Perspective Chapter: The Toxic Silver (Hg)

Author:

A. Abdelhafez Ahmed,Aziz Tantawy Abdel,H.H. Abbas Mohamed,M. Metwally Shawky,Sh. Metwally Amera,Sh. Metwally Aya,Mansour Rasha R.M.,H. Hassan Sedky,H. Abbas Hassan,M. Farid Ihab,N. Nasralla Nermeen,S.H. Soliman Ahmed,E. Younis Mohammed,Sayed Ghada S.A.,Z. Ahmed Mahfouz,Alaa Mohamed Abed Ehdaa,Al-Hossainy Ahmed Farouk,Ahmed Ali Abouzeid Heidi,H. Hamed Mahdy,I. El-Kelawy Mahmoud,Hassan Kamel Gamal,Ferweez Hussein,M. Diab Ahmed

Abstract

In the late 1950s, residents of a Japanese fishing village known as “Minamata” began falling ill and dying at an alarming rate. The Japanese authorities stated that methyl-mercury-rich seafood and shellfish caused the sickness. Burning fossil fuels represent ≈52.7% of Hg emissions. The majorities of mercury’s compounds are volatile and thus travel hundreds of miles with wind before being deposited on the earth’s surface. High acidity and dissolved organic carbon increase Hg-mobility in soil to enter the food chain. Additionally, Hg is taken up by areal plant parts via gas exchange. Mercury has no identified role in plants while exhibiting high affinity to form complexes with soft ligands such as sulfur and this consequently inactivates amino acids and sulfur-containing antioxidants. Long-term human exposure to Hg leads to neurotoxicity in children and adults, immunological, cardiac, and motor reproductive and genetic disorders. Accordingly, remediating contaminated soils has become an obligation. Mercury, like other potentially toxic elements, is not biodegradable, and therefore, its remediation should encompass either removal of Hg from soils or even its immobilization. This chapter discusses Hg’s chemical behavior, sources, health dangers, and soil remediation methods to lower Hg levels.

Publisher

IntechOpen

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