28 September 2026 Globale Kartoffelindustrie KomplementärinAVGUST
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Weltausstellung ·Agronomie·Ernte

Spurrillen nach einer nassen Ernte: Wie man Ernteausfälle im nächsten Jahr bei Kartoffeln vermeidet

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Mit Wasser gefüllte Traktorspuren in einem nassen Feld
Photo: Water-filled tractor ruts in a field near Falla, Scotland (illustrative). ian shiell / Wikimedia Commons, CC BY-SA 2.0

Die zentralen Thesen

  • 13 of 16 AHDB trials showed yield loss from compaction
  • 18 t/ha average loss on compacted soil against 54 t/ha
  • 28 of 83 subsoiling trials raised potato yield in AHDB
  • 1.5–2 cm a day: root growth in loose soil after emergence

Warum es wichtig ist

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Vor dem Tiefenlockern Bodengruben ausheben, nur auf trockenem Boden arbeiten, das Pflügen von durchnässten Feldern vermeiden und in diesem Herbst die Entwässerungsgräben reinigen.
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Offer soil structure checks and penetrometer surveys, not only subsoiling passes.

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A rainy harvest forces heavy machines onto soft ground, and the damage lasts beyond this season. In an AHDB review of 16 experiments, 13 showed a significant yield drop on compacted soil, on average 18 t/ha from a loose-soil mean of 54 t/ha. The young crop suffers most: roots that extend 1.5–2 cm a day in loose soil slow down sharply when a dense layer lies under the seed. Symptoms such as patchy emergence, weak canopy and wilting in moist soil are easily blamed on seed or disease. Deep loosening is no sure cure either: only 28 of 83 published trials gave a significant yield gain, three lowered yield, and typical gains were around 5 t/ha. AHDB advises spade pits and a structure score before any pass, loosening only to the damaged depth and only when a ribbon test shows the soil is dry enough. Fresh ploughing of waterlogged land can make spring conditions worse, and drains need checking now.

13 von 16experiments with significant yield loss from compaction
18 t/hadurchschnittlicher Ertragsverlust auf verdichtetem Boden
54 t/hamean yield on loose soil in the same trials
25–38 t/halargest losses in individual experiments
1.5–2 cm/dayroot growth in loose soil
28 von 83subsoiling experiments with a significant yield gain
about 5 t/hatypical gain where subsoiling worked
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Digging in waterlogged soil solves this season’s problem but leaves a bill for the next. Heavy harvesters, tractors and loaded trucks move slowly across wet fields, often with wheel slip, and compact the soil below the plough layer. For potatoes, one of the crops most sensitive to soil structure, this legacy can cost a large part of the next crop.

What compaction costs

The UK Agriculture and Horticulture Development Board (AHDB) reviewed 16 experiments that compared potato yields on compacted and loose soil. In 13 of them, compaction reduced yield significantly. The average loss was 18 t/ha against a mean yield of 54 t/ha on loose soil, and in some experiments losses reached 25–38 t/ha. Potatoes are most vulnerable in the first 3–4 weeks after emergence: in loose soil, roots grow 1.5–2 cm a day, and a dense layer just below the seed tuber sharply slows them. According to AHDB, the effects of compaction last the whole season and, once created, are almost impossible to remove completely.

Wie man das Problem erkennt

Compaction is easy to confuse with other causes of yield loss. AHDB lists typical signs: uneven emergence, slow canopy growth, wilting leaves when the soil is moist, nutrient deficiency symptoms and more misshapen tubers. So before any deep cultivation, specialists advise a field diagnosis. Dig a soil pit with a spade in several places and assess soil structure (the Visual Evaluation of Soil Structure, VESS), adding a penetrometer where possible.

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Subsoiling is not a universal answer

Subsoiling after a wet harvest seems the obvious fix, but the data are mixed. Of 83 published subsoiling experiments in potatoes reviewed by AHDB, only 28 gave a significant yield increase, and three gave lower yields. Even where soil resistance fell measurably, the yield gain was often small, about 5 t/ha.

AHDB gives these practical rules for soils after prolonged waterlogging:

  • Subsoil only where compaction is confirmed by a soil assessment, and only to the depth of the compacted layer.
  • Check soil moisture at working depth before any work (a simple ribbon test). In wet soil a subsoiler smears the layer instead of shattering it.
  • Do not plough straight after waterlogging: worked soil takes in more rain, and seedbed conditions can become worse by spring.
  • Keep traffic to a minimum and stay off the field until the soil has dried.
  • Inspect and clear field drain outfalls and ditches in autumn.

What to do with low spots

Waterlogged hollows, where machines get stuck and part of the crop is lost, are a separate question. Canadian specialists advise leaving areas with signs of rot unharvested, so that infection does not reach the store. In the long term, such areas need levelling, drainage or a decision on whether to plant potatoes there at all.

Warum es wichtig ist

In a season of long rains, the goal is to lift the crop before frost, and some compaction is almost unavoidable. But decisions on how to restore the field are made in autumn and set the starting conditions for next year’s potatoes. Targeted diagnosis and work on dry soil cost less than blanket subsoiling by the calendar, or losing a third of the crop on compacted patches.

Das Thema wurde von Fachleuten im MAX-Messenger-Chat „КАРТОФЕЛЬ И Т.Д. (Potato etc.)“ angesprochen, einer Community mit über 1,100 Kartoffelbauern und Branchenexperten. Die Teilnehmer werden nicht namentlich genannt. Diskutieren Sie mit!

Photo: Water-filled tractor ruts in a field near Falla, Scotland (illustrative). ian shiell / Wikimedia Commons, CC BY-SA 2.0

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Was kommt als nächstes

Field recovery plans are set this autumn: diagnosis first, then subsoiling only where it is needed and when soil is dry enough.

Quellen

  1. MAX-Chat «КАРТОФЕЛЬ И Т.Д. (Kartoffel usw.)» — https://max.ru/join/SViX6IyOKuJHB6-xuuepbMbts_zk4eiEYdXUpUWVu28
  2. AHDB — Review of the effect of soil compaction on potato growth and its removal by cultivation — https://potatoes.ahdb.org.uk/effect-of-soil-compaction-on-potato-growth-and-its-removal-by-cultivation
  3. AHDB — How to manage soils after prolonged waterlogging — https://ahdb.org.uk/news/how-to-manage-soils-after-prolonged-waterlogging
  4. Potato News Today — The invisible yield tax beneath the rows — https://www.potatonewstoday.com/2026/08/17/the-invisible-yield-tax-beneath-the-rows-why-soil-compaction-belongs-on-every-potato-businesss-risk-register/
  5. Kartoffel-Know-how – Ernte und Lagerung von Kartoffeln bei hoher Luftfeuchtigkeit – https://spudsmart.com/harvest-and-storage-of-potato-crops-exposed-to-high-moisture-levels/

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