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The Cā‚ƒ stream/MAPD selective hydrogenation technology represents a critical and ubiquitous process in modern petrochemical complexes that merits inclusion in the ppPLUS database. This technology is essential for achieving polymer-grade propylene specifications by removing trace methylacetylene and propadiene (MAPD) contaminants that poison downstream polymerization catalysts.

Key justifications for database inclusion:

šŸ”µ Universal Application: Virtually every steam cracker and propylene production facility globally requires MAPD removal technology, making this one of the most widely deployed petrochemical processes.
šŸ”µ Economic Impact: Enables high-value propylene monetization and polypropylene production, representing billions of dollars in annual global capacity.
šŸ”µ Technical Standardization: The liquid-phase trickle-bed reactor configuration has become the industry standard, with well-established design parameters and performance benchmarks.
šŸ”µ Commercial Maturity: Multiple technology providers (Axens, Shell, Clariant, BASF, Sinopec) offer competing solutions with extensive reference lists.
šŸ”µ Process Integration: Critical enabler for integrated olefins-to-polymers value chains and renewable/recycled feedstock processing.

#mapd #propylene #c3stream #selectivehydrogenation #liquidphase #trickelbedreactor #axens #shell #clariant #basf #sinopec




We're excited to announce the release of our newly updated paraffins isomerization technology description. This comprehensive revision offers a broader perspective on process configurations, feedstock flexibility, and the latest environmental and market developments—providing valuable insights for both refining veterans and newcomers.

#paraffins #lightnaphtha #butane #isobutane #isomerate #naturalgasoline #condensate #neftehim #axens #honeywell #uop
#clariant #zeolyst