Industrial Water Treatment ›› 2024, Vol. 44 ›› Issue (8): 53-60. doi: 10.19965/j.cnki.iwt.2023-1172

• SUSTAINABLE DEVELOPMENT • Previous Articles     Next Articles

Low-carbon strategy for wastewater treatment plants based on cost reduction and efficiency improvement

Juanjuan CHEN1,2(), Weibin LI3, Ou HUANG2, Weixiang CHAO1, Diandian ZHANG2, Nanqi REN1, Lu LU1()   

  1. 1. School of Civil and Environmental Engineering, Harbin Institute of Technology, Shenzhen 518055, China
    2. Beijing General Municipal Engineering Design & Research Institute Co. , Ltd. , Guangzhou 510075, China
    3. Guangzhou Sewage Purification Co. , Ltd. , Guangzhou 510655, China
  • Received:2024-06-24 Online:2024-08-20 Published:2024-09-26

基于降本增效目标的污水处理厂低碳运行调控策略

陈娟娟1,2(), 李伟斌3, 黄鸥2, 晁伟翔1, 张典典2, 任南琪1, 路璐1()   

  1. 1. 哈尔滨工业大学(深圳)土木与环境工程学院, 广东 深圳 518055
    2. 北京市市政工程设计研究总院有限公司广东分院, 广东 广州 510075
    3. 广州市净水有限公司, 广东 广州 510655
  • 作者简介:

    陈娟娟(1984— ),博士研究生,高级工程师。电话:18665618918,E-mail:

    路璐,博士,教授。电话:18607557781,E-mail:

Abstract:

This study explored the low-carbon operation and control strategy of wastewater treatment plants based on cost reduction and efficiency improvement, with a South China plant as a case study. Factors influencing phosphorus removal, including sludge age, concentration, dissolved oxygen, reflux ratio, and chemical dosing location, were analyzed. Optimal operation parameters such as sludge concentration, air/water ratio, and dissolved oxygen level were established based on influent characteristics across seasons. Implementation of these low-carbon strategies ensures the plant's effluent quality remained within standards, exhibiting a stable and decreasing trend. Meanwhile, chemical consumption for phosphorus removal decreasesd by approximately 41%, the electricity consumption per ton of treated wastewater decreased by 26.5%, resulting in a reduction of indirect carbon emissions by 0.18 kg/t(calculated by CO2,eq), which had achieved energy conservation, emission reduction, and clean production.

Key words: wastewater treatment, low-carbon operation, process control, nitrogen and phosphorus removal, cost-effectiveness

摘要:

研究了低成本、高处理要求下污水处理厂的低碳运行调控策略,以南方某污水处理厂为例,分析了影响除磷效率原因,发现主要的影响因素包括污泥龄、污泥浓度、溶解氧、回流比、药剂投加位置等,并根据不同季节的进水特征,制定了优化的运行参数,如污泥浓度、气水比、溶解氧水平等。通过实施低碳运行调控策略,该厂的出水水质仍可达到排放要求,且呈现稳中有降的趋势,同时,除磷药耗减少了约41%,吨水电耗下降了26.5%,碳排放间接减排0.18 kg/t(以CO2,eq计),同步实现了节能降耗与清洁生产的目标。

关键词: 污水处理, 低碳运行, 工艺调控, 脱氮除磷, 降本增效

CLC Number: