No‐Tillage Crop Production: A Revolution in Agriculture!

Беспахотное растениеводство: революция в сельском хозяйстве!
G. B. Triplett, Warren A. Dick
2008-05-01

conservation agricultureherbicide-based weed controlno-tillage crop productionsoil erosion controlwater and fertilizer use efficiency
For thousands of years, agriculture and tillage were considered synonymous. It was simply not thought possible to grow crops without first tilling the soil before planting and for weed control. The advent of modern herbicides permitted no‐tillage (NT) to be developed and practiced on actual working family farms. No‐tillage is generally defined as planting crops in unprepared soil with at least 30% mulch cover. Adoption of NT after its successful demonstration in the 1950s was slow. However, with better planters, herbicides, and accumulated experience, NT began to be widely adopted in the 1980s in the United States and then in Australia, South America, and Canada. Today, approximately 23% of the total cropland in the United States is planted using NT. No‐tillage has revolutionized agricultural systems because it allows individual producers to manage greater amounts of land with reduced energy, labor, and machinery inputs. At the same time, NT is a very effective erosion control measure and improves water and fertilizer use efficiency so that many crops yield better under NT than under tilled systems. Tillage, like crops, can be rotated but the benefits of NT are most likely to be realized with continuous application. We review some of the early work that led to the development of NT and how NT impacts the crop, soil, hydrology, and farm economics. While highly sustainable, there are still many challenges that remain for researchers to solve so the benefits of NT can be realized on expanded land area and for more crops, worldwide.
1
Despite its sustainability benefits, challenges remain in expanding no-tillage to more land areas and crop types worldwide.
2
No-tillage adoption expanded widely from the 1980s, reaching approximately 23% of total U.S. cropland.
3
No-tillage became feasible through modern herbicides and is defined as planting into unprepared soil with at least 30% mulch cover.
4
No-tillage effectively controls erosion and improves water and fertilizer-use efficiency; many crops yield better than under tilled systems.
5
No-tillage reduces energy, labor, and machinery requirements, enabling individual producers to manage larger areas.

No-tillage crop production systems

The impacts and sustainability-related benefits of no-tillage on crops, soil, hydrology, farm economics, resource use, and erosion control

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2008-05-01
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G. B. Triplett
Warren A. Dick
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