- 莫永昌是香港特别行政区政府渠务署署长,负责全港防洪、排水及污水处理等工作 。官网
- 主要工作:
- 防洪策略:推行“超前准备、加强预警、果断应急、迅速复原”四大策略应对极端天气 。
- 基建工程:主导多项大型雨水排放系统改善工程,如观塘秀雅道地下蓄洪池,预计 2028 年完成 。
- 科技应用:推动人工智能及数字孪生技术在水务管理中的应用,如在黄大仙及柴湾区安装智能感测设备监测水位 。官网
- 过往经历:曾任香港土木工程拓展署西拓展处处长,2020 年疫情期间曾负责协调内地援建方舱医院的土地平整及配套工程 。
- 对外交流:多次率团赴内地考察交流,如 2025 年带队访问广州水投集团沥滘净水厂及深圳清研环境科技股份有限公司 。
MokWingcheong,ZouWeiguo,LiXiangdong.Calibrated Treatment Intensity: A Condition-Information Adaptation Framework and Its Engineering Practice in Hong Kong[J].China Water & Wastewater,2026,42(16):1-6.
香港污水治理的条件信息适配框架与工程实践
- Title:
- Calibrated Treatment Intensity: A Condition-Information Adaptation Framework and Its Engineering Practice in Hong Kong
- 作者:
- 莫永昌1, 邹伟国2, 李向东3
- (1.香港特别行政区政府渠务署,香港 999077;2.上海市政工程设计研究总院<集团>有限公司,上海 200092;3.香港理工大学 土木与环境工程学系,香港 999077)
- Author(s):
- Mok Wingcheong1, Zou Weiguo2, Li Xiangdong3
- (1. Drainage Services Department, The Government of Hong Kong Special Administrative Region, Hong Kong 999077, China; 2. Shanghai Municipal Engineering Design Institute
Co. Ltd., Shanghai 200092, China; 3. Department of Civil and Environmental Engineering, The Hong Kong Polytechnic University, Hong Kong 999077, China)
- Keywords:
- wastewater treatment; condition-information adaptation; compact technologies; saline sewage; digital twin
- 摘要:
- 全球城市在更严排放标准与土地约束下亟须信息驱动的污水系统优化。香港特别行政区政府渠务署提出以“条件信息”为核心的适配框架(因地制宜、精准施治):将内部信息(基础负荷、特征化学)与外部信息(空间约束、水动力)转化为可计算输入,并由数字孪生平台集成映射为工艺配置与运行决策。由此形成4类适配——空间适配(将用地与布局信息转为工艺集约度选择)、化学适配(将特征化学转为处理强度与资源化策略)、水动力适配(将受纳水体动力学转为达标边界与排放策略)、数字孪生整合(将上述信息编码为预测与规范性建议)。香港的系统化应用表明,该路径可操作且可迁移。
- Abstract:
- Cities worldwide require information-driven wastewater system optimization under tightening discharge standards and land constraints. This paper presents a condition-information adaptation framework (calibrated treatment intensity) developed by the Drainage Services Department of the Government of the Hong Kong Special Administrative Region of the People’s Republic of China. The framework converts internal information (basic loads, characteristic chemistry) and external information (spatial constraints, hydrodynamics) into computable inputs, which are then integrated and mapped by a digital twin platform into process configuration and operational decisions. Four adaptation types are derived: spatial adaptation, translating land and layout information into process compactness choices; chemical adaptation, converting characteristic chemistry into treatment intensity and resource recovery strategies; hydrodynamic adaptation, transforming receiving-water dynamics into compliance boundaries and discharge strategies; and digital twin integration, encoding the above information into predictive and prescriptive recommendations. Systematic application in Hong Kong demonstrates that this pathway is both operable and transferable.
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