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John Innes compost

Formulas for soil-based growing media


Formulas for soil-based growing media

John Innes compost is a set of four soil-based formulae for growing media, developed at the former John Innes Horticultural Institution (JIHI), now the John Innes Centre, in the 1930s and released into the public domain.

The formulae contain loam, peat, sand, and fertiliser in varying ratios for specific purposes. These composts are used to grow seedlings for planting out, as well as long-lived plants which remain in containers.

History

The scientists who developed the formulae were William Lawrence and John Newell. The pair started to investigate the procedure of making seed and potting composts following heavy losses of Primula sinensis seedlings in the 1933-34 season, which were an important experimental plant for JIHI geneticists.

After hundreds of trials, Lawrence and Newell arrived at their two standardised composts. These formulae were published in 1938, and they became known as "John Innes composts" in the horticultural trade.

The institution made the formulae generally available, but never manufactured the composts for sale nor benefited financially from their production.

Original formulae

There are four original formulae; one seedling mix and three potting mixes. The potting mixes have identical soil components and differ only in nutrient levels.

Seedling mix

The seedling mix is used to sow seeds and to grow young plants and cuttings until they are ready to be planted out.

The soil component contains:

  • 2 parts sterilised loam
  • 1 part peat
  • 1 part sharp sand

With amendments of:

  • 0.6 g/L ground limestone
  • 1.2 g/L superphosphate

Potting mixes

The potting mixes are used to grow different types of plants depending on their nutrient requirements.

All three potting mixes have the same soil component:

  • 7 parts sterilised loam
  • 3 parts peat
  • 2 parts sharp sand

They each contain ground limestone, and varying quantities of the same base fertiliser mix:

  • 2 parts hoof and horn
  • 2 parts superphosphate
  • 1 part sulphate of potash

No. 1

No. 1 contains the lowest level of nutrients, and is used for potting on young cuttings or seedlings. The base soil is amended with:

  • 0.6 g/L ground limestone
  • 3 g/L base fertiliser

No. 2

No. 2 contains moderate nutrient levels, and is used for growing established plants and most vegetables. The base soil is amended with:

  • 1.2 g/L ground limestone
  • 6 g/L base fertiliser

No. 3

No. 3 contains the highest nutrient levels, and is used for growing mature plants such as shrubs and trees. The base soil is amended with:

  • 1.8 g/L ground limestone
  • 9 g/L base fertiliser

Modern formulae

Some new adaptations of the original recipes are also in use.

Peat-free alternatives

Peat-free John Innes composts may be made by replacing the peat in the recipe with a substitute such as wood fibre, coir, or bark. These substitutes tend to be less acidic than peat, so a smaller quantity of ground limestone is used to balance the pH level.

Cutting mix

As an alternative to using the original seedling mix, a special mix is sometimes used to root cuttings. The mix contains no added fertiliser or amendments, only the soil component:

  • 1 part sterilised loam
  • 2 parts peat
  • 1 part sharp sand

Ericaceous mixes

Other mixes have been developed for ericaceous (calcifuge) plants which prefer more acidic soil. These mixes typically omit the ground limestone, and may also have added sulphur.

References

References

  1. "What is John Innes compost?".
  2. "The John Innes Centre and the compost that bears our name".
  3. (9 September 2013). "John Innes: more than just a compost".
  4. "John Innes potting compost".
  5. "How to make your own John Innes compost".
  6. "JIMA Compost".
  7. "How to make John Innes compost".
Info: Wikipedia Source

This article was imported from Wikipedia and is available under the Creative Commons Attribution-ShareAlike 4.0 License. Content has been adapted to SurfDoc format. Original contributors can be found on the article history page.

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