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Process-based modelling of phosphorus removal in a novel constructed wetland system using dewatered alum-sludge as substrate

机译:基于脱水的明矾污泥作为基质的新型人工湿地系统中磷去除的基于过程的建模

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摘要

A process-based model that can evaluate the transport and the fate of phosphorus (P) in agricultural wastewater was developed for a novel 4-stage dewatered alum sludge cakes (DASC) based constructed wetlands (CWs) system using STELLA software (version 9.1.4). The model considered adsorption, plant and microbial uptakes as the major forms of P involved in the transformation chains. The results were obtained by experimental procedure through laboratory measurement, from literature and/or calibration. The observed effluent P concentration in the CWs ranged from 3.62 to 8.50 mg/L (stage 1), 2.00 to 4.45 mg/L (stage 2), 1.39 to 3.76 mg/L (stage 3) and 0.52 to 2.36 mg/L (stage 4), whereas the simulated values ranged from 2.12 to 10.99 mg/L (stage 1), 1.32 to 5.65 mg/L (stage 2), 0.84 to 3.64 mg/L (stage 3) and 0.53 to 2.25 mg/L (stage 4), respectively. The simulated and observed values of P removal in the CWs system were in good agreement. A mass balance analysis was performed for all the major processes which resulted in a major pathway of P removal through adsorption (64–75%, 58–66%, 57–63% and 49–58%) followed by plant uptake (7–11%, 8–14%, 14–17% and 9–19%) and microbial uptake (3–7%, 3–5%, 9–12% and 7–12%) for stage 1, stage 2, stage 3 and stage 4, respectively. Thus the mathematical model developed in this study could be used to explain the removal processes and simulate the fate of P in the DASC-based CWs system.
机译:使用STELLA软件(版本9.1),为基于新型4级脱水明矾泥饼(DASC)的人工湿地(CWs)系统开发了一种基于过程的模型,该模型可以评估农业废水中磷(P)的传输和命运。 4)。该模型将吸附,植物和微生物的吸收视为转化链中P的主要形式。通过实验室测量,文献和/或校准,通过实验程序获得结果。在CW中观察到的废水P浓度范围为3.62至8.50 mg / L(阶段1),2.00至4.45 mg / L(阶段2),1.39至3.76 mg / L(阶段3)和0.52至2.36 mg / L(阶段4),而模拟值范围为2.12至10.99 mg / L(阶段1),1.32至5.65 mg / L(阶段2),0.84至3.64 mg / L(阶段3)和0.53至2.25 mg / L(阶段4)。连续水系统中磷去除率的模拟值与观测值吻合良好。对所有主要过程进行了质量平衡分析,这些过程导致了通过吸附去除磷的主要途径(64–75%,58–66%,57–63%和49–58%),然后是植物吸收(7–第1阶段,第2阶段,第11阶段,8–14%,14–17%和9–19%)和微生物摄取(3–7%,3–5%,9–12%和7–12%)第三阶段和第四阶段。因此,本研究中开发的数学模型可用于解释去除过程并模拟基于DASC的CWs系统中P的命运。

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