Pastor L, Mangin D, Ferrer J, Seco A
Departamento de Ingeniería Hidráulica y Medio Ambiente, Universidad Politécnica de Valencia, Camino de Vera s/n, 46022 Valencia, Spain.
Bioresour Technol. 2010 Jan;101(1):118-25. doi: 10.1016/j.biortech.2009.08.002. Epub 2009 Sep 3.
This work studied the influence of the characteristics of the supernatants on the struvite precipitation process. Eighteen experiments with the supernatants generated in an anaerobic digestion pilot plant were performed in a stirred reactor. In order to obtain the pH control during the crystallization process, a Fuzzy Logic based controller was used. High phosphorus precipitation and recovery efficiencies were obtained. The composition of the supernatants was analyzed in order to study its influence on the solids formed from those solutions. The presence of calcium reduced the percentage of phosphorus precipitated as struvite leading to the formation of amorphous calcium phosphate (ACP), which tended to be lost with the effluent of the reactor. Calcite was also formed when supernatants with high magnesium:phosphorus (Mg/P) and calcium:phosphorus (Ca/P) molar ratios were employed. Some ammonium volatilization by conversion to NH(3) occurred in all the experiments. The use of air to increase the pH to an adequate value showed to be feasible. Aeration cleaned struvite crystals from suspended solids, which makes aeration interesting for struvite separation. However, aeration slightly increased the loss of phosphorus with the effluent of the reactor and promoted ammonium volatilization.
本研究考察了上清液特性对鸟粪石沉淀过程的影响。在搅拌反应器中,对厌氧消化中试装置产生的上清液进行了18次实验。为了在结晶过程中实现pH控制,采用了基于模糊逻辑的控制器。获得了较高的磷沉淀和回收效率。分析了上清液的成分,以研究其对由这些溶液形成的固体的影响。钙的存在降低了以鸟粪石形式沉淀的磷的百分比,导致形成无定形磷酸钙(ACP),其倾向于随反应器流出物流失。当使用高镁磷(Mg/P)和钙磷(Ca/P)摩尔比的上清液时,也会形成方解石。在所有实验中均发生了部分铵转化为NH(3)的挥发。使用空气将pH值提高到合适的值被证明是可行的。曝气可去除鸟粪石晶体上的悬浮固体,这使得曝气对于鸟粪石分离很有意义。然而,曝气会略微增加反应器流出物中磷的损失,并促进铵的挥发。