Phosphorus migration from sediment to phosphorus-inactivating material: A key process neglected by common phosphorus immobilization assessments for lake geoengineering

IF 7.2 2区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL Water Research X Pub Date : 2023-08-15 DOI:10.1016/j.wroa.2023.100197
Changhui Wang , Xinyi Shen , Bo Fan , Wei Huang , Chenghao Huang , Leilei Bai , Helong Jiang
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Abstract

Various phosphorus (P)-inactivating materials with a strong capability of immobilizing P in sediment have been developed for lake geoengineering purposes to control internal P pollution. However, unsatisfactory applications have raised concerns about the reliability of the method. This study hypothesized that P migration from sediment to material is a key process regulating the immobilization, which is often neglected by common assessment procedures that assume that the material is closely in contact with sediment (e.g., as mixtures). To verify this hypothesis, 90-day incubation tests were conducted using drinking water treatment residue (DWTR). The results showed that the soluble P in the overlying water of sediment–DWTR mixtures and the mobile P in the mixtures were substantially reduced from the initial period and remained low during the whole incubation tests. However, assessment based on separated samples indicated a gradual P migration from sediment to DWTR for immobilization. Even after 90 days of incubation, mobile P still accounted for ∼5.33% of total P in the separated sediment. Further analysis suggested that using mixtures of sediment with DWTR accelerated P migration during the assessment, leading to a faster P immobilization assessment. Considering the relatively low levels of mobile P in the separated DWTR during incubation, the gradual decrease in mobile P in the separated sediment indicates that sediment P release regulates P immobilization efficiency. Therefore, designing a proper strategy to ensure sufficient time for the material to remain in close contact with the target sediment is critical to reducing uncertainties in lake geoengineering.

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磷从沉积物向失活物质的迁移:湖泊地球工程中常见的磷固定化评价所忽视的关键过程
为了控制湖泊内部磷污染,开发了各种具有较强固定沉积物中磷能力的磷灭活材料。然而,不令人满意的应用引起了人们对该方法可靠性的担忧。本研究假设磷从沉积物迁移到物质是调节固定化的关键过程,而通常的评估程序认为物质与沉积物密切接触(例如,作为混合物),这一过程往往被忽视。为了验证这一假设,使用饮用水处理残留物(DWTR)进行了90天的孵育试验。结果表明,沉积物-DWTR混合物上覆水中的可溶性磷和混合物中的流动性磷从初始阶段开始显著降低,并在整个培养试验过程中保持较低水平。然而,基于分离样品的评估表明,磷从沉积物逐渐迁移到DWTR进行固定。即使在培养90天后,流动磷仍占分离沉积物中总磷的~5.33%。进一步的分析表明,在评估过程中,使用具有DWTR的沉积物混合物加速了磷的迁移,从而加快了磷的固定化评估。考虑到在培养过程中分离的DWTR中流动磷的水平相对较低,分离沉积物中流动磷逐渐减少表明沉积物磷的释放调节了磷的固定效率。因此,设计一种适当的策略来确保材料有足够的时间与目标沉积物保持密切接触,对于减少湖泊地质工程中的不确定性至关重要。
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来源期刊
Water Research X
Water Research X Environmental Science-Water Science and Technology
CiteScore
12.30
自引率
1.30%
发文量
19
期刊介绍: Water Research X is a sister journal of Water Research, which follows a Gold Open Access model. It focuses on publishing concise, letter-style research papers, visionary perspectives and editorials, as well as mini-reviews on emerging topics. The Journal invites contributions from researchers worldwide on various aspects of the science and technology related to the human impact on the water cycle, water quality, and its global management.
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