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Summary
Bloom Color: Yellow. Main Bloom Time: Early spring, Late spring, Mid spring. Form: Irregular or sprawling, Upright or erect.
Physical Characteristics

Pinus halepensis is an evergreen Tree growing to 15 m (49ft) by 7 m (23ft) at a medium rate.
See above for USDA hardiness. It is hardy to UK zone 8. It is in leaf all year, and the seeds ripen in April. The species is monoecious (individual flowers are either male or female, but both sexes can be found on the same plant) and is pollinated by Wind. The plant is not self-fertile.
Suitable for: light (sandy) and medium (loamy) soils, prefers well-drained soil and can grow in nutritionally poor soil. Suitable pH: mildly acid, neutral and basic (mildly alkaline) soils and can grow in very alkaline soils.
It cannot grow in the shade. It prefers dry or moist soil and can tolerate drought. The plant can tolerates strong winds but not maritime exposure.
UK Hardiness Map
US Hardiness Map
Synonyms
Pinus abasica. Pinus arabica. Pinus maritima. Pinus parolinii.
Habitats
Woodland Garden Canopy;
Edible Uses
Edible Parts:
Edible Uses: Condiment Gum
A resin from the trunk is used for chewing and for flavouring wine[177, 200]. A vanillin flavouring is obtained as a by-product of other resins that are released from the pulpwood[200].
References More on Edible Uses
Medicinal Uses
Plants For A Future can not take any responsibility for any adverse effects from the use of plants. Always seek advice from a professional before using a plant medicinally.
The turpentine obtained from the resin of all pine trees is antiseptic, diuretic, rubefacient and vermifuge[4]. It is a valuable remedy used internally in the treatment of kidney and bladder complaints and is used both internally and as a rub and steam bath in the treatment of rheumatic affections[4]. It is also very beneficial to the respiratory system and so is useful in treating diseases of the mucous membranes and respiratory complaints such as coughs, colds, influenza and TB[4]. Externally it is a very beneficial treatment for a variety of skin complaints, wounds, sores, burns, boils etc and is used in the form of liniment plasters, poultices, herbal steam baths and inhalers[4].
References More on Medicinal Uses
Now available: PLANTS FOR YOUR FOOD FOREST: 500 Plants for Temperate Food Forests and Permaculture Gardens.
An important new book from PFAF. It focuses on the attributes of plants suitable for food forests, what each can contribute to a food forest ecosystem, including carbon sequestration, and the kinds of foods they yield. The book suggests that community and small-scale food forests can provide a real alternative to intensive industrialised agriculture, and help to combat the many inter-related environmental crises that threaten the very future of life on Earth.
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Other Uses
Dye Gum Herbicide Resin Shelterbelt Soil stabilization Tannin Wood
A tan or green dye is obtained from the needles[168]. The needles contain a substance called terpene, this is released when rain washes over the needles and it has a negative effect on the germination of some plants, including wheat[201]. A fairly wind-tolerant tree, it can be used in shelterbelt plantings[200]. 'Greek turpentine' is obtained from the stems[46, 61, 171].Oleo-resins are present in the tissues of all species of pines, but these are often not present in sufficient quantity to make their extraction economically worthwhile[64]. The resins are obtained by tapping the trunk, or by destructive distillation of the wood[4, 64]. In general, trees from warmer areas of distribution give the higher yields[64]. Turpentine consists of an average of 20% of the oleo-resin[64] and is separated by distillation[4, 64]. Turpentine has a wide range of uses including as a solvent for waxes etc, for making varnish, medicinal etc[4]. Rosin is the substance left after turpentine is removed. This is used by violinists on their bows and also in making sealing wax, varnish etc[4]. Pitch can also be obtained from the resin and is used for waterproofing, as a wood preservative etc. Trees have an extensive root system and they are planted on sand dunes in order to stabilize them[81]. Wood - of mediocre quality. Used for rough construction[100]. A tannin is obtained from the bark[100].
Special Uses
Carbon Farming
References More on Other Uses
Cultivation details
Industrial Crop: Hydrocarbon Management: Standard Regional Crop
Landscape Uses:Aggressive surface roots possible, Screen, Specimen. Thrives in a light well-drained sandy or gravelly loam[1, 11]. Dislikes poorly drained moorland soils[1]. Established plants are very tolerant of drought[81, 200], they succeed in poor chalky soils and also in poor dry sandy soils[166]. Fairly wind-resistant[200]. Plants are not very successful in Britain[1]. They are tender when young but are then fully hardy[11]. Plants are strongly outbreeding, self-fertilized seed usually grows poorly[200]. They hybridize freely with other members of this genus[200]. Leaf secretions inhibit the germination of seeds, thereby reducing the amount of pants that can grow under the tree[18]. Plants in this genus are notably susceptible to honey fungus[200]. Special Features:
Attractive foliage, Not North American native, Inconspicuous flowers or blooms.
Carbon Farming
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Industrial Crop: Hydrocarbon
Materials, chemicals and energy include bioplastics, rubber, biomass products gasoline, jet fuel, diesel, butane, propane, biogas. Plants are usually resprouting plants and saps.
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Management: Standard
Plants grow to their standard height. Harvest fruit, seeds, or other products. Non-Destructive management systems.
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Regional Crop
These crops have been domesticated and cultivated regionally but have not been adopted elsewhere and are typically not traded globally, Examples in this broad category include perennial cottons and many nuts and staple fruits.
References Carbon Farming Information and Carbon Sequestration Information
Temperature Converter
Type a value in the Celsius field to convert the value to Fahrenheit:
Fahrenheit:
The PFAF Bookshop
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Propagation
It is best to sow the seed in individual pots in a cold frame as soon as it is ripe if this is possible otherwise in late winter. A short stratification of 6 weeks at 4°c can improve the germination of stored seed[80]. Plant seedlings out into their permanent positions as soon as possible and protect them for their first winter or two[11]. Plants have a very sparse root system and the sooner they are planted into their permanent positions the better they will grow[K]. Trees should be planted into their permanent positions when they are quite small, between 30 and 90cm[200]. We actually plant them out when they are about 5 - 10cm tall. So long as they are given a very good weed-excluding mulch they establish very well[K]. Larger trees will check badly and hardly put on any growth for several years. This also badly affects root development and wind resistance[200]. Cuttings. This method only works when taken from very young trees less than 10 years old. Use single leaf fascicles with the base of the short shoot. Disbudding the shoots some weeks before taking the cuttings can help. Cuttings are normally slow to grow away[81].
Other Names
If available other names are mentioned here
Native Plant Search
Search over 900 plants ideal for food forests and permaculture gardens. Filter to search native plants to your area. The plants selected are the plants in our book 'Plants For Your Food Forest: 500 Plants for Temperate Food Forests and Permaculture Gardens, as well as plants chosen for our forthcoming related books for Tropical/Hot Wet Climates and Mediterranean/Hot Dry Climates. Native Plant Search
Found In
Countries where the plant has been found are listed here if the information is available
Weed Potential
Right plant wrong place. We are currently updating this section.
Please note that a plant may be invasive in one area but may not in your area so it’s worth checking.
Conservation Status
IUCN Red List of Threatened Plants Status :
Related Plants
|
Latin Name | Common Name | Habit | Height | Hardiness | Growth | Soil | Shade | Moisture | Edible | Medicinal | Other |
Acinos alpinus | Alpine Calamint | Perennial | 0.5 |
4-8
| | LMH | N | DM | 1 | 1 | |
Carpinus betulus | Hornbeam, European hornbeam, Common Hornbeam, European Hornbeam | Tree | 25.0 |
5-7
| M | LMH | FSN | M | 0 | 2 | 3 |
Carpinus caroliniana | American Hornbeam, Blue Beech, Ironwood, American Hornbeam | Tree | 12.0 |
3-9
| S | LMH | SN | M | 1 | 1 | 2 |
Carpinus cordata | | Tree | 15.0 |
4-8
| S | LMH | SN | M | 0 | 0 | 2 |
Carpinus laxiflora | | Tree | 15.0 |
4-8
| | LMH | SN | M | 0 | 0 | 2 |
Lupinus albus | White Lupin | Annual | 1.2 |
0-0
| | LM | N | M | 4 | 1 | 4 |
Lupinus albus graecus | | Annual | 1.0 |
0-0
| | LMH | N | DM | 4 | 0 | 3 |
Lupinus angustifolius | Blue Lupin, Narrowleaf lupine | Annual | 1.0 |
7-9
| | LM | N | M | 4 | 0 | 4 |
Lupinus arboreus | Tree Lupin, Yellow bush lupine | Shrub | 1.5 |
7-10
| F | LM | N | DM | 0 | 0 | 5 |
Lupinus hirsutus | | Annual | 0.0 |
0-0
| | LMH | N | M | 2 | 0 | 3 |
Lupinus littoralis | Seashore Lupine | Perennial | 0.5 |
6-9
| | LMH | N | M | 2 | 0 | 3 |
Lupinus luteus | Yellow Lupin, European yellow lupine | Annual | 0.6 |
5-9
| | LM | N | M | 3 | 0 | 3 |
Lupinus mutabilis | Pearl Lupin, Tarwi | Annual | 1.5 |
8-11
| | LMH | N | M | 5 | 0 | 4 |
Lupinus nootkatensis | Blue Lupine, Nootka lupine | Perennial | 0.7 |
4-8
| | LMH | N | M | 3 | 0 | 3 |
Lupinus perennis | Sundial Lupine | Perennial | 0.6 |
4-8
| | LM | N | DM | 3 | 1 | 3 |
Lupinus polyphyllus | Big-Leaf Lupin, Lupine | Perennial | 1.5 |
5-9
| M | LMH | N | M | 1 | 1 | 4 |
Lupinus tauris | | Shrub | 0.0 |
0-0
| | LM | N | DM | 0 | 0 | 3 |
Lupinus termis | White Lupin | Annual | 1.0 |
0-0
| | LMH | N | M | 2 | 0 | 3 |
Phyllocladus alpinus | Alpine Celery Pine | Shrub | 9.0 |
7-10
| S | LMH | SN | M | 0 | 0 | 1 |
Pinus albicaulis | White-Bark Pine | Tree | 20.0 |
4-8
| S | LM | N | DM | 4 | 2 | 3 |
Pinus aristata | Bristle-Cone Pine | Tree | 12.0 |
3-10
| S | LM | N | DM | 2 | 2 | 2 |
Pinus armandii | Chinese White Pine, Armand pine | Tree | 15.0 |
6-9
| M | LM | N | DM | 4 | 2 | 2 |
Pinus ayacahuite | Mexican White Pine | Tree | 55.0 |
6-9
| | LM | N | DM | 2 | 2 | 3 |
Pinus banksiana | Jack Pine | Tree | 12.0 |
2-7
| F | LM | N | DM | 2 | 2 | 3 |
Pinus brutia | Calabrian pine, Turkish pine | Tree | 30.0 |
7-11
| F | LMH | N | DM | 2 | 3 | 3 |
Pinus bungeana | Lace-Bark Pine, Bunge's pine | Tree | 10.0 |
4-7
| S | LM | N | DM | 3 | 2 | 3 |
Pinus californiarum | | Tree | 10.0 |
8-11
| | LM | N | DM | 1 | 2 | 3 |
Pinus caribaea | Caribbean Pine. Caribbean pitch pine | Tree | 30.0 |
10-12
| F | LM | N | DM | 2 | 2 | 3 |
Pinus cembra | Swiss Stone Pine, Swiss Pine, Arolla Pine | Tree | 15.0 |
3-9
| S | LMH | SN | DM | 4 | 2 | 3 |
Pinus cembra sibirica | Siberian Pine | Tree | 30.0 |
1-6
| S | LM | N | DM | 4 | 2 | 3 |
|
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Growth: S = slow M = medium F = fast. Soil: L = light (sandy) M = medium H = heavy (clay). pH: A = acid N = neutral B = basic (alkaline). Shade: F = full shade S = semi-shade N = no shade. Moisture: D = dry M = Moist We = wet Wa = water.
Expert comment
Author
Mill.
Botanical References
1150200
Links / References
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Readers comment
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