首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Enhancement of active thin-layer capping with natural zeolite to simultaneously inhibit nutrient and heavy metal release from sediments
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Enhancement of active thin-layer capping with natural zeolite to simultaneously inhibit nutrient and heavy metal release from sediments

机译:增强天然沸石的活性薄层封端,同时抑制沉积物的营养和重金属释放

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This study strove to enhance the efficiency of sediment capping using active thin-layer capping (ATC) with natural zeolite to simultaneously prevent the release of nutrients (PO43- and NH4+) and heavy metals (Pb2+, Cd2+, Mn2+, and Zn2+) from polluted reservoir sediment. A series of lab-scale column experiments were performed in different conditions by varying capping thickness, ionic strength of Na+ and Ca2+, and the redox environment in overlying water. Results showed that the release of nutrients and heavy metals could be prevented effectively using ATC with zeolite. There was no significant difference in the efficiency of nutrient (except PO34-) and heavy metals inhibition among three capping thicknesses. The greatest efficiency was obtained with 2 cm thickness, which the inhibition rates of NH4+, PO43-, Cd2+, Pb2+, Mn2+, and Zn2+ were 91.9%, 57.7%, 35.7%, 85.7%, 65.6%, and 57.8%, respectively. And, the capping thickness of 1 cm was sufficient to simultaneously prevent the release of nutrients and heavy metals from sediment. The presence of high Ca2+ concentration in the overlying water promoted the release of nutrients and heavy metals. However, aerobic environment could enhance the efficiency of inhibition of nutrient and heavy metal (except Cd2+) release from sediment. Additionally, fluxes of NH4+, PO43-, and Pb2+ in aerobic conditions with capping were significantly lower than those in anaerobic conditions without capping in an in situ capping simulated experiment. Therefore, the efficiency of inhibiting the release of nutrients and heavy metals from sediments could be enhanced by ATC with natural zeolite through a series of measures, including increasing suitable capping thickness, creating an aerobic environment, and reducing the content of Ca2+ in overlying water.
机译:该研究培养了利用天然沸石的活性薄层封端(ATC)来提高沉积物封盖的效率,以同时防止污染的营养素(PB2 +,CD2 +,MN2 +,和Zn2 +)释放营养素(PB2 +,CD2 +,MN2 +,和Zn2 +)的释放水库沉积物。通过不同的条件下通过不同的封端厚度,Na +和Ca2 +的离子强度以及覆盖水中的氧化还原环境进行了一系列实验室规模的柱实验。结果表明,通过用沸石有效地防止营养物和重金属的释放。营养素(PO34-)效率和三个封端厚度的重金属抑制没有显着差异。用2cm厚的厚度获得最大的效率,其NH 4 +,PO43-,CD2 +,PB2 +,MN2 +和Zn2 +的抑制率分别为91.9%,57.7%,35.7%,85.7%,65.6%和57.8%。并且,封端厚度为1厘米足以同时防止植物释放肥皂和重金属。覆盖水中的高Ca2 +浓度的存在促进了营养物质和重金属的释放。然而,有氧环境可以增强抑制营养和重金属(CD2 +)释放的抑制效率。另外,封端的有氧条件下的NH 4 +,PO43-和PB2 +的通量明显低于厌氧条件下的助性,而无需在原位封盖模拟实验中封装。因此,通过通过一系列措施,ATC通过ATC通过ATC提高抑制沉积物释放的培养物和重金属的效率,包括增加合适的覆盖厚度,产生有氧环境,并降低覆盖水中Ca2 +的含量。

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