{"id":710,"date":"2026-05-11T07:26:17","date_gmt":"2026-05-11T07:26:17","guid":{"rendered":"https:\/\/foragebaler.com\/?p=710"},"modified":"2026-05-11T07:26:17","modified_gmt":"2026-05-11T07:26:17","slug":"forage-analysis-reading-hay-test-results","status":"publish","type":"post","link":"https:\/\/foragebaler.com\/nl\/forage-analysis-reading-hay-test-results\/","title":{"rendered":"How to Read a Forage Analysis Report: NDF, ADF, RFV, and What Each Number Costs You at the Elevator"},"content":{"rendered":"
A forage analysis report contains 15 to 25 numbers. Four of them determine your elevator grade and your buyer’s willingness to pay. This guide explains which four, what they mean, and how your harvest decisions \u2014 not just your crop variety \u2014 put those numbers where they are.<\/p>\n
Get Help Interpreting Your Test<\/a><\/p>\n<\/div>\n<\/div>\n A forage analysis report<\/strong> arrives from the laboratory as a dense page of acronyms and percentages. Most hay producers look at one or two numbers \u2014 usually crude protein \u2014 and discard the rest. That approach leaves real money on the table, because the numbers that most directly affect what an elevator or dairy buyer will pay are not always the ones operators focus on. This guide walks through the key parameters of a hay test results<\/strong> report in plain language, explains the economic relationship between each number and your market, and shows how harvest decisions either build or undermine the scores before the sample is ever cut.<\/p>\n A certified NIRS (near-infrared reflectance spectroscopy) forage test costs $15 to $25 per sample at accredited laboratories in the U.S., including Dairy One, Rock River Laboratory, and most state land-grant university forage labs. One sample represents a statistical composite of 12 to 20 core samples pulled from a representative set of bales from a single cutting. The test takes 24 to 48 hours and produces a report that is accurate to within 1 to 2 percentage points on the major parameters.<\/p>\n The cost of not testing is harder to quantify but consistently larger than the $25 test fee. The most common non-testing cost is selling Grade 1 hay at Grade 2 prices because the seller cannot document quality with a certified lab report. In active hay markets, certified forage analysis documentation commands a $5 to $15 per ton premium over untested lots simply because buyers can bid with confidence. On 50 tons of alfalfa hay, that documentation premium is $250 to $750 per cutting \u2014 paid directly for a $25 test investment.<\/p>\n Of the 15 to 25 numbers on a standard forage analysis report<\/strong>, four parameters drive the grading decisions that most U.S. hay buyers use. Understanding what each measures \u2014 and the direction in which improvement lies \u2014 is the foundation of reading any hay test results<\/strong> report correctly.<\/p>\n <\/p>\n <\/p>\n <\/p>\n <\/p>\n <\/p>\n Relative Feed Value (RFV) is the composite index most U.S. hay elevators and livestock buyers use to grade and price hay. It combines two derived values \u2014 digestible dry matter (DDM) and dry matter intake (DMI) \u2014 into a single number that represents the feeding value of the hay relative to a reference forage (full-bloom alfalfa = RFV 100).<\/p>\n <\/p>\n <\/p>\n A standard certified forage analysis report contains more parameters than the core four. The following annotated mock report covers the fields most commonly misread or overlooked by producers receiving their first lab report.<\/p>\n <\/p>\n A forage analysis report is a measurement of decisions already made. By the time the sample reaches the laboratory, the ADF, NDF, and CP values are fixed \u2014 the harvest, curing, and storage events that generated them are history. Understanding the connection between specific decisions and their numeric outcome is the only way to systematically improve scores cutting over cutting.<\/p>\n Cutting Stage \u2192 ADF + CP<\/strong><\/p>\n Curing Speed \u2192 WSC + RFV<\/strong><\/p>\nWhy Every Hay Producer Should Test \u2014 and What It Costs Not To<\/h2>\n
<\/div>\nThe Core Four: NDF, ADF, Crude Protein, and TDN Explained<\/h2>\n
<\/div>\nRFV and RFQ: The Composite Grade Score and How It Is Calculated<\/h2>\n
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\nAt ADF 28%: DDM = 88.9 \u2212 21.8 = 67.1%<\/strong><\/div>\n<\/div>\n
\nAt NDF 38%: DMI = 120 \u00f7 38 = 3.16%<\/strong><\/div>\n<\/div>\n
\n(67.1 \u00d7 3.16) \u00f7 1.29 = 164 RFV<\/strong><\/div>\n<\/div>\n<\/div>\nReading a Real Forage Analysis Report \u2014 Field-by-Field Walkthrough<\/h2>\n
\nSample ID: 2025-ALF-2ND-CUT<\/span><\/div>\n\n\n
\n \nParameter<\/th>\n As Fed<\/th>\n Dry Matter<\/th>\n Explanation<\/th>\n<\/tr>\n<\/thead>\n \n Vocht %<\/td>\n 13.2<\/td>\n \u2014<\/td>\n \u24b6 Baled at 13.2% \u2014 within safe dry hay range (\u226420%). Above 20% = risk zone.<\/td>\n<\/tr>\n \n Crude Protein %<\/td>\n 18.4<\/td>\n 21.2<\/td>\n \u24b7 Always use DM basis for comparison. As-fed is lower because it includes the moisture weight.<\/td>\n<\/tr>\n \n ADF %<\/td>\n 23.1<\/td>\n 26.6<\/td>\n \u24b8 ADF 26.6% DM = Premium grade. Every 1% ADF increase above 27% reduces RFV by approximately 4 points.<\/td>\n<\/tr>\n \n NDF %<\/td>\n 31.8<\/td>\n 36.6<\/td>\n \u24b9 NDF 36.6% = high intake potential. Controls DMI in the RFV formula. Always > ADF on the same sample.<\/td>\n<\/tr>\n \n TDN %<\/td>\n 59.4<\/td>\n 68.4<\/td>\n \u24ba 68.4% TDN DM = strong energy density. Calculated from ADF. Compare on DM basis only.<\/td>\n<\/tr>\n \n NEL (Mcal\/kg)<\/td>\n 0.67<\/td>\n 1.56<\/td>\n \u24bb Net Energy for Lactation \u2014 dairy-specific energy value. 1.56 Mcal\/kg DM is premium dairy quality.<\/td>\n<\/tr>\n \n RFV (calculated)<\/td>\n \u2014<\/td>\n 192<\/td>\n \u24bc RFV 192 = Premium grade. Calculated from ADF\/NDF using DDM \u00d7 DMI \u00f7 1.29 formula above.<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<\/div>\n How Your Harvest Decisions Write Your Forage Analysis Score Before Sampling<\/h2>\n
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