Copper refining traditionally involves "roasting" insoluble sulfide ores (CuS) with oxygen. unfortunately, the process produces large quantities of SO 2 (g), whichis a major contributor to pollution and acid rain. An alternative process involves treating the sulfide ore with HNO 2 (g) which dissolves the CuS without generating any SO 2 . The unbalanced chemical expression for the reaction is given below. CuS ( s ) +NO 3 ( aq ) → Cu 2+ ( aq ) +NO ( g ) +HSO 4 ( aq ) (not balanced) What volume of concentrated nitric acid solution is required kilogram of CuS? Assume that the concentrated nitric acid solution is 70% HNO 2 by mass and has a density of 1.40 g/mL.
Copper refining traditionally involves "roasting" insoluble sulfide ores (CuS) with oxygen. unfortunately, the process produces large quantities of SO 2 (g), whichis a major contributor to pollution and acid rain. An alternative process involves treating the sulfide ore with HNO 2 (g) which dissolves the CuS without generating any SO 2 . The unbalanced chemical expression for the reaction is given below. CuS ( s ) +NO 3 ( aq ) → Cu 2+ ( aq ) +NO ( g ) +HSO 4 ( aq ) (not balanced) What volume of concentrated nitric acid solution is required kilogram of CuS? Assume that the concentrated nitric acid solution is 70% HNO 2 by mass and has a density of 1.40 g/mL.
Solution Summary: The author explains how the volume of nitric acid solution needed per kilogram of CuS needs to be determined.
Copper refining traditionally involves "roasting" insoluble sulfide ores (CuS) with oxygen. unfortunately, the process produces large quantities of
SO
2
(g), whichis a major contributor to pollution and acid rain. An alternative process involves treating the sulfide ore with
HNO
2
(g) which dissolves the CuS without generating any
SO
2
. The unbalanced chemical expression for the reaction is given below.
CuS
(
s
)
+NO
3
(
aq
)
→
Cu
2+
(
aq
)
+NO
(
g
)
+HSO
4
(
aq
)
(not balanced)
What volume of concentrated nitric acid solution is required kilogram of CuS? Assume that the concentrated nitric acid solution is 70%
HNO
2
by mass and has a density of 1.40 g/mL.
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Calorimetry Concept, Examples and Thermochemistry | How to Pass Chemistry; Author: Melissa Maribel;https://www.youtube.com/watch?v=nSh29lUGj00;License: Standard YouTube License, CC-BY