Sorghum could be an alternative to corn in ethanol production

With the ethanol industry traditionally dominated by corn, many are beginning to explore alternatives.

The National Sorghum Producers discusses the growing potential of sorghum, or milo, as a viable feedstock for ethanol.

According to Matt Durler, “The starch structure of corn sodium is essentially the same. So, they can grind them both in the same bin if they choose to. Several of the plants segretate those, but basically fully fungible. Now, we do have a little bit more bound protein in starch matrix and sorghum, so we use a little different enzyme cocktail initially. But today is plants look to separate the corn oil from the distiller’s grains, pretty much the enzyme cocktail is the same amongst the plants too. So, we have a lot of flexibility, and we look at corn and sorghum as feedstocks, there’s a little more protein in sorghum coming into the plant. A Little more fat in the corn. So different revenue opportunity for the corn oil. Also, different opportunity in the animal feed because the enhanced protein coming from sodium distillers, but largely similar.”

Dusrler says that sorghum offers added benefits, including antioxidant value and increased food-grade sodium. It is also a versatile crop that can be used for both entaol production and feed, particularly in regions like Kansas where it fits well into crop rotation with cotton, wheat, and corn.

Related Stories
Heavy rains are wreaking havoc on Argentina’s farmland, leaving nearly 4 million acres at risk and delaying corn and soybean plantings in one of the world’s top grain export regions.
The White House is now preparing to restore an Endangered Species Act (ESA) rule from the first Trump Administration.
Mary-Thomas Hart, with the National Cattlemen’s Beef Association, discusses the latest WOTUS developments and their implications for agriculture.
Cattle and hog supplies continue to tighten while dairy output expands, creating a split outlook in which red-meat prices soften and milk values come under pressure from larger supplies.