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从芘中修复热带土壤:释放土壤中天然铁含量的力量,以有效激活氧化剂。

Tropical soil remediation from pyrene: Release the power of natural iron content in soil for the efficient oxidant's activation.

机构信息

Environmental Technology Division, School of Industrial Technology, Universiti Sains Malaysia, Penang, 11800, Malaysia.

Environmental Technology Division, School of Industrial Technology, Universiti Sains Malaysia, Penang, 11800, Malaysia; Renewable Biomass Transformation Cluster, School of Industrial Technology, Universiti Sains Malaysia, Penang, 11800, Malaysia.

出版信息

J Environ Manage. 2024 Feb 27;353:120179. doi: 10.1016/j.jenvman.2024.120179. Epub 2024 Jan 31.

Abstract

Natural soil minerals often contain numerous impurities, resulting in comparatively lower catalytic activity. Tropical soils are viewed as poor from soil organic matter, cations, and anions, which are considered the main impurities in the soil that are restricted to utilizing natural minerals as a catalyst. In this regard, the dissolved iron and hematite crystals that presented naturally in tropical soil were evaluated to activate oxidants and degrade pyrene. The optimum results obtained in this study were 73 %, and the rate constant was 0.0553 h under experimental conditions [pyrene] = 300 mg/50 g, pH = 7, T = 55 °C, airflow = 260 mL/min, [Persulfate (PS)] = 1.0 g/L, and humic acid (HA) ( % w/w) = 0.5 %. The soil characterization analysis after the remediation process showed an increase in moieties and cracks of the soil aggregate, and a decline in the iron and aluminium contents. The scavengers test revealed that both SO and O were responsible for the pyrene degradation, while HO had a minor role in the degradation process. In addition, the monitoring of by-products, degradation pathways, and toxicity assessment were also investigated. This system is considered an efficient, green method, and could provide a step forward to develop low-cost soil remediation for full-scale implementation.

摘要

天然土壤矿物质通常含有许多杂质,导致催化活性相对较低。从土壤有机质、阳离子和阴离子来看,热带土壤被认为是贫瘠的,这些被认为是土壤中的主要杂质,限制了它们作为催化剂利用天然矿物质的能力。在这方面,评估了热带土壤中天然存在的溶解铁和赤铁矿晶体来激活氧化剂并降解芘。在本研究中,在实验条件下[芘]=300mg/50g、pH=7、T=55°C、气流=260mL/min、[过硫酸盐(PS)]=1.0g/L和腐殖酸(HA)(%w/w)=0.5%时,获得的最佳结果为 73%,速率常数为 0.0553h。修复过程后的土壤特性分析表明,土壤团聚体的部分和裂缝增加,铁和铝的含量减少。清除剂测试表明,SO 和 O 都对芘的降解负责,而 HO 在降解过程中作用较小。此外,还研究了副产物、降解途径和毒性评估的监测。该系统被认为是一种高效、绿色的方法,可以为开发用于大规模实施的低成本土壤修复技术提供一个新的思路。

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