Liang Yifan, Huang Zuchao, Pan Zengrui, Zhang Xubo, Xu Meng, Shen Yunchang, Li Jun
Key Laboratory of Microbial Technology for Industrial Pollution Control of Zhejiang Province, College of Environment, Zhejiang University of Technology Hangzhou 310014 China
Deqing Hengfeng Wastewater Treatment Co. Ltd Huzhou 313200 China.
RSC Adv. 2023 Jul 5;13(29):20113-20123. doi: 10.1039/d3ra02213g. eCollection 2023 Jun 29.
In wastewater treatment plants (WWTPs), external carbon sources are often required due to low C/N influent. However, the use of external carbon sources can increase treatment costs and cause large carbon emissions. Beer wastewater, which contains a substantial amount of carbon, is often treated separately in China, consuming significant energy and cost. However, most studies using beer wastewater as an external carbon source are still on a laboratory scale. To address this issue, this study proposes using beer wastewater as an external carbon source in an actual WWTP to reduce operating costs and carbon emissions while achieving a win-win situation. The denitrification rate of beer wastewater was found to be higher than that of sodium acetate , resulting in improved treatment efficiency of the WWTP. Specifically, COD, BOD, TN, NH-N and TP increased by 3.4%, 1.6%, 10.8%, 1.1%, and 1.7%, respectively. Additionally, the treatment cost and carbon emission per 10 000 tons of wastewater treated were reduced by 537.31 yuan and 2.27 t CO, respectively. These results indicate that beer wastewater has significant utilization potential and provide a reference for using different types of production wastewater in WWTPs. This study's findings demonstrate the feasibility of implementing this approach in an actual WWTP setting.
在污水处理厂(WWTPs)中,由于进水碳氮比低,通常需要外部碳源。然而,使用外部碳源会增加处理成本并导致大量碳排放。啤酒废水含有大量碳,在中国通常单独处理,消耗大量能源和成本。然而,大多数将啤酒废水用作外部碳源的研究仍处于实验室规模。为了解决这个问题,本研究建议在实际的污水处理厂中使用啤酒废水作为外部碳源,以降低运营成本和碳排放,同时实现双赢。研究发现啤酒废水的反硝化率高于乙酸钠,从而提高了污水处理厂的处理效率。具体而言,化学需氧量(COD)、生化需氧量(BOD)、总氮(TN)、氨氮(NH-N)和总磷(TP)分别增加了3.4%、1.6%、10.8%、1.1%和1.7%。此外,每处理10000吨废水的处理成本和碳排放量分别降低了537.31元和2.27吨二氧化碳。这些结果表明啤酒废水具有巨大的利用潜力,并为污水处理厂使用不同类型的生产废水提供了参考。本研究的结果证明了在实际污水处理厂环境中实施这种方法的可行性。