Corncob-pyrite bioretention system for enhanced dissolved nutrient treatment: Carbon source release and mixotrophic denitrification

生态调节池 玉米芯 化学 黄铁矿 环境化学 自养 反硝化 营养物 环境工程 氮气 环境科学 雨水 生态学 矿物学 地表径流 地质学 有机化学 古生物学 原材料 细菌 生物
作者
Zhongshuai Weng,Haiyuan Ma,Jingchen Ma,Zheng Kong,Zhiyu Shao,Yunsong Yuan,Yanhong Xu,Qichang Ni,Hongxiang Chai
出处
期刊:Chemosphere [Elsevier BV]
卷期号:306: 135534-135534 被引量:56
标识
DOI:10.1016/j.chemosphere.2022.135534
摘要

Solid biomass waste amendment and substrates modification in bioretention systems have been increasingly used to achieve effective dissolved nutrients pollution control in stormwater runoff. However, the risk of excess chemical oxygen demand (COD) leaching from organic carbon sources is often overlooked on most occasions. Pyrite is an efficient electron donor for autotrophic denitrification, but little is known about the efficacy of autotrophic-heterotrophic synergistic effect between additional carbon source and pyrite in bioretention. Here, four bioretention columns (i.e., corncob column (C), pyrite column (P), the corncob-pyrite layered column (L-CP), and the corncob-pyrite mixed column (M-CP)) were designed and filled with soil, quartz sand, and modified media to reveal the synergistic effects. The results showed that the corncob-pyrite layered bioretention could maintain low COD effluent concentration with high stability and efficiency in treating dissolved nutrients. When the influent nitrogen and phosphorus concentrations were 8.46 mg/L and 0.94 mg/L, the average removal rates of ammonia nitrogen, total inorganic nitrogen, and phosphate were 83.6%, 70.52%, and 76.35%, respectively. The scouring experiment showed that placing the corncob in the mulch layer was beneficial to the sustained release of dissolved organic carbon (DOC). Erosion pits were found in the SEM images of used pyrite, indicating that autotrophic denitrifying bacteria in the bioretention could react with pyrite as an electron donor. The relative abundance of Thiobacillus in the submerged zone of the corncob-pyrite layered bioretention reached 38.39%, indicating that the carbon source in the mulch layer increased the relative abundance of Thiobacillus . Coexisting heterotrophic and autotrophic denitrification in this bioretention created a more abundant microbial community structure in the submerged zone. Overall, the corncob-pyrite layered bioretention is highly promising for stormwater runoff treatment, with effective pollution removal and minimal COD emission. • Pyrite mixotrophic denitrification was synergistically promoted by covered corncob. • Additional coverage of corncob increased over 90% pyrite denitrification efficiency. • Covering corncob reduced 80% of the effluent COD than filling with pyrite. • Covered corncob significantly increased relative abundance of Thiobacillus to 38.39%.
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