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Effects of a modified zeolite on P and N processes and fluxes across the lake sediment–water interface using core incubations

机译:核心沸石对改性沸石对磷和氮过程及跨湖沉积物-水界面通量的影响

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A new locally produced P-inactivation agent, Z2G1, was tested on sediment cores from Lake Okaro, New Zealand, for phosphorus (P) removal efficacy and any non-target side effects prior to a whole lake trial to manage internal P loading. Z2G1 is a granular product which settles rapidly, and was designed as a sediment capping material. It is a modified zeolite which acts as a carrier for the aluminium (Al)-based P-binding agent. It was found to have a high affinity for P and did not release Al into the water column. Continuous-flow incubation study results showed that a thin layer of Z2G1 (~2 mm) could completely block the release of P from the sediment under aerobic and anoxic conditions, and remove P from the overlying water in contact with the capping layer. The Z2G1 capping layer neither released metals itself nor did it induce the release of metals from the sediments, and the zeolite substrate absorbed arsenic and mercury from the geothermally influenced Lake Okaro sediments. In general, zeolites are strong cation absorbers and the zeolite substrate of Z2G1 absorbed ammoniacal nitrogen, making it the only sediment capping material to actively remove both P and N. There were, however, indications of a suppression effect on microbial denitrification by the Z2G1 capping layer under aerobic conditions. Overall, the Z2G1 sediment capping material is a highly effective P-inactivation agent which might be a useful material for managing internal P loads in eutrophic lakes.
机译:在管理整个内部P负荷的整个湖泊试验之前,在新西兰Okaro湖的沉积物岩心上测试了一种新的本地生产的P灭活剂Z2G1的除磷功效和任何非目标副作用。 Z2G1是一种快速沉降的颗粒状产品,被设计为沉积物封盖材料。它是一种改性沸石,可作为铝(Al)基P结合剂的载体。发现对P具有高亲和力,并且不会将Al释放到水柱中。连续流孵育研究结果表明,在有氧和缺氧条件下,薄的Z2G1(约2 mm)层可以完全阻止P从沉积物中释放,并从与覆盖层接触的上覆水中去除P。 Z2G1覆盖层既不释放金属本身,也不诱导沉积物中的金属释放,并且沸石基质吸收了受地热影响的Okaro湖沉积物中的砷和汞。通常,沸石是强阳离子吸收剂,Z2G1的沸石基质吸收氨氮,使其成为唯一同时去除P和N的沉积物覆盖材料。但是,有迹象表明Z2G1覆盖对微生物反硝化作用有抑制作用。层在有氧条件下。总体而言,Z2G1沉积物封堵材料是一种高效的P灭活剂,可能是用于管理富营养化湖泊中内部P负荷的有用材料。

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