Improving the stability and efficiency of anaerobic hybrid reactor in treating citric acid wastewater using syntrophic methanogenic consortia.

IF 2 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES Environmental Technology Pub Date : 2025-08-01 Epub Date: 2025-04-02 DOI:10.1080/09593330.2025.2483938
Nasrul Hudayah, Nimaradee Boonapatcharoen, Wantanasak Suksong, Varunee Kongduan, Duanganong Phalaphol, Janphen Ainthaklay, Naruemon Aekkawatchai, Morakot Tanticharoen, Benjaphon Suraraksa
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Abstract

Due to the high concentrations of chemical oxygen demand (COD) and total volatile acids (TVA) in the range of 18,000-20,000 mg/L and 4,900-5,600 mg/L, respectively, the treatment of citric acid production wastewater is a challenge. An anaerobic hybrid reactor (AHR) was used to treat this wastewater. The AHR operated at the maximum organic loading rate (OLR) of 7.6 kg COD/m3/d and a hydraulic retention time (HRT) of 2.5 days without any inhibition. The COD removal efficiency, methane yield, and methane content were 90%, 0.25 Nm3 CH4/kg COD removed, and 65%, respectively. Moreover, the activities of acetoclastic and hydrogenotrophic methanogens were approximately 108% and 63% higher than those of the initial inoculum, respectively. After increasing OLR to 8.3 kg COD/m3/d, TVA was accumulated at 5,200 mg/L, leading to failure. The main organic acids were acetic acid (AA) and propionic acid (PA) with concentrations of 2,800 and 1,300 mg/L, respectively. Syntrophic methanogenic consortia (SMC) were augmented into the AHR to recover the system. After 4 days of bioaugmentation, the TVA concentration decreased to less than 500 mg/L. Bioaugmentation also increased the ratio of the methanogens and acetogens to total microorganisms at the end of the recovery period to 32% and 23%, respectively. The AHR can be recovered to operate at OLR of 7.6 kg COD/m3/d within 18 days with good performance and microbial balance.

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提高厌氧混合式反应器处理柠檬酸废水的稳定性和效率。
柠檬酸生产废水中化学需氧量(COD)和总挥发性酸(TVA)的浓度分别在18000 ~ 20000 mg/L和4900 ~ 5600 mg/L之间,是处理柠檬酸废水的一个挑战。采用厌氧混合反应器(AHR)处理该废水。AHR的最大有机负荷速率(OLR)为7.6 kg COD/m3/d,水力停留时间(HRT)为2.5天,无任何抑制作用。COD去除率为90%,甲烷产率为0.25 Nm3 CH4/kg,甲烷含量为65%。与初始接种量相比,发酵菌和产氢甲烷菌的活性分别提高了约108%和63%。将OLR提高到8.3 kg COD/m3/d后,TVA积累在5200 mg/L,导致失效。主要有机酸为乙酸(AA)和丙酸(PA),浓度分别为2800和1300 mg/L。在AHR中增加合成气产甲烷联合体(SMC)来恢复系统。生物增强4 d后,TVA浓度降至500 mg/L以下。生物强化还使回收期结束时产甲烷菌和产氧菌占总微生物的比例分别提高到32%和23%。AHR可在18 d内恢复到7.6 kg COD/m3/d的OLR运行,并具有良好的性能和微生物平衡。
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来源期刊
Environmental Technology
Environmental Technology 环境科学-环境科学
CiteScore
6.50
自引率
3.60%
发文量
0
审稿时长
4 months
期刊介绍: Environmental Technology is a leading journal for the rapid publication of science and technology papers on a wide range of topics in applied environmental studies, from environmental engineering to environmental biotechnology, the circular economy, municipal and industrial wastewater management, drinking-water treatment, air- and water-pollution control, solid-waste management, industrial hygiene and associated technologies. Environmental Technology is intended to provide rapid publication of new developments in environmental technology. The journal has an international readership with a broad scientific base. Contributions will be accepted from scientists and engineers in industry, government and universities. Accepted manuscripts are generally published within four months. Please note that Environmental Technology does not publish any review papers unless for a specified special issue which is decided by the Editor. Please do submit your review papers to our sister journal Environmental Technology Reviews at http://www.tandfonline.com/toc/tetr20/current
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