高效复合处理剂的微观结构及其去除景观水体氮磷的机制
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国家重点基础研究发展计划项目(2017YFC0404705)、国家自然科学基金项目(41671291)和中央高校基本业务费专项(XDJK2018D030)


Microstructures of the High Efficiency Compounding Agent and Mechanism of Its Removing Nitrogen and Phosphorus from Landscape Water
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National Key Research and Developmental Program of China (No. 2017YFC0404705) , National Natural Science Fund (No.41671291), and the Fundamental Research Funds for the Central Universities (No. XDJK2018D030)

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    摘要:

    通过电镜扫描、能谱分析、红外光谱和 X-射线衍射研究了蓬莱镇组紫色母岩(J3p)及聚合硫酸铁(PFS)复合处理剂(J3p+PFS) 的结构形态;通过分析J3p对总氮、总磷的等温吸附曲线以及系统Zeta 电位、分形维数、叶绿素a的变化,探索了复合处理剂去除总氮、总磷的机制。结果表明:电镜扫描及能谱分析发现J3p 与PFS复合后具有更大的团粒结构,表面更加蓬松,且元素构造大致与J3p一致,但金属元素含量有所改变。红外光谱及X-射线衍射结果显示,J3p与PFS复合后内部物质成分及功能基团均发生变化,形成了新的以羟基桥联的铁的多聚物。J3p对水体总氮的吸附作用是单层分子吸附以及表面吸附,对总磷的吸附作用主要是单层分子吸附;PFS对水体氮磷的絮凝机制是电性中和作用。通过综合分析,发现J3p+PFS结合了PFS的电性中和作用及J3p的吸附作用优势,可实现对景观水体总氮及总磷的快速、高效去除。处理3h后,J3p+PFS对总氮、总磷的去除率分别达到53.53%及86.48%。

    Abstract:

    [Objective] The primary cause of eutrophication of landscape water is too much N and P in the water body. It is, therefore, key to control of landscape water eutrophication to reduce N and P concentrations in the water body. Studies have shown that total nitrogen(TN) and total phosphorus(TP) in landscape water can be effectively removed with the complex of purple parent rock and polymeric ferric sulfate (PFS). However, it is still unclear how the complex looks like in micro-structure and how it removes TN and TP from landscape water. [Method]Morphological structure of the complex of J3p purple parent rock and ferric sulfate (J3p+PFS) was explored with electron microscopic scanning, energy spectrum analysis, infrared spectrum analysis and X-ray diffraction, and mechanism its removing total nitrogen and total phosphorus through analysis of isothermal curves of the adsorption of total nitrogen and total phosphorus by J3p, zeta potential of the system, fractal dimension, and changes in content of chlorophyll a.[Result] Electron microscopic scanning and energy spectrum analysis shows that once J3p and PFS formed into complex, larger in agglomerate structure, more fluffy in surface and roughly the same as J3p in elemental structure, but changed in content of metal elements. Infrared spectroscopy and X-ray diffraction shows that changes occurred in composition of its internal material and functional groups, thus turning the complex into new hydroxyl-bridged iron polymers. Isothermal adsorption experiments show that TN adsorbed on J3p was in the form of a monolayer on the surface, while TP adsorbed mainly in the form of a monolayer, with maximum theoretical adsorption capacity being 0.259 mg•g-1 and 0.619 mg•g-1, respectively. Zeta potential of the system increased dramatically after it was treated with J3p + PFS, but still below 0, which indicates that the use of J3p + PFS integrates the advantages of PFS neutralizing charges, and of J3p adsorbing N and P. Once landscape water was treated with J3p, PFS, or J3p + PFS, TN, TP and chlorophyll-a concentrations in the water all reduced. However, J3p + PFS shows the highest capacity of removing TN, TP, and chlorophyll-a. Moreover, fractal dimension of the system was higher after treatment with J3p + PFS than after treatment of J3p or PFS. All the findings demonstrate that J3p+ PFS promotes aggregation of chlorophyll-a, which precipitates in tiny particles in the water, thus reducing the content of chlorophyll-a and hence the contents of TN and TP. [Conclusion] The complex of J3p+PFS integrates the effect of PFS neutralizing charges and that of J3p adsorbing N and P, so it can achieve rapid and efficient removal of total nitrogen and total phosphorus from landscape water. The complex can removal of TN and TP from landscape water by 53.53% and 86.48%, respectively, in 3 hours after the treatment.

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黄雪娇,李振轮,冯密,倪九派,谢德体.高效复合处理剂的微观结构及其去除景观水体氮磷的机制[J].土壤学报,2020,57(1):100-107. DOI:10.11766/trxb201811190558 HUANG Xuejiao, LI Zhenlun, FENG Mi, NI Jiupai, XIE Deti. Microstructures of the High Efficiency Compounding Agent and Mechanism of Its Removing Nitrogen and Phosphorus from Landscape Water[J]. Acta Pedologica Sinica,2020,57(1):100-107.

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  • 收稿日期:2018-11-13
  • 最后修改日期:2019-02-25
  • 录用日期:2019-03-08
  • 在线发布日期: 2019-11-07
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