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Characterization of a macrophyte microcosm as a surface water treatment system for antibiotics

机译:大型植物的特征作为一个缩影地表水系统的抗生素治疗

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摘要

Natural water treatment systems provide for a means to manage nutrient (and carbon) cycles while improving water quality. We present chemical engineering design characteristics from an example flow through and model tertiary water treatment microcosm. This research demonstrates that aquatic macrophytes (Pistia stratiotes and Eichhornia crasippes) can degrade concentrations (0-10 mg/L) of oxytetracycline (OTC). First order OTC degradation rate coefficients (0.07-4.5/day) can be adjusted by altering; agitation, pH, temperature, and aeration mass flows in exudate treatment strategies when simulated wastewater was fed at 10 L/day. Further, we suggest that electronic paramagnetic resonance can be used to aid in hypothesis testing that external elicitation with phytohormones can be used to promote biological based oxidative bursts with methyl jasmonate during water treatment. Finally, we suggest there is a lack of research that considers macrophytes in more holistic natural and human use cycles. (c) 2015 American Institute of Chemical Engineers Environ Prog, 34: 1605-1612, 2015
机译:自然水处理系统提供意味着管理养分和碳循环同时提高水质。化学工程设计特点通过一个例子和模型三级水治疗缩影。水生植物(水浮莲stratiotes和Eichhornia crasippes)可以降低浓度(清廉mg / L)的土霉素(OTC)。场外降解速率系数(0.07 - -4.5 /天)可以通过改变调整;在渗出物中温度和曝气质量流治疗策略时模拟废水美联储在10 L /天。电子顺磁共振可用于在假设检验,外部的援助与激素可以用来引出促进生物氧化迸出甲基jasmonate在水处理。我们建议缺乏研究认为大型植物更全面的自然和人类使用周期。化学工程师环境掠夺,34:1605-1612, 2015

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