DAP fertilizer Monthly Price - Swedish Krona per Metric Ton

Data as of March 2026

Range
Mar 2021 - Mar 2026: 1,566.863 (34.34%)
Chart

Description: DAP (diammonium phosphate), standard size, bulk, spot, f.o.b. US Gulf

Unit: Swedish Krona per Metric Ton



Source: Fertilizer Week; Fertilizer International; World Bank.

See also: Agricultural production statistics

See also: Top commodity suppliers

See also: Commodities glossary - Definitions of terms used in commodity trading

Overview

Diammonium phosphate (DAP) is a concentrated phosphate fertilizer used to supply both phosphorus and nitrogen to crops. It is typically traded as a granular solid and priced on a per-metric-ton basis, with market references often quoted as DAP spot prices on an FOB US Gulf basis. The US Gulf benchmark is widely used because the Gulf Coast is a major export and distribution hub with established access to phosphate rock, ammonia, rail, barge, and ocean freight routes. DAP is valued for its relatively high nutrient content and ease of handling in bulk fertilizer systems.

DAP is applied to a wide range of field crops, including cereals, oilseeds, and row crops, where phosphorus supports root development, early growth, and energy transfer within the plant. It is also used in blended fertilizers and in some industrial applications, though agriculture is the dominant use. Because it contains both phosphate and ammonium nutrients, DAP competes with other phosphate fertilizers and with blended nutrient products in farm input markets.

Supply Drivers

DAP supply is shaped by the phosphate rock and ammonia chains that feed its production. Phosphate rock deposits are geographically concentrated in a few long-established mining regions, including North Africa, the Middle East, China, the United States, and parts of the former Soviet sphere. Mining is capital intensive and constrained by ore quality, stripping ratios, beneficiation needs, and transport links from mine to plant and port. Because phosphate rock is not evenly distributed, regional logistics and export infrastructure strongly influence available supply.

Production also depends on ammonia, which is commonly derived from natural gas. This links DAP output to gas availability, fertilizer plant economics, and the cost of energy-intensive chemical processing. Plants require sulfuric acid and other inputs in the broader phosphate chain, so bottlenecks in upstream chemicals can affect finished fertilizer availability. DAP manufacturing is typically concentrated near feedstock sources or export terminals to reduce freight costs.

Supply is further shaped by seasonal production and application cycles. Fertilizer plants often build inventories ahead of planting seasons, while downstream demand can be uneven across regions. Phosphate mining and processing also face environmental permitting, water use constraints, and waste management requirements, all of which can limit expansion or raise costs. Because new mines and chemical plants take many years to develop, supply adjusts slowly to changes in demand.

Demand Drivers

DAP demand is driven primarily by crop nutrition needs, especially in soils with low available phosphorus. Phosphorus is essential for root establishment, flowering, and grain formation, so demand is closely tied to acreage planted in cereals, oilseeds, and other broad-acre crops. Farmers often apply phosphate fertilizers at planting or before planting, which creates seasonal demand patterns linked to crop calendars and soil preparation practices.

Demand is also influenced by substitution among phosphate products. DAP competes with monoammonium phosphate (MAP), triple superphosphate, and blended NPK fertilizers. The choice among these products depends on nutrient ratios, soil chemistry, application method, and local agronomic recommendations. In alkaline soils, DAP can be favored for its handling properties and nutrient concentration, while in some systems MAP or other phosphate sources are preferred.

Long-run demand reflects population growth, dietary change, and the need to maintain crop yields on limited arable land. Phosphate use is relatively inelastic in the short run because farmers cannot easily substitute away from soil nutrient replacement without affecting yields. However, efficiency gains from precision agriculture, soil testing, and improved fertilizer placement can moderate growth in unit demand per hectare. Transport costs and local blending practices also shape regional consumption patterns, especially in inland markets far from ports.

Macro and Financial Drivers

DAP prices are influenced by broad agricultural income conditions, freight costs, and the US dollar exchange rate. Because fertilizer is traded internationally in dollars, a stronger dollar can make imports more expensive in local currency terms and can affect buying behavior in importing regions. Interest rates also matter indirectly through inventory financing and working capital costs for distributors and traders.

Storage and logistics are important because DAP is a physical bulk commodity with seasonal demand. When inventories are ample, nearby supply can pressure spot prices; when stocks are tight relative to planting needs, nearby delivery can command a premium. This creates the possibility of contango or backwardation in regional forward curves, depending on freight, storage, and seasonal demand timing. DAP also tends to move with broader fertilizer and crop input markets because buyers often manage nutrient purchases as part of a whole-farm cost structure.

MonthPriceChange
Mar 20214,562.13-
Apr 20214,610.571.06%
May 20214,801.734.15%
Jun 20215,074.055.67%
Jul 20215,291.894.29%
Aug 20215,235.04-1.07%
Sep 20215,567.436.35%
Oct 20215,834.014.79%
Nov 20216,372.039.22%
Dec 20216,773.346.30%
Jan 20226,395.86-5.57%
Feb 20226,939.908.51%
Mar 20228,979.3329.39%
Apr 20229,101.621.36%
May 20228,372.22-8.01%
Jun 20227,851.48-6.22%
Jul 20228,136.263.63%
Aug 20227,776.20-4.43%
Sep 20228,183.865.24%
Oct 20228,068.06-1.41%
Nov 20227,119.92-11.75%
Dec 20226,473.52-9.08%
Jan 20236,541.421.05%
Feb 20236,392.85-2.27%
Mar 20236,350.66-0.66%
Apr 20236,583.813.67%
May 20235,319.22-19.21%
Jun 20234,890.92-8.05%
Jul 20234,813.19-1.59%
Aug 20235,716.9918.78%
Sep 20235,853.062.38%
Oct 20235,894.710.71%
Nov 20235,751.70-2.43%
Dec 20235,827.111.31%
Jan 20246,170.735.90%
Feb 20246,084.34-1.40%
Mar 20246,421.295.54%
Apr 20245,887.93-8.31%
May 20245,605.06-4.80%
Jun 20245,697.741.65%
Jul 20245,743.480.80%
Aug 20245,691.06-0.91%
Sep 20245,676.37-0.26%
Oct 20245,993.055.58%
Nov 20246,266.334.56%
Dec 20246,232.80-0.53%
Jan 20256,460.223.65%
Feb 20256,527.121.04%
Mar 20256,243.62-4.34%
Apr 20256,216.14-0.44%
May 20256,464.303.99%
Jun 20256,830.295.66%
Jul 20257,059.893.36%
Aug 20257,619.547.93%
Sep 20257,317.34-3.97%
Oct 20257,108.93-2.85%
Nov 20256,739.19-5.20%
Dec 20255,844.95-13.27%
Jan 20265,695.14-2.56%
Feb 20265,627.68-1.18%
Mar 20266,129.008.91%

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