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No generally accepted definition exists for heavy metals Defining factor: 5 g/ cm 3.

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Presentation on theme: "No generally accepted definition exists for heavy metals Defining factor: 5 g/ cm 3."— Presentation transcript:

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2 No generally accepted definition exists for heavy metals Defining factor: 5 g/ cm 3

3 Concentrations in the Great Lakes (ppt) MercuryCadmiumLead Lake Huron 601638 Lake Superior 982739 Lake Michigan 5242260 Lake Erie4298910 Bernier et al., 1995

4 Industrial sources of Heavy Metal emissions include: Waste oil Solid waste incineration / coal burning and ash Iron and steel production Smelting Battery and lead alkyl manufacturing Lead-Historically fuels in cars and trucks (regulations and lead free gasoline)

5 Commonly occurring Hard to measure direct sources Use has decreased greatly since 1980

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7 Arsenic is used to kill Insecticides, herbicides, fungicides, preservatives Arsenic kills by disrupting the cellular process that produces ATP. Blocks and competes with chemicals that form ATP Makes it difficult for muscles to fire Organ systems shut down due to lack of energy 1 mg/kg/day is the acute lethal dose 50 ppb will lead to precursors for cancer

8  Transition metal like zinc and mercury (happy in oxidation state of +2)  Rare metal- 0.1 ppm in Earth’s crust most in zinc ores  A byproduct/impurity from zinc production (mining, smelting, refining)

9  Resistant to corrosion- Used for electroplating of iron  Used as color coating/pigments in paints ( mid 20 th century) various salt forms  Carboxylate forms of cadmium (laureates & stearates) for stabilizing PVC  Growing demand for nickel- cadmium batteries in 21 st century  Solar cells

10  Burning of fossil fuels (coal) creation of cadmium oxide (CdO)  High cadmium conc. of phosphate fertilizers from mined rocks into soils  Dissolved by acid to create chlorides, sulfates, and nitrates  Reclaimed from iron/steel recycling in dust  Solid waste incineration (Milorganite)

11  Intake normally through inhalation and ingestion  Absorbed into kidneys  Bioaccumulation in marine life  No known useful role for Cd in higher organisms  Certain marine diatoms in low zinc conc. Utilize Cd for carbonic anhydrases

12  Metal fume fever- Inhalation of certain metal oxides (flu like symptoms  Compounds containing Cd are carcinogenic  Inhalation leads to respiratory and kidney issues.  Ingestion causes immediate poisoning/damage to kidneys and liver  May cause osteoporosis- loss of bone mineral density  Kidneys lose function to remove acids in blood (proximal renal tubular dysfunction)

13 General Human populations are exposed through air and food in equal proportions Lead (Pb) is the most abundant toxic heavy metal

14 Mainly atmospheric depositions of industrial lead Lead from shots- hunting Side note: Drinking water Found in piping: lead pipes, welding for copper pipes City of Milwaukee adds phosphate to drinking water to prevent lead in pipes from dissolving into drinking water (adding to lake nutrient load)

15 Accumulation of Pb in sediment Accumulation of Pb organisms: All the way up the food web from plankton to fish Higher accumulation in crayfish, bottom feeders Bioaccumulation in humans too: especially fish consumers

16 Impacts: Nervous system increased blood pressure in adults pathogenic effect: directly interrupts the activity of enzymes competitively inhibits absorption of important trace minerals deactivates antioxidant sulphydryl pools through free-radical induced damage

17  Takes two forms in environment  Inorganic Hg (metallic)  Less worrying as an environmental toxin  Organic MeHg  Methyl Mercury  Bioaccumulates in tissues  Biomagnifies up the food chain

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19  Central Nervous system Damage  Sensory and motor skill Impairment  Reproductive Effects  Readily transferred across placenta  Concentrates in fetal brain  Physical behavioral defects  Fetal death  Immunotoxicity  Dose-dependent correlation in T-cell proliferation an MeHg  Genotoxicity  Chromosome Breakage  DNA strand Breakage


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