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深入了解生物炭在颗粒硫酸盐还原上流污泥床反应器中产酸过程及微生物途径中的作用。

Insights into the role of biochar on the acidogenic process and microbial pathways in a granular sulfate-reducing up-flow sludge bed reactor.

机构信息

School of Environmental Science and Engineering, Low-Carbon Water Environment Technology Center (HUST-SUKE), Green Environmental Remediation Technology Center (HUST-Hikee), and Key Laboratory of Water & Wastewater Treatment (HUST), MOHURD, Huazhong University of Science and Technology, Wuhan, China.

Department of Civil and Environmental Engineering, Chinese National Engineering Research Center for Control & Treatment of Heavy Metal Pollution (Hong Kong Branch), and Water Technology Center, The Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong, China.

出版信息

Bioresour Technol. 2022 Jul;355:127254. doi: 10.1016/j.biortech.2022.127254. Epub 2022 May 4.

Abstract

In this study, the effect of biochar on sulfate reduction and anaerobic acidogenic process was explored in a granular sulfate-reducing up-flow sludge bed reactor in both long-term operation and batch tests. Both bioreactors had a high sulfate reduction efficiency of over 95% during the long-term operation, while the reactor with biochar addition showed higher sulfate reduction efficiency and stronger robustness against volatile fatty acids accumulation with a higher organic loading and sulfate loading rate. Batch tests showed that adding biochar significantly lessened the lag phase of the sulfate-reducing process, accelerated the adaption of acidogens, and facilitated both production and utilization of volatile fatty acids. The microbial pathways proved that biochar could regulate the acidification fermentation pathway and facilitate the enrichment of assimilative desulfurization bacteria. Overall, this study revealed that the acidogenic sulfate-reducing metabolic pathway could be enhanced by biochar, offering a potential application for effective sulfate-laden wastewater treatment.

摘要

在这项研究中,我们在长期运行和批量试验中,通过颗粒状硫酸盐还原上流污泥床反应器,探索了生物炭对硫酸盐还原和厌氧产酸过程的影响。在长期运行过程中,两个生物反应器的硫酸盐还原效率均超过 95%,而添加生物炭的反应器则表现出更高的硫酸盐还原效率和更强的抗挥发性脂肪酸积累能力,具有更高的有机负荷和硫酸盐负荷率。批量试验表明,添加生物炭显著缩短了硫酸盐还原过程的迟滞期,加速了产酸菌的适应过程,有利于挥发性脂肪酸的产生和利用。微生物途径证明,生物炭可以调节酸化发酵途径,有利于同化脱硫菌的富集。总的来说,这项研究表明,生物炭可以增强产酸硫酸盐还原代谢途径,为有效处理含硫酸盐废水提供了一种潜在的应用。

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