利用煤矸石制造的铁强化 X 型沸石用于铅/镉污染土壤修复

IF 2.8 3区 农林科学 Q3 ENVIRONMENTAL SCIENCES Journal of Soils and Sediments Pub Date : 2024-04-17 DOI:10.1007/s11368-024-03795-w
Siwei Deng, Jiang Yu, Zhuoxi Huangfu, Weiwei Zhu, Yi Wu, Wenjuan Feng, Tao Yang, Peirou Li, Donghai Wu, Zhi Huang, Jie Yu
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引用次数: 0

摘要

目的土壤污染和固体废物堆积对农产品和居民区的安全构成重大威胁。在中国,煤矸石是一种典型的固体废弃物,富含硅、铝等有价元素,是合成沸石分子筛的理想前驱体。本研究的重点是将煤矸石转化为铁增强 X 型沸石(Fe-NaX)分子筛,并探讨其在修复铅(Pb)和镉(Cd)共污染土壤方面的潜力。为了评估 Fe-NaX 的修复效果和生态风险,进行了土壤培养和酸雨浸出实验。结果在水热反应温度为 110 ℃、NaOH 与预处理煤矸石(PCG)的质量比为 1.5、硅/铝摩尔比为 2.0、碱度为 3.5 M 的条件下合成了最佳的 Fe-NaX。Fe-NaX 在修复铅和镉污染土壤方面表现出色,对高生物利用率的铅和镉的固定效率分别为 44.4% 和 21.9%。即使在酸雨胁迫下,Fe-NaX 也能将土壤中铅和镉的释放量分别减少 42.3% 和 59.6%,且生态风险极低。 结论 本研究基于 "固废土壤修复 "战略,将煤矸石转化为 Fe-NaX 用于土壤修复,为污染土壤修复和煤矸石综合利用带来了巨大前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Iron-enhanced X-type zeolite made by coal gangue for Pb/Cd-contaminated soil remediation

Purpose

Soil contamination and solid waste accumulation pose significant risks to the safety of agricultural produce and residential areas. In China, coal gangue, a typical form of solid waste, is rich in valuable elements like silicon and aluminum, making it an ideal precursor for the synthesis of zeolite molecular sieves. This study focuses on transforming coal gangue into iron-enhanced X-type zeolite (Fe-NaX) molecular sieve and explores its potential in remediating lead (Pb) and cadmium (Cd) co-contaminated soil.

Methods

Fe-NaX was synthesized from coal gangue in Sichuan using an alkaline melting hydrothermal method. In order to evaluate the effectiveness of Fe-NaX in remediation and assess its ecological risk, soil culture and acid rain leaching experiments were conducted. The microstructures of Fe-NaX were detected to explore its remediation mechanism.

Results

The optimal Fe-NaX was synthesized at a 110 °C hydrothermal reaction temperature, a 1.5 mass ratio of NaOH and pretreated coal gangue (PCG), a 2.0 Si/Al molar ratio, and a 3.5 M alkalinity. Fe-NaX demonstrated outstanding performance in remediating Pb and Cd contaminated soil, with immobilizing efficiency for high bioavailability fractions of Pb and Cd at 44.4% and 21.9%, respectively. Even under acid rain stress, Fe-NaX was able to decrease the release of Pb and Cd in the soil by 42.3% and 59.6% respectively, with minimal ecological risk.

Conclusion

This study, based on a “solid waste for soil-remediation” strategy, transforms coal gangue into Fe-NaX for use in soil remediation and holds great promise for the contaminated soil remediation and coal gangue comprehensive utilization.

Graphical abstract

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来源期刊
Journal of Soils and Sediments
Journal of Soils and Sediments 环境科学-土壤科学
CiteScore
7.00
自引率
5.60%
发文量
256
审稿时长
3.5 months
期刊介绍: The Journal of Soils and Sediments (JSS) is devoted to soils and sediments; it deals with contaminated, intact and disturbed soils and sediments. JSS explores both the common aspects and the differences between these two environmental compartments. Inter-linkages at the catchment scale and with the Earth’s system (inter-compartment) are an important topic in JSS. The range of research coverage includes the effects of disturbances and contamination; research, strategies and technologies for prediction, prevention, and protection; identification and characterization; treatment, remediation and reuse; risk assessment and management; creation and implementation of quality standards; international regulation and legislation.
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