[1]卢立泉,宋帅楠,焦文海,等.装配式生化反应池协同结构构件安装的工艺设计[J].中国给水排水,2026,42(16):90-99.
LuLiquan,SongShuainan,JiaoWenhai,et al.Process Design for the Installation of Prefabricated Biological Reactor Synergistic Structural Components[J].China Water & Wastewater,2026,42(16):90-99.
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LuLiquan,SongShuainan,JiaoWenhai,et al.Process Design for the Installation of Prefabricated Biological Reactor Synergistic Structural Components[J].China Water & Wastewater,2026,42(16):90-99.
装配式生化反应池协同结构构件安装的工艺设计
中国给水排水[ISSN:1000-4062/CN:12-1073/TU]
卷:
第42卷
期数:
2026年第16期
页码:
90-99
栏目:
出版日期:
2026-08-17
- Title:
- Process Design for the Installation of Prefabricated Biological Reactor Synergistic Structural Components
- Keywords:
- AAO biochemical reaction tank; prefabrication technology; structural components; wastewater treatment plant; process optimization
- 摘要:
- 为推动污水处理工程的绿色低碳及模块化发展,破解传统水池结构与预制装配技术适配性不足的难题,以山东某污水处理厂扩建工程中规模3万m3/d的“七段式”AAO生化反应池为研究对象,系统分析传统工艺设计中池型复杂与装配式结构标准的核心矛盾。通过全过程优化,提出了一系列标准设计策略,总结出一套适用于装配式水处理构筑物的协同设计方法。工程应用结果表明,协同优化后的装配式水池装配率高达66%,单位池容土建造价598.8元/m3,建设阶段的碳排放总量399.2 kgCO2/m3,施工周期缩短30 d以上。合理的协同设计可有效提高水池装配率,进一步缩短施工周期并降低建设成本,为污水处理厂的高标准建设提供可复制的技术范式。
- Abstract:
- To promote the green, low-carbon and modular development of wastewater treatment projects and address the technical challenge of poor compatibility between traditional tank structures and prefabrication technologies, the seven-stage AAO biological reaction tank with a capacity of 3×104 m3/d of a wastewater treatment plant expansion project in Shandong Province was taken as the research object. The core contradiction between the complex tank layouts of conventional process design and the standardization of prefabricated structures was systematically analyzed. Through full-process collaborative optimization, a set of standardized design strategies was proposed, as well as a collaborative design method applicable to prefabricated water treatment structures was summarized. Engineering application results show that the assembly rate of the prefabricated tank after collaborative optimization reaches as high as 66%, with a construction cost of 598.8 CNY per unit tank capacity, total carbon emissions of 399.2 kgCO2/m3 during the development phase, a construction period shortened by more than 30 days. Reasonable collaborative design can effectively improve the assembly rate of tanks, further shorten construction period and reduce costs. It can provide a replicable technical paradigm for the high-standard construction of wastewater treatment plants.
相似文献/References:
[1]陈秀成,牛天浩.上海泰和全地下大型污水处理厂工艺设计要点及特点[J].中国给水排水,2021,37(10):83.
CHEN Xiu-cheng,NIU Tian-hao.Key Points and Characteristics of Process Design of Taihe Underground Large Sewage Treatment Plant in Shanghai[J].China Water & Wastewater,2021,37(16):83.
更新日期/Last Update:
2026-08-17