的意义。所考察的运行参数包括水力停留时间(HRT)、固体停留时间(SRT)、溶解氧(DO)水平、温度、营养物负荷率和曝气。对这些参数进行适当控制和优化可显著提高处理效率和污染物去除率。较长的HRT和合适的SRT有助于提高有机物和营养物的去除效果。DO水平促进好氧微生物的生长,从而增强有机物的降解。温度影响微生物活性和酶促反应,进而影响处理效率。必须谨慎管理营养物负荷率,以避免系统过载或抑制。有效的曝气可确保废水和生物膜载体均匀分布,优化微生物与污染物之间的接触。IFAS已用于水回用应用,为非饮用水用途提供可持续且可靠的水源。总体而言,IFAS已被证明是一种有效且高效的处理工艺,可提供适合排放或回用的高质量出水。了解这些运行参数的影响有助于优化设计和运行,以实现高效的废水处理。需要进一步研究以探索不同参数之间的相互作用,评估它们在不同废水特性下的影响,并开发先进的控制策略以提高性能和可持续性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52e0/10456300/fc651bc15b88/membranes-13-00704-g001.jpg

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