The series of reactions described seems to involve the transformation of ethylene (C2H4) ultimately into water (H2O) with the use of various reactants and catalysts. Here is the breakdown of the reactions:
C2H4 (ethylene) reacts with HCl (hydrochloric acid) to form an intermediate compound X1.Compound X1 then reacts with sodium (Na) to form compound X2, accompanied by the release of other by-products or heat (indicated by 't' for temperature).Compound X2 reacts with aluminum chloride (AlCl3) to form compound X3, while releasing hydrogen gas (H2) and additional heat (temperature indicated by 't').Compound X3 undergoes further reactions, resulting in the formation of water (H2O) and sulfuric acid (H2SO4), with hydrogen gas as one of the by-products.The final product is water (H2O) indicated by X5.
Overall, the reactions involve the conversion of ethylene through intermediary compounds with the use of different reactants and catalysts to eventually yield water as the final product.
The series of reactions described seems to involve the transformation of ethylene (C2H4) ultimately into water (H2O) with the use of various reactants and catalysts. Here is the breakdown of the reactions:
C2H4 (ethylene) reacts with HCl (hydrochloric acid) to form an intermediate compound X1.Compound X1 then reacts with sodium (Na) to form compound X2, accompanied by the release of other by-products or heat (indicated by 't' for temperature).Compound X2 reacts with aluminum chloride (AlCl3) to form compound X3, while releasing hydrogen gas (H2) and additional heat (temperature indicated by 't').Compound X3 undergoes further reactions, resulting in the formation of water (H2O) and sulfuric acid (H2SO4), with hydrogen gas as one of the by-products.The final product is water (H2O) indicated by X5.Overall, the reactions involve the conversion of ethylene through intermediary compounds with the use of different reactants and catalysts to eventually yield water as the final product.