An Innovative System for the Efficient and Effective Treatment of Non-Traditional Waters for Reuse in Thermoelectric Power Generation Page: 29 of 123
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Table 4. Composition of ash basin waters based upon published literature and analyses of waters
CONSTITUENTS CONCENTRATIONS UNITSpH
DISSOLVED OXYGEN
SULFATE, TOTAL
ARSENIC, TOTAL
BERYLLIUM, TOTAL
BORON, TOTAL
CADMIUM, TOTAL
CALCIUM, TOTAL
CHLORIDE, TOTAL
CHROMIUM, TOTAL
COPPER, TOTAL
FLUORIDE, TOTAL
IRON, TOTAL
LEAD, TOTAL
MAGNESIUM, TOTAL
MANGANESE, TOTAL
MERCURY, TOTAL
MOLYBDENUM
NICKEL, TOTAL
SELENIUM, TOTAL
SODIUM, TOTAL
VANADIUM, TOTAL
ZINC. TOTAL6.4 - 7.9
6.9 - 9.5
16 -600.013 - 23.9
< 0.0002
11.0 - 12.0
0.001 - 1.72
13.7 - 37.6
3.8 - 156
0.002 - 11.4
0.002 - 19.5
16.0
0.05 - 4679
0.0026 - 0.12
0.01 - 7.0
0.08 - 117
0.0003 - 0.41
0.16 - 14.5
0.35 - 2.26
0.007 - 3.9
14-20
0.013 - 14.7
0.011 - 8.128
SU
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Rodgers, John & Castle, James. An Innovative System for the Efficient and Effective Treatment of Non-Traditional Waters for Reuse in Thermoelectric Power Generation, report, August 31, 2008; United States. (https://digital.library.unt.edu/ark:/67531/metadc927697/m1/29/: accessed April 23, 2024), University of North Texas Libraries, UNT Digital Library, https://digital.library.unt.edu; crediting UNT Libraries Government Documents Department.