<?xml version="1.0" encoding="UTF-8"?><oembed><type>video</type><version>1.0</version><html>&lt;iframe src=&quot;https://www.loom.com/embed/c618dfaeb0014df785484905a3122d48&quot; frameborder=&quot;0&quot; width=&quot;1920&quot; height=&quot;1440&quot; webkitallowfullscreen mozallowfullscreen allowfullscreen&gt;&lt;/iframe&gt;</html><height>1440</height><width>1920</width><provider_name>Loom</provider_name><provider_url>https://www.loom.com</provider_url><thumbnail_height>1440</thumbnail_height><thumbnail_width>1920</thumbnail_width><thumbnail_url>https://cdn.loom.com/sessions/thumbnails/c618dfaeb0014df785484905a3122d48-52b2893d0fd3cfeb.gif</thumbnail_url><duration>143.795</duration><title>Solving Distillation Column Design and Sourcing</title><description>This Loom explains how ChemX closes the gap between distillation column design and what is actually available in the market. Hannah and Erwin describe that process engineers can design the exact column size and parameters, but procurement often fails due to unavailable sizes, long lead times like 11 months, or higher costs from stainless steel that can triple the budget. ChemX takes user constraints such as distillate purity, amount to be distilled, and feed conditions, then uses an agent and simulation engine to determine feasible operating conditions and match equipment limits like valve flow and temperature. It also shows sourced item details and associated costs, targeting small consultancies and specialty chemical manufacturers, with pricing around $500 per design run or $5,000 per month for unlimited work, replacing 20 to 40 consultants.</description></oembed>