经生物改良的沿海土壤中铅(II)和金霉素的固定化及经济性

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-06-03 DOI:10.1016/j.jconhyd.2024.104381
Yuting Song , Hongyan Deng , Wenbin Li , Shuni Zhou , Xin Liu
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引用次数: 0

摘要

为研究生物改良滨海土壤对污染物的固定化和经济性,采用 Alternanthera philoxeroides 生物质(Bm)、生物炭(Bc)和十二烷基二甲基甜菜碱(BS)改性 Bc(BS-Bc)对嘉陵江、府河和渠江的滨海土壤进行改良。通过径流实验模拟了铅(II)和金霉素(CTC)在各改良沿岸土壤中的纵向迁移和形态变化,并比较了不同改良沿岸土壤固定污染物的经济性。Pb(II)和 CTC 在各改良滨海土壤中的平衡时间依次为 BS-Bc-改良土壤;Bc-改良土壤;Bm-改良土壤;未改良土壤。不同改良沿海土壤中的铅(II)和四氯化碳平均流速与平衡时间呈相反趋势。随着径流长度的增加,铅(II)和四氯化碳的含量都有所降低。在相同的土壤中,其含量变化呈现出 Bm 和 Bc 改良型 > 未改良型 > BS-Bc 改良型。沿海土壤的 CEC 和粘土含量是影响铅(II)和四氯化碳固定的关键因素。固定化机制包括静电吸引、离子交换、表面沉淀和与铅(II)的络合以及离子交换和与四氯化碳的络合。Pb(II) 和 CTC 固定化的经济性分别为 0.5 至 9.0 和 1.0 至 5.4 mg/¥,用 BS-Bc 改良的沿海土壤具有实际应用价值和较高的经济性。
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Pb(II) and chlortetracycline immobilization and economy of biologically amended coastal soil

To study the pollutants immobilization and economy of biologically amended coastal soil, Alternanthera philoxeroides biomass (Bm), biochar (Bc), and dodecyldimethyl betaine (BS) modified Bc (BS-Bc) were used to amend coastal soil from Jialing, Fu, and Qu River. A runoff experiment was used to simulate the longitudinal migration and morphological changes of Pb(II) and chlortetracycline (CTC) in each amended coastal soil, and the economy of pollutants immobilization by different amended coastal soil were compared. The equilibrium time of Pb(II) and CTC in each amended coastal soil ranked in the order of BS-Bc-amended > Bc-amended > Bm-amended > unamended coastal soil. The average Pb(II) and CTC flow rate in different amended coastal soils presented an opposite trend with the equilibrium time. Pb(II) and CTC content all reduced with the increasing runoff length. Under the same soils, the content changes presented Bm and Bc amended > unamended > BS-Bc amended. CEC and clay content of coastal soils were the key factors affecting Pb(II) and CTC immobilization. The immobilization mechanisms were electrostatic attraction, ion exchange, surface precipitation, and complexation to Pb(II) and ion exchange and complexation to CTC. The economy of Pb(II) and CTC immobilization ranged from 0.5 to 9.0 and from 1.0 to 5.4 mg/¥, and coastal soil amended by BS-Bc had practical application value and high economy.

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4.30%
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567
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