Simultaneous removal of nutrients and pharmaceuticals and personal care products using two-stage woodchip bioreactor-biochar treatment systems

IF 12.2 1区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL
Hongxu Zhou , Haribansha Timalsina , Shuai Tang , Sophie Circenis , Jason Kandume , Richard Cooke , Buchun Si , Rabin Bhattarai , Wei Zheng
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Abstract

The co-occurrence of nutrients and pharmaceuticals and personal care products (PPCPs) in sewage effluent can degrade water quality of the receiving watersheds. This study investigated the simultaneous removal of excess nutrients and PPCP contaminants by developing a novel woodchip bioreactor and biochar (B2) treatment system. The result revealed that woodchip bioreactors could effectively remove nitrate via a denitrification process and adsorb some PPCPs. Biochar as a secondary treatment system significantly reduced the concentrations of PPCPs and dissolved reactive phosphorus (DRP) (p < 0.05), compared to the woodchip bioreactor. The removal efficiencies of all targeted contaminants by the B2 system were evaluated using various hydraulic retention times (HRTs) and biochar types (pelletized versus granular biochar). Longer HRTs and smaller biochar particles (granular biochar) could enhance the removal efficiencies of targeted contaminants. Average contaminant removals were 77.25 % for nitrate-N, 99.03 % for DRP, 69.51 % for ibuprofen, 73.65 % for naproxen, 91.09 % for sitagliptin, and 96.96 % for estrone, with woodchip bioreactor HRTs of 12 ± 1.4 h and granular biochar HRTs of 2.1 ± 0.1 h. Notably, the second-stage biochar systems effectively mitigated by-products leaching from woodchip bioreactors. The presence of PPCPs in the woodchip bioreactors enriched certain species, such as Methylophilus (69.6 %), while inhibiting other microorganisms and reducing microbial community diversity. Furthermore, a scaled-up B2 system was analyzed and assessed, indicating that the proposed engineering treatment system could provide decades of service in real-world applications. Overall, this study suggests that the B2 system has promising applications for addressing emerging and conventional contaminants.

Abstract Image

利用两级木屑生物反应器-生物炭处理系统同时去除营养物质、药物和个人护理产品
污水中营养物质和药物及个人护理产品(PPCPs)的共存会使受纳流域的水质恶化。本研究通过开发新型木屑生物反应器和生物炭(B2)处理系统,对同时去除过量营养物和 PPCP 污染物进行了研究。结果表明,木屑生物反应器可通过反硝化过程有效去除硝酸盐,并吸附一些 PPCPs。与木屑生物反应器相比,生物炭作为二级处理系统可显著降低 PPCPs 和溶解性活性磷 (DRP) 的浓度(p < 0.05)。采用不同的水力停留时间(HRTs)和生物炭类型(颗粒状生物炭与粒状生物炭)对 B2 系统去除所有目标污染物的效率进行了评估。较长的水力停留时间和较小的生物炭颗粒(颗粒状生物炭)可提高目标污染物的去除率。木片生物反应器的 HRT 为 12 ± 1.4 小时,颗粒生物炭的 HRT 为 2.1 ± 0.1 小时,污染物的平均去除率分别为硝酸盐-N(77.25%)、DRP(99.03%)、布洛芬(69.51%)、萘普生(73.65%)、西他列汀(91.09%)和雌酮(96.96%)。值得注意的是,第二阶段生物炭系统有效地减轻了木片生物反应器中副产品的沥滤。木片生物反应器中 PPCPs 的存在富集了某些物种,例如嗜甲菌(69.6%),同时抑制了其他微生物,降低了微生物群落的多样性。此外,还对一个扩大的 B2 系统进行了分析和评估,表明拟议的工程处理系统可在实际应用中提供数十年的服务。总之,这项研究表明,B2 系统在处理新兴和传统污染物方面具有广阔的应用前景。
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来源期刊
Journal of Hazardous Materials
Journal of Hazardous Materials 工程技术-工程:环境
CiteScore
25.40
自引率
5.90%
发文量
3059
审稿时长
58 days
期刊介绍: The Journal of Hazardous Materials serves as a global platform for promoting cutting-edge research in the field of Environmental Science and Engineering. Our publication features a wide range of articles, including full-length research papers, review articles, and perspectives, with the aim of enhancing our understanding of the dangers and risks associated with various materials concerning public health and the environment. It is important to note that the term "environmental contaminants" refers specifically to substances that pose hazardous effects through contamination, while excluding those that do not have such impacts on the environment or human health. Moreover, we emphasize the distinction between wastes and hazardous materials in order to provide further clarity on the scope of the journal. We have a keen interest in exploring specific compounds and microbial agents that have adverse effects on the environment.
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