Quality of western Canadian peas 2025
This report presents harvest quality data for yellow and green peas grown in western Canada in 2025. Pea samples were submitted to the Canadian Grain Commission’s Harvest Sample Program by producers and grain companies. Quality data are compiled from the results of analytical tests performed in the Grain Research Laboratory.
ISSN 1920-9053
Growing and harvesting conditions
Figure 1 and Figure 2 show the monthly mean temperature differences from normal in the Prairie region during the 2025 growing season (June and July). Figure 3 shows the total precipitation in the Prairie region from April 1 to October 31, 2025.
Source
Map compiled using the Agriculture and Agri-Food Canada Map Archive.
Source
Map compiled using the Agriculture and Agri-Food Canada Map Archive.
Source
Map compiled using the Agriculture and Agri-Food Canada Map Archive.
In Alberta, seeding started in early May and was completed by early June. Warm temperatures advanced plant growth, but cool temperatures later in the season delayed crop maturity in northern areas and the Peace region (Figure 1 and Figure 2). Rainfall was also limited throughout the growing season in these areas (Figure 3). Overall, crop growing conditions were below the 5-year-average in the Peace region but were above average for other areas. The pea harvest began in early August and was completed by mid-September under good conditions.
In Saskatchewan, seeding started between late April and early May and was completed by mid-June. Conditions were dry early in the growing season but later in the season timely rains helped crops develop. The pea harvest began in late July and early August and was finished by mid-September. Due to low moisture levels (Figure 3) and agronomic challenges, crop yields in the southwest and northwest were lower than average. In other areas, yields were average to above average. Many peas were in the top two grades.
In Manitoba, warm, dry and windy conditions allowed seeding to begin in late April and be completed by late May. Precipitation varied across regions during the growing season (Figure 3). Drought stress in the Interlake region and some eastern areas caused crops to mature crops early and this negatively affected the filling of pods. The pea harvest occurred between early August and mid-September. Crop yields varied from below average to above average, depending on moisture conditions.
Production
Pea production in 2025 was estimated to be 3.9 million tonnes, which is approximately 31.6% higher than in 2024, and 10.0% lower than the 10-year average of 3.6 million tonnes (Table 1). The higher production is due to a 21.6% increase in yield and an 8.1% increase in harvested area compared to 2024. Alberta had the highest proportion of pea production (47.2%), followed by Saskatchewan (45.8%) and Manitoba (6.9%).
| Location | Harvested area (thousand hectares) | Production (thousand tonnes) | Yield (kg/ha) | Mean production (thousand tonnes) | |||
|---|---|---|---|---|---|---|---|
| 2025 | 2024 | 2025 | 2024 | 2025 | 2024 | 2015–2024 | |
| Manitoba | 79 | 76 | 271 | 262 | 3,451 | 3,434 | 177 |
| Saskatchewan | 694 | 698 | 1,800 | 1,533 | 2,593 | 2,195 | 1,815 |
| AlbertaFootnote b | 606 | 501 | 1,855 | 1,191 | 3,061 | 2,377 | 1,579 |
| Western Canada | 1,379 | 1,276 | 3,927 | 2,985 | 2,847 | 2,341 | 3,571 |
Table 1 Notes
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Harvest samples
Samples were submitted to the Canadian Grain Commission’s Harvest Sample Program by pea producers and grain companies across western Canada (Figure 4). The program received 363 pea samples, consisting of 272 yellow pea samples and 91 green pea samples.
All samples were graded and analyzed for protein content. Composite samples were prepared based on class (yellow or green), crop region and grade (No. 1 or No. 2 Canada). All composites were tested for chemical composition (moisture, protein, starch, crude fat, total dietary fiber and ash content), mineral content, functional properties (water holding capacity and emulsifying capacity) and physical and cooking characteristics (100 seed weight and water absorption, cooking time and firmness of cooked peas).
The reported number of samples by grade does not necessarily represent the actual distribution of grades across western Canada.
Protein content
The protein content for yellow peas (Table 2) ranged from 18.2% to 27.8%, with a mean of 22.4%. For green peas, the protein content ranged from 20.6% to 26.0%, with a mean of 23.4% (Table 3). The mean protein content for each type of pea was lower than in 2024. The mean protein content for yellow and green peas combined was lower in 2025 than the 10-year mean of 23.4% (Figure 5). Table 4 and Table 5 contain the mean protein and starch values for yellow and green peas according to the applicable crop regions in Figure 6.
Table 2 Protein content (%, dry basis) for 2025 western Canadian yellow peas by gradeFootnote 1
| Location | Number of samples | 2025 | 2024 | ||
|---|---|---|---|---|---|
| Mean | Minimum | Maximum | Mean | ||
| Manitoba | 5 | 21.3 | 18.9 | 24.2 | 23.9 |
| Saskatchewan | 34 | 22.2 | 19.5 | 27.2 | 25.2 |
| Alberta | 50 | 22.2 | 18.2 | 25.8 | 24.8 |
| Western Canada | 89 | 22.1 | 18.2 | 27.2 | 24.9 |
| Location | Number of samples | 2025 | 2024 | ||
|---|---|---|---|---|---|
| Mean | Minimum | Maximum | Mean | ||
| Manitoba | 14 | 21.3 | 18.8 | 24.0 | 22.2 |
| Saskatchewan | 72 | 23.1 | 18.8 | 26.3 | 25.5 |
| Alberta | 52 | 22.2 | 19.3 | 25.7 | 25.1 |
| Western Canada | 138 | 22.6 | 18.8 | 26.3 | 25.1 |
| Location | Number of samples | 2025 | 2024 | ||
|---|---|---|---|---|---|
| Mean | Minimum | Maximum | Mean | ||
| Manitoba | 1 | 24.2 | 24.2 | 24.2 | no data |
| Saskatchewan | 1 | 26.4 | 26.4 | 26.4 | no data |
| Alberta | 1 | 23.2 | 23.2 | 23.2 | no data |
| Western Canada | 3 | 24.6 | 23.2 | 26.4 | no data |
| Location | Number of samples | 2025 | 2024 | ||
|---|---|---|---|---|---|
| Mean | Minimum | Maximum | Mean | ||
| Manitoba | 5 | 21.7 | 20.8 | 22.8 | 24.4 |
| Saskatchewan | 30 | 22.5 | 19.2 | 27.8 | 26.6 |
| Alberta | 6 | 21.9 | 19.8 | 23.4 | 25.0 |
| Western Canada | 41 | 22.3 | 19.2 | 27.8 | 26.0 |
| Location | Number of samples | 2025 | 2024 | ||
|---|---|---|---|---|---|
| Mean | Minimum | Maximum | Mean | ||
| Manitoba | 25 | 21.5 | 18.8 | 24.2 | 23.5 |
| Saskatchewan | 137 | 22.8 | 18.8 | 27.8 | 25.7 |
| Alberta | 109 | 22.2 | 18.2 | 25.8 | 25.0 |
| Western Canada | 271 | 22.4 | 18.2 | 27.8 | 25.2 |
Table 3 Protein content (%, dry basis) for 2025 western Canadian green peas by gradeFootnote 1
| Location | Number of samples | 2025 | 2024 | ||
|---|---|---|---|---|---|
| Mean | Minimum | Maximum | Mean | ||
| Saskatchewan | 12 | 23.6 | 21.8 | 25.5 | 25.6 |
| Alberta | 2 | 24.9 | 24.4 | 25.3 | 26.8 |
| Western Canada | 14 | 23.7 | 21.8 | 25.5 | 25.8 |
| Location | Number of samples | 2025 | 2024 | ||
|---|---|---|---|---|---|
| Mean | Minimum | Maximum | Mean | ||
| Saskatchewan | 26 | 23.4 | 21.4 | 26.0 | 25.7 |
| Alberta | 8 | 23.3 | 22.0 | 25.4 | 26.7 |
| Western Canada | 34 | 23.4 | 21.4 | 26.0 | 25.8 |
| Location | Number of samples | 2025 | 2024 | ||
|---|---|---|---|---|---|
| Mean | Minimum | Maximum | Mean | ||
| Saskatchewan | 11 | 23.0 | 20.6 | 25.9 | 26.5 |
| Alberta | 4 | 25.7 | 21.6 | 25.2 | 25.3 |
| Western Canada | 15 | 23.2 | 20.6 | 25.9 | 25.8 |
| Location | Number of samples | 2025 | 2024 | ||
|---|---|---|---|---|---|
| Mean | Minimum | Maximum | Mean | ||
| Saskatchewan | 49 | 23.4 | 20.6 | 26 | 25.8 |
| Alberta | 14 | 23.7 | 21.6 | 25.4 | 25.8 |
| Western Canada | 63.0 | 23.4 | 20.6 | 26.0 | 25.8 |
Graph data
| Crop year | Protein (%, dry basis) |
|---|---|
| 2015 | 22.1 |
| 2016 | 22.1 |
| 2017 | 22.6 |
| 2018 | 23.2 |
| 2019 | 23.1 |
| 2020 | 23.3 |
| 2021 | 24.8 |
| 2022 | 24.0 |
| 2023 | 23.5 |
| 2024 | 25.5 |
| 2025 | 22.6 |
| 10-year mean (2014-2024) | 23.4 |
Description
Manitoba crop regions: 1 (Southwest Manitoba), 2 (Northwest Manitoba), and 3 (Eastern Manitoba); Saskatchewan crop regions: 4 (Southeast Saskatchewan), 5 (Southwest Saskatchewan), 6 (Northeast Saskatchewan), and 7 (Northwest Saskatchewan); Alberta crop regions: 8 (Southern Alberta), 9 (Central Alberta), and 10 (Northern Alberta).
| Crop region | Mean protein content | Mean starch content | ||
|---|---|---|---|---|
| 2025 | 2024 | 2025 | 2024 | |
| 1 | 20.7 | 23.4 | 50.9 | 46.1 |
| 4 | 23.5 | 26.0 | 48.4 | 44.5 |
| 5 | 22.8 | 27.0 | 46.8 | 45.0 |
| 6 | 22.0 | 23.9 | 47.9 | 46.2 |
| 7 | 22.4 | 24.5 | 45.6 | 45.1 |
| 8 | 22.0 | 26.4 | 46.5 | 45.9 |
| 9 | 21.8 | 23.6 | 47.6 | 46.3 |
| 10 | 21.9 | 23.3 | 47.9 | 46.9 |
| Crop region | Mean protein content | Mean starch content | ||
|---|---|---|---|---|
| 2025 | 2024 | 2025 | 2024 | |
| 4 | 23.0 | 26.7 | 45.9 | 44.2 |
| 6 | 23.1 | 24.3 | 46.9 | 46.4 |
| 7 | 24.1 | 24.9 | 44.4 | 46.0 |
| 8 | 24.3 | no data | 45.9 | no data |
Yellow peas
Table 6 contains the 2025 quality data for yellow pea composites by grade. The protein content values for No. 1 yellow peas (21.8%) and No. 2 yellow peas (22.3%) were lower than in 2024. The total dietary fiber content was also lower for both grades. The starch content values for No. 1 yellow peas (48.1%) and No. 2 yellow peas (47.2%) were higher compared to 2024. The crude fat content was higher than in 2024 for both No. 1 and No. 2 yellow peas. The ash content values for both grades were similar to those in 2024.
Potassium was the most abundant macroelement present in yellow peas, followed by phosphorus, magnesium and calcium. Among the microelements, iron was the most abundant, followed by zinc, manganese and copper. The concentrations of most elements in No. 1 and No. 2 yellow peas were slightly lower than in 2024.
Compared to 2024, No. 1 and No. 2 yellow peas had greater water holding capacity values. Slightly lower oil emulsifying capacity values were recorded for No. 1 yellow peas (282.4 millilitres of oil per gram) and No. 2 yellow peas (284.3 millilitres of oil per gram).
The 100-seed weight values for No. 1 yellow peas (23.4 grams) and No. 2 yellow peas (22.1 grams) were higher than in 2024, while the water absorption values were lower.
Cooking time was shorter for No. 1 yellow peas (16.5 minutes) but longer for No. 2 yellow peas (18.6 minutes), compared to 2024. Cooked No. 1 yellow peas had firmer texture (23.3 newtons per gram), as did cooked No. 2 yellow peas (26.0 newtons per gram), compared to 2024.
Table 6 Quality data for 2025 western Canadian yellow pea composites by grade
| Quality parameter | Peas, No. 1 Canada | Peas, No. 2 Canada | ||
|---|---|---|---|---|
| 2025 | 2024 | 2025 | 2024 | |
| Moisture, % | 10.7 | 10.5 | 10.7 | 10.7 |
| Protein, %, dry basis | 21.8 | 24.6 | 22.3 | 25.4 |
| Starch, %, dry basis | 48.1 | 46.0 | 47.2 | 45.5 |
| Total dietary fiber, %, dry basis | 14.9 | 16.0 | 14.8 | 16.8 |
| Crude fat, %, dry basis | 1.22 | 1.04 | 1.10 | 1.04 |
| Ash, %, dry basis | 2.7 | 2.6 | 2.7 | 2.7 |
| Quality parameter | Peas, No. 1 Canada | Peas, No. 2 Canada | ||
|---|---|---|---|---|
| 2025 | 2024 | 2025 | 2024 | |
| Calcium, mg/100 g sample | 84.6 | 90.9 | 89.7 | 89.6 |
| Copper, mg/100 g sample | 0.62 | 0.71 | 0.68 | 0.71 |
| Iron, mg/100 g sample | 5.0 | 5.3 | 5.4 | 5.7 |
| Potassium, mg/100 g sample | 1,055.7 | 1,057.1 | 1,083.0 | 1,071.6 |
| Magnesium, mg/100 g sample | 135.2 | 143.4 | 137.8 | 143.1 |
| Manganese, mg/100 g sample | 1.4 | 1.3 | 1.4 | 1.3 |
| Phosphorus, mg/100 g sample | 340.9 | 373.9 | 347.3 | 387.7 |
| Zinc, mg/100 g sample | 3.4 | 3.7 | 3.5 | 3.9 |
| Quality parameter | Peas, No. 1 Canada | Peas, No. 2 Canada | ||
|---|---|---|---|---|
| 2025 | 2024 | 2025 | 2024 | |
| Water holding capacity, g H2O/g sample | 0.93 | 0.91 | 0.93 | 0.92 |
| Emulsifying capacity, ml oil/g sample | 282.4 | 299.4 | 284.3 | 297.2 |
| Quality parameter | Peas, No. 1 Canada | Peas, No. 2 Canada | ||
|---|---|---|---|---|
| 2025 | 2024 | 2025 | 2024 | |
| 100-seed weight, g/100 seeds | 23.4 | 20.1 | 22.1 | 19.7 |
| Water absorption, g H2O/g seeds | 0.87 | 0.97 | 0.85 | 0.98 |
| Quality parameter | Peas, No. 1 Canada | Peas, No. 2 Canada | ||
|---|---|---|---|---|
| 2025 | 2024 | 2025 | 2024 | |
| Cooking time, min | 16.5 | 18.3 | 18.6 | 17.5 |
| Firmness, N/g cooked seedsFootnote 3 | 23.3 | 21.6 | 26.0 | 21.2 |
Green peas
Table 7 contains the 2025 quality data for green pea composites by grade. The protein contents for No. 1 green peas (23.4%) and No. 2 green peas (23.3%) were lower than in 2024. The starch content values for No. 1 green peas (46.2%) and No. 2 green peas (45.8%) were higher than in 2024. Total dietary fiber showed a slight decrease for No. 1 green peas compared to 2024. Both grades of green peas had higher crude fat content (1.28% and 1.34%) but similar ash content compared to 2024. The trends in macroelement and microelement content in 2025 green peas were similar to those for 2025 yellow peas, with lower levels for elements such as calcium, iron, magnesium and phosphorus in No. 1 and No. 2 green peas compared to 2024.
The water holding capacity values of No. 1 green peas (0.93 grams of water per gram) and No. 2 green peas (0.92 grams of water per gram) were higher than in 2024, while the oil emulsifying capacity values for No. 1 green peas (279.6 millilitres of oil per gram) and No. 2 green peas (277.9 millilitres of oil per gram) were lower than in 2024.
The values for 100-seed weight for No. 1 green peas (23.4 grams) and No. 2 green peas (22.7 grams) were higher than in 2024. Seed water absorption values were lower than in 2024 for No. 1 green peas (0.84 grams of water per gram) and No. 2 green peas (0.76 grams of water per gram). Both grades of green peas had longer cooking times than in 2024, with 20.6 minutes for No. 1 green peas and 20.0 minutes for No. 2 green peas. The firmness values were also greater than in 2024 for cooked No. 1 green peas (23.0 newtons per gram) and cooked No. 2 green peas (22.4 newtons per gram).
Table 7 Quality data for 2025 western Canadian green pea composites by grade
| Quality parameter | Peas, No. 1 Canada | Peas, No. 2 Canada | ||
|---|---|---|---|---|
| 2025 | 2024 | 2025 | 2024 | |
| Moisture, % | 10.6 | 10.7 | 10.7 | 10.5 |
| Protein, %, dry basis | 23.4 | 25.7 | 23.3 | 26.1 |
| Starch, %, dry basis | 46.2 | 45.1 | 45.8 | 45.3 |
| Total dietary fiber, %, dry basis | 15.2 | 15.6 | 15.1 | 15.0 |
| Crude fat, %, dry basis | 1.28 | 0.91 | 1.34 | 0.85 |
| Ash, %, dry basis | 2.6 | 2.7 | 2.7 | 2.7 |
| Quality parameter | Peas, No. 1 Canada | Peas, No. 2 Canada | ||
|---|---|---|---|---|
| 2025 | 2024 | 2025 | 2024 | |
| Calcium, mg/100 g sample | 75.1 | 81.4 | 77.5 | 79.3 |
| Copper, mg/100 g sample | 0.67 | 0.69 | 0.68 | 0.69 |
| Iron, mg/100 g sample | 4.6 | 5.0 | 4.9 | 5.4 |
| Potassium, mg/100 g sample | 1,063.5 | 1,053.2 | 1,077.6 | 1,074.7 |
| Magnesium, mg/100 g sample | 134.6 | 138.4 | 132.7 | 140.3 |
| Manganese, mg/100 g sample | 1.2 | 1.2 | 1.1 | 1.3 |
| Phosphorus, mg/100 g sample | 302.2 | 363.6 | 333.5 | 387.2 |
| Zinc, mg/100 g sample | 3.1 | 3.3 | 3.3 | 3.4 |
| Quality parameter | Peas, No. 1 Canada | Peas, No. 2 Canada | ||
|---|---|---|---|---|
| 2025 | 2024 | 2025 | 2024 | |
| Water holding capacity, g H2O/g sample | 0.93 | 0.90 | 0.92 | 0.91 |
| Emulsifying capacity, ml oil/g sample | 279.6 | 300.8 | 277.9 | 300.3 |
| Quality parameter | Peas, No. 1 Canada | Peas, No. 2 Canada | ||
|---|---|---|---|---|
| 2025 | 2024 | 2025 | 2024 | |
| 100-seed weight, g/100 seeds | 23.4 | 19.8 | 22.7 | 20.1 |
| Water absorption, g H2O/g seeds | 0.84 | 0.90 | 0.76 | 0.94 |
| Quality parameter | Peas, No. 1 Canada | Peas, No. 2 Canada | ||
|---|---|---|---|---|
| 2025 | 2024 | 2025 | 2024 | |
| Cooking time, min | 20.6 | 15.3 | 20.0 | 15.7 |
| Firmness, N/g cooked seedsFootnote 3 | 23.0 | 22.0 | 22.4 | 20.7 |
Acknowledgements
The Grain Research Laboratory acknowledges the cooperation of western Canadian pulse processors, producers and grain companies in supplying the samples of newly harvested peas. We are also grateful to the following groups within the Canadian Grain Commission: Industry Services for assistance with grading the samples, the Pulse Research Program staff for technical assistance, the staff of the trace elements unit for mineral analysis, and Digital and Creative Communications for their assistance in the publication of this document.





