Polyethyleneimine-derived dithiocarbamates for Pb(II) stabilization in MSWI fly ash leachate: Mechanisms, stability and economic assessment
Artikel i vetenskaplig tidskrift, 2026

Municipal solid waste incineration (MSWI) fly ash is hazardous due to its high heavy metal content, particularly Pb, which is highly mobile and poses significant health risks. This study synthesized polyethyleneimine-derived dithiocarbamates (PDTCs) with multiple sulfur-containing functional groups for chelation-based Pb(II) stabilization in MSWI fly ash leachate-related systems. The dissolved Pb(II) removal efficiency exceeded 95% under optimized conditions, indicating effective chelation-based stabilization of mobile Pb(II). X-ray photoelectron spectroscopy (XPS), scanning electron microscopy (SEM), and thermogravimetric analysis (TGA) were employed to characterize the properties of Pb–PDTC precipitates and elucidate the chelation mechanism. The results demonstrate that coordination between -CSS- groups in PDTCs and Pb(II) was the main mechanism for Pb(II) chelation and stabilization. Among the tested PDTCs, PDTC-600 exhibited the best overall Pb(II) stabilization performance due to better accessibility of active -CSS- groups. Under acidic conditions, a lower pH destabilized the chelates. Despite this, PDTCs maintained high dissolved Pb(II) removal efficiency in aqueous batch systems, indicating their potential for chelation-based Pb(II) stabilization in leachate-related systems. This study provides a mild and potentially cost-effective strategy for chelation-based Pb(II) stabilization in MSWI fly ash leachate-related systems. Future research should further verify the performance of PDTCs in real, highly alkaline fly ash leachate and optimize chelator molecular weight to balance Pb(II) stabilization efficiency, precipitate stability, reagent safety, and environmental compatibility.

Molecular weight

Polyethyleneimine-derived dithiocarbamates (PDTCs)

Chemical/environmental stabilization

Economic assessment

MSWI fly ash

Författare

Jinfeng Tang

Chalmers, Kemi och kemiteknik, Energi och material

Guangzhou University

Yanyan Li

Guangzhou University

Xinmei Lin

Guangzhou University

Minhua Su

Guangzhou University

Lizhi Tong

South China Institute of Environmental Science (SCIES)

Yun Zhu

Guangzhou City Management Technology Research Center

Biming Chen

Guangzhou City Management Technology Research Center

Benhua Liao

Guangzhou City Management Technology Research Center

Małgorzata Szlachta

Tampereen Yliopisto

Kaimin Shih

The University of Hong Kong

Junhua Xu

Geologian tutkimuskeskus (GTK)

PureTech Industry

Separation and Purification Technology

1383-5866 (ISSN) 18733794 (eISSN)

Vol. 414 139713

Ämneskategorier (SSIF 2025)

Materialkemi

Annan naturresursteknik

DOI

10.1016/j.seppur.2026.139713

Mer information

Senast uppdaterat

2026-08-25