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When coal is burned, the sulfur present in coal is converted to sulfur dioxide ( $\mathrm{SO}_{2}$ ), which is responsible for the acid rain phenomenon: $$ \mathrm{...

Question

When coal is burned, the sulfur present in coal is converted to sulfur dioxide ( $\mathrm{SO}_{2}$ ), which is responsible for the acid rain phenomenon: $$ \mathrm{S}(s)+\mathrm{O}_{2}(g) \longrightarrow \mathrm{SO}_{2}(g) $$ If $3.15 \mathrm{kg}$ of S reacts with oxygen, calculate the volume of $\mathrm{SO}_{2}$ gas (in $\mathrm{mL}$ ) formed at $30.5^{\circ} \mathrm{C}$ and 1.04 atm.

When coal is burned, the sulfur present in coal is converted to sulfur dioxide ( $\mathrm{SO}_{2}$ ), which is responsible for the acid rain phenomenon: $$ \mathrm{S}(s)+\mathrm{O}_{2}(g) \longrightarrow \mathrm{SO}_{2}(g) $$ If $3.15 \mathrm{kg}$ of S reacts with oxygen, calculate the volume of $\mathrm{SO}_{2}$ gas (in $\mathrm{mL}$ ) formed at $30.5^{\circ} \mathrm{C}$ and 1.04 atm.



Answers

A particular coal contains 2.55$\%$ sulfur by mass. When the coal is
burned, it produces $S O_{2}$ emissions, which combine with rainwater to
produce sulfuric acid. Use the formula of sulfuric acid to calculate the mass percent of S in sulfuric acid. Then determine how much sulfuric
acid (in metric tons) is produced by the combustion of 1.0 metric ton of
this coal. ( A metric ton is 1000 $\mathrm{kg.}$ .


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