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A newly developed injection method for aluminum treatment in eutrophic lakes: Effects on water quality and phosphorus binding efficiency

机译:富营养化湖泊中铝处理的一种新开发的注入方法:对水质和磷结合效率的影响

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Schutz J, Rydin E, Huser BJ. 2017. A newly developed injection method for aluminum treatment in eutrophic lakes: Effects on water quality and phosphorus binding efficiency. Lake Reserv Manage. 33:152-162.Application of aluminum (Al) salts has been used to reduce phosphorus (P) concentrations in lakes since the 1960s. Al is typically applied to the water column where Al-hydroxides form, settle to the sediment surface, and bind P in sediment. Al can be transported to other, non-target areas of the lake, however, potentially limiting treatment effectiveness. To alleviate this problem, a new method has been developed in which the Al salt is injected directly into the sediment as a liquid. In this study, the binding efficiency and application costs were calculated for 2 lakes in Sweden that received injection applications of polyaluminum chloride (PAC). Binding efficiency was similar to previous water column applications, implying there is little difference between the 2 application methods. Other factors, however, such as dissolved organic matter and type of Al salt used (PAC vs. Al sulfate), can also affect binding efficiency. Thus, Al injection may have improved the amount of P bound per unit Al in the study lakes given the in-lake conditions and Al salt used. Treatment cost (cost per kilogram of P bound to Al) for the injection method compared to previous water column treatments was somewhat higher due to increased costs for buffered PAC and time needed for application. Both mobile sediment P and internal loading remained reduced compared to pre-treatment conditions, showing that the Al injection treatments continued to control sediment P release. More study is needed, however, to determine the relative effectiveness of this method in different types of lakes.
机译:Schutz J,Rydin E和Huser BJ。 2017。一种新开发的用于富营养化湖泊中铝处理的注入方法:对水质和磷结合效率的影响。湖后备管理。 33:152-162。自1960年代以来,铝盐的应用已被用来减少湖泊中磷的浓度。通常将Al施加到水柱上,在此处形成氢氧化铝,沉淀到沉积物表面,并结合P在沉积物中。铝可以被运输到湖泊的其他非目标区域,但是,这可能会限制治疗效果。为了减轻该问题,已经开发了一种新方法,其中将铝盐作为液体直接注入沉积物中。在这项研究中,计算了瑞典两个接受聚氯化铝(PAC)注射应用的湖泊的结合效率和应用成本。结合效率类似于以前的水柱应用,这意味着这两种应用方法之间几乎没有差异。但是,其他因素,例如溶解的有机物和所用铝盐的类型(PAC与硫酸铝)也会影响结合效率。因此,考虑到湖中条件和所用的铝盐,铝的注入可能会改善研究湖泊中每单位铝的P结合量。与以前的水柱处理相比,进样方法的处理成本(每千克P结合到Al上的P成本)要高一些,这是因为缓冲PAC的成本增加以及应用所需的时间。与预处理条件相比,可移动的沉积物P和内部载荷均保持降低,表明Al注入处理继续​​控制了沉积物P的释放。但是,需要更多的研究来确定这种方法在不同类型的湖泊中的相对有效性。

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