Agricultural soil adjacent to a battery recycling plant became severely contaminated with toxic lead compounds. Environmental engineers applied slaked lime, , to immobilize the heavy metal by precipitating it as insoluble lead(II) hydroxide, . However, excessive liming caused the soil pH to rise above , triggering a secondary leaching event where lead concentrations in groundwater rapidly increased. Which chemical reaction accounts for the unexpected re-mobilization of lead under strongly alkaline soil conditions?
- Formation of soluble tetrahydroxoplumbate(II) complex ions, , due to the amphoteric behavior of lead(II) compounds in excess baseCevap
- BPrecipitation of lead(II) hydroxide behaving as a purely basic compound that undergoes complete salt hydrolysis to yield free soluble lead cations
- COxidation of lead(II) ions by stratospheric ozone trapped in soil pores, converting insoluble lead compounds into highly soluble lead(IV) oxide
- DCondensation of lead ions with soil humic acids to form synthetic addition polymers that undergo rapid microbial degradation
Cevap
The re-mobilization of lead in strongly alkaline soil is caused by the formation of soluble tetrahydroxoplumbate(II) complex ions, , owing to the amphoteric character of lead(II) compounds.
Lead(II) compounds exhibit amphoterism. While moderate liming precipitates lead as insoluble , over-liming creates a high concentration of ions (pH > 10.5). This causes the precipitate to dissolve by forming the soluble complex anion (tetrahydroxoplumbate(II)), leading to groundwater pollution.
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Amphoteric behavior of heavy metals in soil remediation and waste management
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