Environmental Engineering Division, Department of Civil Engineering, Indian Institute of Technology Kharagpur, Kharagpur, 721302, India.
School of Environmental Science and Engineering, Indian Institute of Technology Kharagpur, Kharagpur, 721302, India.
J Environ Manage. 2022 Sep 1;317:115305. doi: 10.1016/j.jenvman.2022.115305. Epub 2022 May 25.
Industrial wastewater discharge has increased manifolds over the last few decades. Efficient industrial wastewater treatment is mandatory to meet stringent discharge regulations. Biological treatment systems, such as the sequencing batch reactor (SBR) are generally employed for domestic wastewater treatment. However, low infrastructure and energy requirements, as well as low footprint, make SBR a prominent technique to treat industrial wastewater. In the present review, the feasibility of SBR to treat wastewater generated from industries, such as textile, pulp and paper, pharmaceutical, tannery, etc., has been discussed. The factors affecting the treatment efficacy of the SBR in terms of organics and nutrient removal have also been investigated. It has been observed that the SBR system is effective for industrial wastewater treatment as it is easy to operate, resistant to shock loads, and can retain high biomass concentrations. The modifications to the conventional SBR, such as sludge granulation, the addition of bio-film carriers, and the incorporation of adsorbents, salt-tolerant microbes, and coagulants have been discussed. Further, various novel combinations of SBR with the other advanced treatment technologies, such as Fenton, membrane-based process, and electrochemical process have shown enhanced removal of various conventional and recalcitrant pollutants. The current review also accentuates the sustainability aspects of SBR technology to treat industrial wastewater which may be beneficial for researchers and engineers working in this field.
在过去几十年中,工业废水排放量呈指数级增长。为了满足严格的排放标准,高效的工业废水处理是强制性的。生物处理系统,如序批式反应器(SBR),通常用于处理生活污水。然而,SBR 具有基础设施和能源需求低、占地面积小等优点,使其成为处理工业废水的突出技术。在本综述中,讨论了 SBR 处理纺织、制浆造纸、制药、制革等工业废水的可行性。还研究了影响 SBR 在有机物和养分去除方面处理效果的因素。结果表明,SBR 系统易于操作、能抵抗冲击负荷,并能保持高生物量浓度,因此对工业废水处理有效。讨论了对传统 SBR 的改进,例如污泥颗粒化、添加生物膜载体以及加入吸附剂、耐盐微生物和凝结剂。此外,SBR 与芬顿、膜处理和电化学处理等其他先进处理技术的各种新型组合已显示出对各种常规和难处理污染物的去除效果增强。本综述还强调了 SBR 技术处理工业废水的可持续性方面,这可能对该领域的研究人员和工程师有益。