Department of Civil Engineering, Alagappa Chettiar Government College of Engineering and Technology, Karaikudi, India.
Water Environ Res. 2022 Jan;94(1):e1665. doi: 10.1002/wer.1665.
The upflow anaerobic sludge blanket (UASB) reactor can be considered as one of the promising anaerobic wastewater treatment technologies suitable for the treatment of high-strength wastewater. In the recent period, researchers have focused on the treatment of low-strength wastewater using this technology. This review focuses on the key factors affecting the reactor performance such as hydraulic retention time (HRT), temperature, organic loading rate (OLR), pH and alkalinity, granulation, wastewater characteristics, mixing, and modification to conventional configuration. Start-up and granulation played a major role in the determination of reactor performance, and various theories have been proposed to understand the mechanism of granulation. Correlation between start-up time and OLR was found to be low, as other operating parameters might have been influencing the start-up time. Flowchart depicting the development of UASB reactor over time is included. In the present work, further development and derivatives of the UASB reactor such as static granular bed reactor (SGBR) and expanded granular sludge bed (EGSB) reactor are analyzed. The optimal conditions for UASB for treating various types of substrates was found to be HRT of 3-24 h, OLR of 1-15 kg COD/m /d, and operational temperature in mesophilic range (30-40°C). Analysis of various modifications that pave the way for identification of future areas of research to improve reactor performance is also presented.
上流式厌氧污泥床(UASB)反应器可以被认为是一种很有前途的适用于处理高强度废水的厌氧废水处理技术。在最近的一段时间里,研究人员已经专注于使用这项技术来处理低强度废水。这篇综述主要关注影响反应器性能的关键因素,如水力停留时间(HRT)、温度、有机负荷率(OLR)、pH 值和碱度、颗粒化、废水特性、混合以及对传统配置的改进。启动和颗粒化在确定反应器性能方面起着重要作用,并且已经提出了各种理论来理解颗粒化的机制。发现启动时间和 OLR 之间的相关性较低,因为其他操作参数可能会影响启动时间。本文还包括了描绘 UASB 反应器随时间发展的流程图。在目前的工作中,对 UASB 反应器的进一步发展和衍生,如静态颗粒床反应器(SGBR)和膨胀颗粒污泥床(EGSB)反应器进行了分析。发现 UASB 处理各种基质的最佳条件为 HRT 为 3-24 h,OLR 为 1-15 kg COD/m /d,操作温度在中温范围内(30-40°C)。还对各种改进进行了分析,为确定未来提高反应器性能的研究领域铺平了道路。