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Phosphorus recovery from wastewater through struvite formation in fluidized bed reactors: a sustainable approach

机译:在流化床反应器中通过鸟粪石形成从废水中回收磷:一种可持续的方法

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摘要

Recovery of phosphate as struvite (MgNH4PO4 center dot 6H2O), before it forms and accumulates on wastewater treatment equipment, solves wastewater treatment problems and also provides environmentally sustainable, renewable nutrient source for the agriculture sector. A pilot- scale fluidized bed reactor was used to recover phosphate through crystallization of struvite, from anaerobic digester centrate at the Lulu Island Wastewater Treatment Plant, Richmond, British Columbia, Canada. The desired degree of phosphate removal was achieved by maintaining operating pH (8.0-8.2), and recycle ratio 5-9, to control the supersaturation conditions inside the reactor. The performance of the system was found to be optimal when in-reactor supersaturation ratio was 2-6. Among several other operating parameters, apparent upflow velocity and magnesium to phosphate molar ratio were also found important to maintain system performance, both in terms of efficiency of phosphate removal and recovery as struvite pellets. A narrow window of upflow velocity (400-410 cm/min) was found to be effective in removing 75-85% phosphate. TOC level inside the rector was found to affect the performance to some extent. The precipitation potential of struvite could be successfully predicted using a thermodynamic solubility product value of 10(-13.36) and its temperature dependence in PHREEQC.
机译:回收作为鸟粪石的磷酸盐(MgNH4PO4中心点6H2O),在其形成并积累在废水处理设备上之前,解决了废水处理问题,还为农业部门提供了环境可持续的可再生营养源。在加拿大不列颠哥伦比亚省里士满的露露岛废水处理厂,使用中试流化床反应器通过鸟粪石结晶回收磷酸盐,回收磷。通过保持操作pH(8.0-8.2)和循环比5-9,以控制反应器内部的过饱和条件,可以达到所需的磷酸盐去除率。当反应器内过饱和比为2-6时,系统的性能最佳。在除磷的效率和作为鸟粪石颗粒的回收方面,还发现了其他几个运行参数中,表观上流速度以及镁与磷酸盐的摩尔比对于维持系统性能很重要。发现上流速度的狭窄窗口(400-410 cm / min)可有效去除75-85%的磷酸盐。发现调校器内部的TOC级别在一定程度上影响性能。利用热力学溶解度乘积值为10(-13.36)及其在PHREEQC中的温度依赖性,可以成功地预测鸟粪石的沉淀潜力。

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