Handbook Of Pollution Control And Waste Minimization - Chapter 8 pptx
... reducing wastes. Im- proved surfaces increase the convective heat transfer coefficients for heating–cooling operations, and change -of- phase heat transfer. 5. Co-generation in chemical and petrochemical ... measured of forced- and natural-convection conditions. h is part of Nu, while flow conditions are repre- sented by Re or Gr, and the thermophysical properties form Pr. Normall...
Ngày tải lên: 11/08/2014, 13:22
... Tetrachlorodibenzodioxin[2,3,7, 8- ] 174 6-0 1-6 1 .80 E-06 1 pest DDE[4,4 -] 7 2-5 5-9 1 .80 E-03 2 pest DDT[4,4 -] 5 0-2 9-3 2 .80 E-03 3 pcbs Aroclor-12 48 1267 2-2 9-6 3.00E-03 4 pest Endrin 7 2-2 0 -8 3.40E-03 5 inorg Mercury ... 1511 7-4 8- 3 1 .80 E+01 84 rad Neptunium-237 1399 4-2 0-2 1.90E+01 85 rad Thorium-229 1559 4-5 4-4 1.90E+01 86 inorg...
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... 2.7 PH 6 .80 6 .84 6.42 6.73 SC (µmho/cm) 87 2 1070 82 1 89 7 Alkalinity 66.3 1 78 72 149 DIC (mg ˚C/liter) 16.1 54.4 18. 3 36.4 Eh (mV) 476 –153 493 76 As 8. 6 11.9 (– 38% ) 7.3 5.2 28. 8% Cd 40.5 0.51 98. 7% ... 32.7 0.52 98. 4% Cu 123 3.6 97.0% 216 1.0 99.5% Fe 28. 8 18. 0 37.5% 171 5 28 (–209%) Mn 6 680 3640 45.5% 7070 80 80 (–14%) Zn (filtered) 9330 10.5 99.9% 9950 101 99.0% Zn (u...
Ngày tải lên: 11/08/2014, 13:22
Handbook Of Pollution Control And Waste Minimization - Chapter 7 doc
... beautiful stretches of American rivers, flooded agricultural lands, forests, and areas of historical and geological value, and resulted in the dislocation of communities and loss of wildlife (6). ... atmospheric CO 2 . Inefficient and incomplete burning of wood in stoves and fireplaces pro- duces smoke laden with fine ash and soot and hazardous amounts of carbon mo...
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Handbook Of Pollution Control And Waste Minimization - Chapter 9 docx
... P. Incropera and D. P. DeWitt, Fundamentals of Heat and Mass Transfer, 3rd ed. New York: Wiley, 1990. 10. D. R. Lide (ed.), CRC Handbook of Chemistry and Physics, 80 th ed. Cleveland, OH: CRC ... flow rate of X across control surface i. The terms of Eq. (1) can be interpreted as follows: dX dt = rate of change of X inside the control volume ∑ (X CS,i ⋅ ) i = sum of...
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