Effectiveness of soil remediation intervention in abandoned used lead acid battery (ULAB) recycling sites to reduce lead exposure among the children

Lead (Pb) is a neurotoxin, and children are vulnerable due to their evolving physiology and highrisk behaviours. Soil remediation interventions have proven effective in reducing Pb exposure. The primary objective is to measure the effectiveness of soil remediation at abandoned used lead acid battery...

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Hauptverfasser: Rahman, Mahbubur, Sultana, Jesmin, Hasan, Shaikh Sharif, Nurunnahar, Syeda, Baker, Musa, Raqib, Rubhana, Moshfiqur Rahman, Syed, Kippler, Maria, Parvez, Sarker Masud
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Sprache:eng
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Zusammenfassung:Lead (Pb) is a neurotoxin, and children are vulnerable due to their evolving physiology and highrisk behaviours. Soil remediation interventions have proven effective in reducing Pb exposure. The primary objective is to measure the effectiveness of soil remediation at abandoned used lead acid battery (ULAB) recycling sites, nearby household cleaning, and community awareness in reducing blood lead levels (BLLs) in children. Additionally, this study aims to examine associations of Pb exposure with hematological, cardiovascular, renal, immunological, and endocrinological parameters in children aged 0-12 years. This study employs a quasi -experimental design, with abandoned ULAB sites as intervention sites and two control sites in Bangladesh. The intervention includes soil remediation coupled with community education. Data will be collected prior to the intervention and at a 12-month follow-up, including a comprehensive Pb exposure survey and collect environmental, turmeric samples, and blood from the child. Pb concentrations in environmental samples and turmeric samples will be determined using XRF analyser. Child BLL will be measured using Graphite Furnace Atomic Absorption Spectrometry (GF-AAS) and proposed biochemical parameters will be analysed using routine laboratory methods. This study could provide valuable insights for designing targeted interventions in similar settings and mitigating exposure to Pb.
DOI:10.1016/j.mex.2024.102772