[1]時玉龍,鮑海鵬,李偉,等.北排清河第二再生水廠低碳運行實踐[J].中國給水排水,2022,38(14):99-105.
SHIYu-long,BAOHai-peng,LIWei,et al.Low-carbon Operation Practice of Qinghe Ⅱ Wastewater Reclamation Plant under Beijing Drainage Group[J].China Water & Wastewater,2022,38(14):99-105.
點擊復制
SHIYu-long,BAOHai-peng,LIWei,et al.Low-carbon Operation Practice of Qinghe Ⅱ Wastewater Reclamation Plant under Beijing Drainage Group[J].China Water & Wastewater,2022,38(14):99-105.
北排清河第二再生水廠低碳運行實踐
中國給水排水[ISSN:1000-4062/CN:12-1073/TU] 卷: 第38卷 期數(shù): 2022年第14期 頁碼: 99-105 欄目: 出版日期: 2022-07-17
- Title:
- Low-carbon Operation Practice of Qinghe Ⅱ Wastewater Reclamation Plant under Beijing Drainage Group
- Keywords:
- wastewater reclamation; sludge treatment; energy conservation; carbon emissions reduction; anaerobic digestion; renewable energy
摘要:- “雙碳”目標的達成,對再生水廠低碳運行提出新的更高的要求。2021年清河第二再生水廠聚焦水區(qū)節(jié)能降耗與泥區(qū)消化產(chǎn)能提升重點工作,包括:發(fā)揮流域化運營優(yōu)勢,通過流域水量聯(lián)調(diào),穩(wěn)定進水負荷;對鼓風機、進水泵等重點耗能設備開展節(jié)能優(yōu)化,保障設備工況與工藝需求及時匹配,實現(xiàn)藥耗、電耗雙降,水區(qū)日均電耗0.353 kW·h/m3,較2020年降低20.7%,節(jié)電對應CO2減排比例26.1%;針對泥質(zhì)與消化池氨氮負荷變化,通過保證初沉泥比例、穩(wěn)定消化負荷、調(diào)控進泥含水率等措施,消化系統(tǒng)沼氣產(chǎn)量穩(wěn)步提升,9月—11月沼氣產(chǎn)量均值298 m3/tDS,較1月—8月增幅為21.6%,沼氣發(fā)電、光伏發(fā)電、水源熱泵等三項可再生能源利用項目CO2減排比例近22%。清河第二再生水廠將繼續(xù)以節(jié)能降耗與可再生能源利用為抓手引領行業(yè)綠色低碳轉(zhuǎn)型。
Abstract:- To achieve the “double carbon” targets, carbon emissions reduction is becoming increasingly important for wastewater reclamation plant. In 2021, Qinghe Ⅱ wastewater reclamation plant (QH Ⅱ) focused on energy conservation in wastewater treatment process and biogas production enhancement in sludge treatment process. It took advantages of watershed operation and stabilized inlet load through joint adjustment of watershed water quantity. Energy efficiency of major energy consuming equipment, such as blowers and inlet pumps, was optimized to ensure the timely matching of equipment working conditions and treatment process requirements. The average daily electricity use in wastewater area was 0.353 kW·h/m3, 20.7% lower than that of 2020, and CO2 emission was reduced by 26.1% corresponding to power saving. In response to changes in sludge characteristics and ammonia nitrogen load of digestion tank, the biogas production was steadily increased by ensuring the proportion of primary sludge, stabilizing the organic loading rate of digester, and regulating the water content of its feed sludge. The average biogas production from September to November was 298 m3/tDS, an increase of 21.6% compared with January to August. The CO2 emission reduction rate of three renewable energy projects, including biogas power generation, photovoltaic power generation and water source heat pump system, was nearly 22%. QH Ⅱ will continue to take the lead in the wastewater industry’s green and low?carbon transformation with energy conservation and renewable energy utilization.
相似文獻/References:
[1]張彩云,張朋川,袁璐璐,等.超高標準除磷的納濾再生水工藝設計及工程驗證[J].中國給水排水,2021,37(10):116.
ZHANG Cai-yun,ZHANG Peng-chuan,YUAN Lu-lu,et al.Design and Engineering Verification of Nanofiltration Process for Super High Standard Phosphorous Removal in Wastewater Reclamation[J].China Water & Wastewater,2021,37(14):116.
[2]譚學軍,王磊.我國重點流域典型污水廠污泥處理處置方式調(diào)研與分析[J].中國給水排水,2022,38(14):1.
TANXue-jun,WANGLei.Investigation and Analysis on the Treatment and Disposal Methods of Typical Sewage Treatment Plant Sludge in China’s Key River Basins[J].China Water & Wastewater,2022,38(14):1.
更新日期/Last Update: 2022-07-17