Dekle Jack L, Strosnider William H J, White Sarah A
Environmental Toxicology Graduate Program, Clemson University, 509 Westinghouse Rd., Pendleton, SC, 29670, USA.
Brown and Caldwell, Atlanta, GA, 30328, USA.
Environ Sci Pollut Res Int. 2024 Dec;31(58):66435-66444. doi: 10.1007/s11356-024-35641-4. Epub 2024 Dec 4.
Development of low-cost aqueous P removal methods is imperative for water resource protection. This study assessed the contribution of an iron oxide (FeOx) filter for P sorption paired with a denitrifying pine bark bioreactor, quantifying the effect of treatment order on P removal. FeOx filters were placed upstream (order 1) or downstream (order 2) of pine bark bioreactors receiving a continuous flow of simulated irrigation return flow after constructed floating wetland treatment. The FeOx filters removed 0.095 ± 0.01 g P·m·d and 0.21 ± 0.01 g P·m·d in the spring and fall, respectively. P concentration was reduced from 5.08 to 3.8 mg·L and from 6.72 to 4.5 mg·L in the spring and fall experiments, respectively. The FeOx substrate sorbed 1.49 ± 0.08 mg P·g FeOx in spring and 3.18 ± 0.2 mg P·g FeOx fall experiments. P sorption varied by season due to differences in the load presented to the FeOx filters. Reclaimed FeOx substrates were viable P removal filters, especially during cooler months when the nutrient uptake capacity of constructed floating wetland plants was limited. Overall, findings indicate that FeOx filters can be used as a substrate for P sorption in conjunction with constructed floating wetlands or other plant-based treatment technologies that can be limited by seasonality.
开发低成本的水中磷去除方法对于水资源保护至关重要。本研究评估了氧化铁(FeOx)过滤器对磷吸附的贡献,并将其与反硝化松树皮生物反应器相结合,量化了处理顺序对磷去除的影响。在构建的浮动湿地处理后,FeOx过滤器放置在接受连续模拟灌溉回流的松树皮生物反应器的上游(顺序1)或下游(顺序2)。FeOx过滤器在春季和秋季分别去除了0.095±0.01 g P·m·d和0.21±0.01 g P·m·d的磷。在春季和秋季实验中,磷浓度分别从5.08降至3.8 mg·L和从6.72降至4.5 mg·L。在春季和秋季实验中,FeOx基质分别吸附了1.49±0.08 mg P·g FeOx和3.18±0.2 mg P·g FeOx的磷。由于施加到FeOx过滤器上的负荷不同,磷吸附随季节变化。再生的FeOx基质是可行的磷去除过滤器,特别是在凉爽的月份,此时构建的浮动湿地植物的养分吸收能力有限。总体而言,研究结果表明,FeOx过滤器可作为磷吸附的基质,与构建的浮动湿地或其他可能受季节性限制的基于植物的处理技术结合使用。