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Pilot-Scale Denitrification Bioreactors for Replicated Field Research

机译:用于重复田间研究的中试脱氮生物反应器

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摘要

Carbon-based denitrification bioreactors are designed to intercept tile drainage and are a promising technology for reducing NO3- export to surface water. While these systems have been tested extensively in the laboratory, the ability to study in-field bioreactors under controlled conditions with statistical replicates has been limited. Nine pilot-scale bioreactors (5.79 x 1.05 x 1.07 m) were designed and installed for systematic field testing, allowing for variation in retention time, fill material, and influent water quality parameters. Each bioreactor is constructed from a concrete trench in-line with influent flow control, dosing port, flow diffusion, and effluent water level control. Sampling ports are installed at two points in each bioreactor for access to water samples or fill materials. A potassium bromide (KBr) tracer study was conducted and Morrill Dispersion Index (MDI) values averaged 2.8 ± 0.3, indicating plug flow characteristics. The average tracer residence time () was 2.3 ± 0.3 h, in close agreement with the estimated hydraulic retention time (HRT) value of 2.1 ± 0.3 h, which was calculated using a porosity value of 0.70. Hydraulic efficiency was good (λ = 0.78 ± 0.03) and there was no evidence of short circuiting (S = 0.73 ± 0.03). This system is expected to provide useful insight regarding design for improved field performance of denitrification bioreactors.
机译:碳基反硝化生物反应器旨在拦截瓷砖排水,是减少NO3排放到地表水中的有前途的技术。尽管这些系统已经在实验室中进行了广泛的测试,但是在受控条件下研究现场生物反应器并进行统计重复的能力受到了限制。设计并安装了9个中试规模的生物反应器(5.79 x 1.05 x 1.07 m),用于系统的现场测试,从而可以改变保留时间,填充材料和进水水质参数。每个生物反应器均由混凝土沟槽构成,并具有进水流量控制,计量口,流量扩散和出水水位控制功能。每个生物反应器的两个位置都安装了采样口,以获取水样或填充材料。进行了溴化钾(KBr)示踪剂研究,莫里尔分散指数(MDI)值平均为2.8±0.3,表明塞流特性。示踪剂的平均停留时间()为2.3±0.3 h,与估计的水力停留时间(HRT)值为2.1±0.3 h,这是使用0.70的孔隙率计算得出的。液压效率很好(α= 0.78±0.03),没有短路的迹象(S = 0.73±0.03)。该系统有望为设计提供有用的见解,以提高反硝化生物反应器的现场性能。

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