Tingting Cui , Chunhui Zhang , Bingxu Quan , Liwei Wang , Zhao Zhang , Peidong Su , Yuanhui Tang , Guifeng Zhao , Ping Qiao , Junqiang Guo , Rui Zhang
{"title":"应对挑战和推进解决方案:加强半焦化废水处理,实现可持续发展","authors":"Tingting Cui , Chunhui Zhang , Bingxu Quan , Liwei Wang , Zhao Zhang , Peidong Su , Yuanhui Tang , Guifeng Zhao , Ping Qiao , Junqiang Guo , Rui Zhang","doi":"10.1016/j.jenvman.2025.125796","DOIUrl":null,"url":null,"abstract":"<div><div>During the semi-coke process, the semi-coking wastewater (SCWW) produced contains high concentrations of organic pollutants. This wastewater has the characteristics of abundant coal tar, high ammonia nitrogen content, high phenol concentration, high chemical oxygen demand (COD), and a low B/C ratio. These features make its treatment extremely difficult and bring significant environmental risks. Given that such wastewater is difficult to meet discharge standards, researchers have been actively exploring and applying various physical, chemical and biological treatment technologies, thus forming multiple wastewater treatment processes. This paper systematically and comprehensively studies the current research status and practical application scenarios of SCWW treatment technologies, and summarizes their application effects in practice. In response to the problems and challenges in wastewater treatment, this paper deeply analyzes and proposes feasible improvement paths and future development directions. At the same time, it also comprehensively reviews the current status of resource recovery. Research on the physical-chemical pretreatment stage, biochemical treatment, advanced treatment, and the sustainability characteristics of various treatment technologies for SCWW is conducted. The aim is to provide valuable reference insights for researchers and practitioners in related fields, thereby promoting technological innovation and sustainable development in this field.</div></div>","PeriodicalId":356,"journal":{"name":"Journal of Environmental Management","volume":"387 ","pages":"Article 125796"},"PeriodicalIF":8.0000,"publicationDate":"2025-05-18","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Addressing challenges and advancing solutions: Enhancing semi-coking wastewater treatment for a sustainable prospect\",\"authors\":\"Tingting Cui , Chunhui Zhang , Bingxu Quan , Liwei Wang , Zhao Zhang , Peidong Su , Yuanhui Tang , Guifeng Zhao , Ping Qiao , Junqiang Guo , Rui Zhang\",\"doi\":\"10.1016/j.jenvman.2025.125796\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><div>During the semi-coke process, the semi-coking wastewater (SCWW) produced contains high concentrations of organic pollutants. This wastewater has the characteristics of abundant coal tar, high ammonia nitrogen content, high phenol concentration, high chemical oxygen demand (COD), and a low B/C ratio. These features make its treatment extremely difficult and bring significant environmental risks. Given that such wastewater is difficult to meet discharge standards, researchers have been actively exploring and applying various physical, chemical and biological treatment technologies, thus forming multiple wastewater treatment processes. This paper systematically and comprehensively studies the current research status and practical application scenarios of SCWW treatment technologies, and summarizes their application effects in practice. In response to the problems and challenges in wastewater treatment, this paper deeply analyzes and proposes feasible improvement paths and future development directions. At the same time, it also comprehensively reviews the current status of resource recovery. Research on the physical-chemical pretreatment stage, biochemical treatment, advanced treatment, and the sustainability characteristics of various treatment technologies for SCWW is conducted. 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Addressing challenges and advancing solutions: Enhancing semi-coking wastewater treatment for a sustainable prospect
During the semi-coke process, the semi-coking wastewater (SCWW) produced contains high concentrations of organic pollutants. This wastewater has the characteristics of abundant coal tar, high ammonia nitrogen content, high phenol concentration, high chemical oxygen demand (COD), and a low B/C ratio. These features make its treatment extremely difficult and bring significant environmental risks. Given that such wastewater is difficult to meet discharge standards, researchers have been actively exploring and applying various physical, chemical and biological treatment technologies, thus forming multiple wastewater treatment processes. This paper systematically and comprehensively studies the current research status and practical application scenarios of SCWW treatment technologies, and summarizes their application effects in practice. In response to the problems and challenges in wastewater treatment, this paper deeply analyzes and proposes feasible improvement paths and future development directions. At the same time, it also comprehensively reviews the current status of resource recovery. Research on the physical-chemical pretreatment stage, biochemical treatment, advanced treatment, and the sustainability characteristics of various treatment technologies for SCWW is conducted. The aim is to provide valuable reference insights for researchers and practitioners in related fields, thereby promoting technological innovation and sustainable development in this field.
期刊介绍:
The Journal of Environmental Management is a journal for the publication of peer reviewed, original research for all aspects of management and the managed use of the environment, both natural and man-made.Critical review articles are also welcome; submission of these is strongly encouraged.