Techno-economic feasibility study of ammonia recovery from sewage sludge digestate in wastewater treatment plants

IF 6.1 Q2 ENGINEERING, ENVIRONMENTAL Cleaner Environmental Systems Pub Date : 2024-11-06 DOI:10.1016/j.cesys.2024.100235
Mohammad Alrbai , Sameer Al-Dahidi , Bashar Shboul , Mosa Abusorra , Hassan Hayajneh
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Abstract

Wastewater treatment plants play a vital role in resource recovery, particularly through biogas production, a key renewable energy source. Beyond biogas, the digestate from anaerobic digestion is rich in nutrients like ammonia. This study explored the feasibility of recovering ammonia from sewage sludge digestate using air stripping. The process was modeled using Aspen Plus® software, utilizing real data from As-Samra WWTP in Jordan. Various operational parameters, such as digestate feed flow, air flow rate, temperature, and pressure, were analyzed to optimize ammonia recovery. The results showed that with a feed flow rate between 10,000 and 30,000 kg/hr, ammonia recovery reached 85%, with production exceeding 100 kg/hr, where the effect of the flow rate appears mostly at elevated feeding temperatures. Increased air flow rates significantly boosted recovery, achieving 90% efficiency at 60 °C with 50,000 kg/h as air flow. Flashing pressure peaked at 1.5 bar, with 85% efficiency at 95 °C, while higher pressures yielded diminishing returns, stabilizing production around 106 kg/hr. The NaOH feed rate also influenced output, rising from 100 kg/hr at a 50 kg/hr feed rate to 107 kg/hr at 750 kg/hr, with recovery efficiency exceeding 85%. The economic analysis showed that the project had a payback period of 6.07 years, reflecting a reasonable recovery of the initial investment. The net present value was 122,924 USD over 15 years, with 8% amortization rate, indicating that the project created value beyond the initial cost. The internal rate of return was 14.23%, surpassing the discount rate and highlighting the project's financial attractiveness.
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从污水处理厂污泥消化液中回收氨的技术经济可行性研究
污水处理厂在资源回收方面发挥着至关重要的作用,特别是通过生产沼气这种重要的可再生能源。除沼气外,厌氧消化产生的沼渣还富含氨等营养物质。本研究探讨了利用空气剥离从污水污泥消化液中回收氨的可行性。利用约旦 As-Samra 污水处理厂的真实数据,使用 Aspen Plus® 软件对该工艺进行了建模。分析了沼渣进料流量、空气流速、温度和压力等各种运行参数,以优化氨回收。结果表明,进料流量在 10,000 至 30,000 公斤/小时之间时,氨回收率达到 85%,产量超过 100 公斤/小时,其中流量的影响主要体现在进料温度升高时。增加空气流量可显著提高回收率,在 60 °C 条件下,空气流量为 50,000 公斤/小时时,回收率达到 90%。闪蒸压力在 1.5 巴时达到峰值,95 °C时的效率为 85%,而更高的压力会导致收益递减,使产量稳定在 106 公斤/小时左右。NaOH 进料率也影响产量,从 50 kg/hr 进料率时的 100 kg/hr,上升到 750 kg/hr 时的 107 kg/hr,回收效率超过 85%。经济分析表明,该项目的投资回收期为 6.07 年,合理地收回了初始投资。15 年的净现值为 122,924 美元,摊销率为 8%,表明该项目创造的价值超出了初始成本。内部收益率为 14.23%,超过了贴现率,凸显了项目的财务吸引力。
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来源期刊
Cleaner Environmental Systems
Cleaner Environmental Systems Environmental Science-Environmental Science (miscellaneous)
CiteScore
7.80
自引率
0.00%
发文量
32
审稿时长
52 days
期刊最新文献
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