Within the Methanol-to-Gasoline market, the Types segmentation classifies the conversion technologies and process configurations that determine product quality, capital intensity, and scalability. The primary catalytic route employs heterogeneous zeolite catalysts, delivering gasoline with a narrow carbon‑range distribution and high octane; this pathway commands the largest share due to its proven commercial viability. A secondary homogeneous catalytic route utilizes soluble metal complexes, offering finer control over isomer distribution but at higher operational complexity and cost. Emerging hybrid processes, which combine heterogeneous and homogeneous stages, aim to improve selectivity while reducing catalyst deactivation. Additionally, the market distinguishes between single‑step versus dual‑step configurations: single‑step systems integrate methanol dehydration and alkylation in one reactor, reducing footprint, whereas dual‑step designs separate these reactions to optimize each step’s conditions. These type distinctions affect plant CAPEX, OPEX, and product specifications, thereby influencing the competitive landscape of the Methanol-to-Gasoline sector.