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开发磷矿与铁改良剂相结合,同时固定电镀污染土壤中的 Zn 和 Cr(VI)。

Development of phosphate rock integrated with iron amendment for simultaneous immobilization of Zn and Cr(VI) in an electroplating contaminated soil.

机构信息

School of Environmental Science and Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.

School of Environmental Science and Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.

出版信息

Chemosphere. 2017 Sep;182:15-21. doi: 10.1016/j.chemosphere.2017.05.004. Epub 2017 May 3.

Abstract

This study aims to develop an amendment for simultaneous immobilization of Zn and Cr(VI) in an abandoned electroplating contaminated soil. Nature phosphate rock was first activated with oxalic acid (O-PR) and then combined with FeSO or zero-valent iron (ZVI) for immobilization of Zn and Cr(VI) from aqueous solutions. Finally, the optimized approach showing the highest immobilization ability in solution was applied in an electroplating contaminated soil. The O-PR combined with FeSO was more effective in simultaneously removing Zn and Cr(VI) than the O-PR integrated with ZVI within the tested solution pH range of 5.5-8.5. Both O-PR with FeSO and with ZVI removed over 95% of Zn from the solution; however, only 42-46% of Cr(VI) was immobilized by O-PR with ZVI, while O-PR with FeSO almost precipitated all Cr(VI). Moreover, there were 75-95% Zn and 95-100% Cr(VI) remaining in the exhausted O-PR with FeSO solid after toxicity characteristic leaching test (TCLP) while the exhausted O-PR with ZVI solid only retained 44-83% Zn and 32-72% Cr(VI). Zinc was immobilized mainly via formation of insoluble Fe-Zn phosphate co-precipitates, while iron-induced reduction of Cr(VI) into stable Cr(OH) or CrFe(OH) was responsible for Cr(VI) immobilization. Application of the O-PR integrated with FeSO in the electroplating contaminated soil rapidly reduced the TCLP extractable Zn and Cr(VI) to below the standard limits, with decrease by 50% and 94%, respectively. This study revealed that combination of oxalic acid activated phosphate rock with FeSO could be an effective amendment for remediation of Zn and Cr(VI) contaminated soil.

摘要

本研究旨在开发一种改良方法,以同时固定废弃电镀污染土壤中的 Zn 和 Cr(VI)。首先用草酸(O-PR)活化天然磷矿,然后与 FeSO 或零价铁(ZVI)结合,从水溶液中固定 Zn 和 Cr(VI)。最后,将在溶液中表现出最高固定能力的优化方法应用于电镀污染土壤。在测试的 pH 值范围为 5.5-8.5 时,O-PR 与 FeSO 结合比 O-PR 与 ZVI 结合更有效地同时去除 Zn 和 Cr(VI)。O-PR 与 FeSO 和 ZVI 都能从溶液中去除超过 95%的 Zn;然而,只有 42-46%的 Cr(VI)被 O-PR 与 ZVI 固定,而 O-PR 与 FeSO 几乎将所有的 Cr(VI)沉淀。此外,毒性特征浸出试验(TCLP)后,O-PR 与 FeSO 固相中仍有 75-95%的 Zn 和 95-100%的 Cr(VI)残留,而 O-PR 与 ZVI 固相中仅保留 44-83%的 Zn 和 32-72%的 Cr(VI)。Zn 主要通过形成不溶性的 Fe-Zn 磷酸盐共沉淀固定,而铁诱导的 Cr(VI)还原为稳定的 Cr(OH)或 CrFe(OH)则负责 Cr(VI)的固定。O-PR 与 FeSO 的结合在电镀污染土壤中的应用迅速将 TCLP 可提取的 Zn 和 Cr(VI)降低到标准限值以下,分别降低了 50%和 94%。本研究表明,草酸活化磷矿与 FeSO 的结合可以作为一种有效的修复 Zn 和 Cr(VI)污染土壤的改良剂。

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