Fertilizers contain nutrients that increase plant growth by increasing the rate of photosynthesis (the process in which plants uptake water and nutrients to create sugar) and cellular respiration (the process in which carbon dioxide and sugar is broken down to be used as energy, releasing oxygen).23 Nutrients and water enter the plant through the plants’ root cell membranes (the barrier separating the inside of the root cells from the outside) via osmosis (the movement of water and small nutrients through a membrane to equalize the concentration of a substance on each side of the membrane). Fertilizer burns occur when the use of fertilizers inhibit the above processes from working correctly and damage the plant.
Fertilizers contain differing salt concentrations which alter their 'salt index.' A salt index measures the relative change in osmotic pressure in water after a given salt has been added compared to sodium nitrate, which is assigned a value of 100. Salt indexes can have some relation to the rate of fertilizer burn in plants, with fertilizers of a salt index above 20 not being recommended for use with particularly sensitive crops.
Below is a chart of salt indexes and percent nitrogen of some of the most commonly used fertilizers.4
An abundance of nitrogen can cause fertilizer burns. The concentration of nitrogen in a plant is important in terms of avoiding fertilizer burns.
The salt index of fertilizer can change the osmotic pressure, allowing the plant to absorb more or less water and nutrients. When a fertilizer has a high salt concentration, it will have a high salt index and vice versa for a low salt concentration. A correct salt index (in terms of the given plant and fertilizer) will result in high osmotic pressure. The incorrect salt concentration will result in low osmotic pressure, which can cause a fertilizer burn.
High osmotic pressure is when there is a higher concentration of salts inside the root cell membrane, so water moves through the membrane to equalize the concentration, bringing nutrients across the membrane as well. The rate of photosynthesis and cellular respiration will increase.5 When there is a high osmotic pressure, fertilizer is working correctly.
Low osmotic pressure is when there is a higher concentration of salts outside the root cell membrane, so water will not move across the membrane. Water may even leave the root system in an attempt to equalize the concentration of salts in the soil.6 When there is a low osmotic pressure, the fertilizer is working incorrectly and the plant may experience a fertilizer burn.7
Fertilizer burns are caused by adding too much salt and or nutrients to the soil surrounding a plant. Dry, overheated, and sunburnt plants are most susceptible to fertilizer burns.8 There are five ways that the use of fertilizer could cause burns.
Each of these five causes can be grouped into one of three explanations of the fertilizer burns:
With water not entering the plant, the plant will respond as it does in a drought.14 The plant will not photosynthesize, inhibiting sugar production, cellular respiration, and plant growth resulting in direct damage - a fertilizer burn.
When too little water accompanies the high concentration of salts in fertilizer, the salts will absorb some of the water, leaving very little for the plant. The plant will respond as it would in a drought. The plant will not photosynthesize or cellularly respire, resulting in a fertilizer burn.
Too much nitrogen can stop the production and accumulation of carbohydrates, inhibiting cellular respiration. Without cellular respiration, the plant's function will decline. Root rot may occur, during which the roots may incorrectly absorb nutrients and water, as the harmful nutrients are more likely to be absorbed. The lower leaves on the plant may die, and the rest of the plant will start to decline in function, portraying the fertilizer burn.1516
The beginning signs of fertilizer burn include white salt marks and crust in the plant container and/or around the roots.17 The salt marks portray that there is an excess of salt and a buildup in the soil. When fertilizer burns continue,
Recovery from fertilizer burns depends on the severity and the cause.
Knoop, William. "Why a Fertilizer Burn" (PDF). MSU libraries. Retrieved October 9, 2021. https://archive.lib.msu.edu/tic/wetrt/article/1976nov14.pdf ↩
"Photosynthesis". National Geographic Society. September 5, 2019. https://www.nationalgeographic.org/encyclopedia/photosynthesis/ ↩
"Steps of cellular respiration". Khan Academy. Retrieved November 3, 2021. https://www.khanacademy.org/science/ap-biology/cellular-energetics/cellular-respiration-ap/a/steps-of-cellular-respiration ↩
"Fertilizer Salt Index" (PDF). alcanda.com. Retrieved November 1, 2021. https://www.alcanada.com/pdf/Tech_Bulletins/Compost_Fertilizer_Manure/Levels/141-Salt_Index.pdf ↩
Hammer, Michael. "Osmosis and Plant Nutrition". Virginia Tech University Libraries. Retrieved November 1, 2021. https://scholar.lib.vt.edu/ejournals/JARS/v55n3/v55n3-hammer.htm ↩
Jones, S. "Fertilizer Burn". CiteSeerX 10.1.1.614.5196. /wiki/CiteSeerX_(identifier) ↩
Yoshio, Murata. "Physiological Responses to Nitrogen in Plants". University of Nebraska - Lincoln. Retrieved November 1, 2021. https://digitalcommons.unl.edu/cgi/viewcontent.cgi?article=1192&context=agronomyfacpub ↩
"Ecological Effects of Ammonia". Minnesota Department of Agriculture. Retrieved November 1, 2021. https://www.mda.state.mn.us/ecological-effects-ammonia ↩
"Fertilizer Product Fact Sheet Ammonia" (PDF). The International Plant Institute. Retrieved November 1, 2021. https://www.tfi.org/sites/default/files/documents/ammoniafactsheet.pdf ↩
Bremner, J.M. (1995). "Recent research on problems in the use of urea as a nitrogen fertilizer". Nitrogen Economy in Tropical Soils. Springer, Dordrecht. pp. 321–329. doi:10.1007/978-94-009-1706-4_30. ISBN 978-94-010-7264-9. Retrieved October 8, 2021. 978-94-010-7264-9 ↩
"Fertilizer Burn". WSU CAHNRS & WSU Extension Hortsense. Retrieved November 1, 2021. http://hortsense.cahnrs.wsu.edu/Search/MainMenuWithFactSheet.aspx?CategoryId=11&ProblemId=3027 ↩