- Blog

Baby the RINs Must Fall, Part 3 - Examining the Odds and Timing of a Potential RINs Price Crash

U.S. production of hydrogenated renewable diesel (RD), which is made from soybean oil, animal fats and used cooking oil, is growing faster than expected. That may sound like good news for the renewable fuels industry, but it comes with the fear that the rapid growth might push RD production levels well past the mandates set by the Renewable Fuel Standard (RFS), potentially triggering a sudden crash in Renewable Identification Number (RIN) prices that — if it happens — would rock the market. In today’s RBN blog, we estimate the likelihood and possible timing of such a market-shaking event.

- Blog

Baby the RINs Must Fall, Part 2 - Will a RIN Price Crash Make a Mess in the Renewable Diesel Market?

U.S. production of hydrogenated renewable diesel (RD), made from soybean oil and animal fats like used cooking oil, is growing faster than expected. That may sound like good news for the renewable fuels industry, but it comes with the fear that the rapid growth might trigger a sudden crash of Renewable Identification Number (RIN) prices that — if it happens — would rock the market. In today’s RBN blog, we have a go at describing what that might look like.

- Blog

The Big Bang Theory - Lessons from the RINs Price Spike of 2013 And Why They Still Apply

Renewable Identification Numbers (RINs) are credits used to certify compliance with the Renewable Fuel Standard (RFS), which requires certain minimum volumes of biofuels to be blended into fuels sold in the U.S. There are many types of fuels covered by the RFS and so RIN credits come in different categories. One category, the D6 RIN, applies to the blending of corn-based ethanol into refined gasoline to make the gasoline-ethanol blends we pump into our cars, SUVs and pickups. In 2013, the D6 RIN price skyrocketed 100-fold in one of the most extreme cases of panic buying in any major commodity market in history. In today’s RBN blog, we examine that event and address three key questions: How did it happen, what was the solution, and why does it matter today?