比较用于稳定 FeS 纳米粒子的三种稳定剂:性能及其对固定水和土壤中镉的影响

IF 3.7 2区 材料科学 Q1 METALLURGY & METALLURGICAL ENGINEERING Journal of Central South University Pub Date : 2024-06-13 DOI:10.1007/s11771-024-5602-y
Shu-ting Tian, Dong-ye Zhao, Li-Juan Huo, Jun Ma, Rui Yang
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引用次数: 0

摘要

在本研究中,我们评估了三种多糖稳定剂(羧甲基纤维素钠(CMC)、羧甲基淀粉钠(CMS)和一种水溶性淀粉)稳定 FeS 纳米粒子的效果,并测试了稳定后的纳米粒子在水中和土壤中固定 Cd2+ 的情况。使用 0.010 wt% CMC、0.025 wt% CMS 或 0.065 wt% 淀粉可获得完全稳定的 FeS 纳米粒子(100 mg/L FeS)。CMC-FeS 显示出高度负的 zeta 电位,淀粉-FeS 保持中性,而 CMS-FeS 显示出中等程度的负电位。CMC-FeS 对 Cd2+ 的吸附速率最快,吸附容量最大。用 100 毫克/升 CMC-FeS 或 CMS-FeS 改良含 Cd 的土壤(58.3 毫克/千克 Cd)后,TCLP 可浸出镉含量分别降低了 88.4% 和 68.0%。CMC-FeS 和 CMS-FeS 都能在模型土壤中迁移,并显示出在土壤中就地固定 Cd2+ 的巨大潜力。CMC-FeS 在 4.5 个孔隙体积 (PV) 时几乎完全突破,而 CMS-FeS 则在约 25 个孔隙体积 (PV) 时完全突破。用 55 PVs 的 CMC-FeS 和 CMS-FeS 悬浮液(100 毫克/升)处理含 Cd 的土壤时,水浸可溶性镉分别减少了 98.2% 和 98.0%。这三种稳定剂可根据目标污染物、在土壤中的迁移特性和材料成本,在土壤修复中找到最佳用途。
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Comparing three stabilizers for stabilizing FeS nanoparticles: Performance and effects on immobilization of cadmium in water and soil

In this study, we evaluated effectiveness of three polysaccharide stabilizers (sodium carboxymethyl cellulose (CMC), sodium carboxymethyl starch (CMS), and a water-soluble starch) for stabilizing FeS nanoparticles, and tested the stabilized nanoparticles for immobilization of Cd2+ in water and soil. Fully stabilized FeS nanoparticles (100 mg/L FeS) were obtained using 0.010 wt% CMC, 0.025 wt% CMS, or 0.065 wt% starch. CMC-FeS showed a highly negative zeta potential, starch-FeS remained neutral, whereas CMS-FeS displayed a moderately negative potential. CMC-FeS showed the fastest sorption rate and highest sorption capacity for Cd2+. When a Cd-laden soil (58.3 mg/kg Cd) was amended with 100 mg/L CMC-FeS or CMS-FeS, the TCLP-leachable Cd was reduced by 88.4% and 68.0%, respectively. Both CMC-FeS and CMS-FeS were transportable through a model soil and showed high potential for in-situ immobilization of Cd2+ in soil. Nearly complete breakthrough occurred at 4.5 pore volumes (PVs) for CMC-FeS and about 25 PVs for CMS-FeS. When the Cd-laden soil was treated with 55 PVs of CMC-FeS and CMS-FeS suspensions (100 mg/L), the water-leachable soluble Cd was reduced by 98.2% and 98.0%, respectively. The three stabilizers may find their best uses in soil remediation according to the target contaminants, transport properties in soil, and material cost.

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来源期刊
Journal of Central South University
Journal of Central South University METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
6.10
自引率
6.80%
发文量
242
审稿时长
2-4 weeks
期刊介绍: Focuses on the latest research achievements in mining and metallurgy Coverage spans across materials science and engineering, metallurgical science and engineering, mineral processing, geology and mining, chemical engineering, and mechanical, electronic and information engineering
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