| Hectoliters (hL) | Kiloliters (kL) |
|---|---|
| 1 Hectoliter | 0.1 kL |
| 2 Hectoliters | 0.2 kL |
| 3 Hectoliters | 0.3 kL |
| 4 Hectoliters | 0.4 kL |
| 5 Hectoliters | 0.5 kL |
| 10 Hectoliters | 1 kL |
| 20 Hectoliters | 2 kL |
| 25 Hectoliters | 2.5 kL |
| 50 Hectoliters | 5 kL |
| 100 Hectoliters | 10 kL |
| Reference | Hectoliters (hL) | Kiloliters (kL) |
|---|---|---|
| A teaspoon | 0.00005 hL | 0.000005 kL |
| A can of soft drink | 0.0033 hL | 0.00033 kL |
| A wine bottle | 0.0075 hL | 0.00075 kL |
| A bathtub | 1.5 hL | 0.15 kL |
| An Olympic swimming pool | 25000 hL | 2500 kL |
The hectolitre is a unit of volume equal to one hundred litres, or a tenth of a cubic metre. Its symbol is hL. It is the trading unit of the drinks industry and of much of agriculture, and although almost nobody outside those trades ever writes it, within them it is the number that appears on every contract, licence and annual report.
Brewing runs on it entirely. A brewery's capacity is stated in hectolitres a year, duty is assessed on hectolitres produced, and the large international groups report annual volumes in hundreds of millions of them. A standard keg holds half a hectolitre, so the unit also happens to match the physical container the trade moves, which is part of why it stuck.
Wine regulation is written in the same terms. European appellation rules cap yield in hectolitres per hectare, a figure that does more than any other single number to define the character of an appellation, since a low cap concentrates the fruit and a high one dilutes it. Production statistics, stocks and the surpluses that periodically trouble the European market are all counted the same way.
Grain trading uses the unit in an unexpected direction. The hectolitre weight, or test weight, is the mass of grain that fills one hectolitre, and it is a standard quality specification: milling wheat is typically bought at 76 to 80 kilograms per hectolitre, and a load below the contracted figure is downgraded. The measurement works because well-filled, undamaged grain packs more densely than shrivelled grain does.
Dairy and other bulk liquids follow. Milk collection, fruit juice processing, edible oil and cider are all recorded in hectolitres, because the quantities involved are too large for litres to read comfortably and too small for cubic metres to be precise enough for duty and quality purposes.
For scale, a hectolitre is a large domestic water tank, a household bath filled about one and a half times, or a barrel of oil and a half. It converts to 22 imperial gallons or 26.4 United States gallons, and to 0.1 cubic metres exactly, which is the quickest route into SI-based calculations.
One hectolitre equals 100 litres, 0.1 cubic metres, about 26.4 US gallons, or about 22 imperial gallons.
The kilolitre is a unit of volume equal to one thousand litres, and therefore exactly one cubic metre. Its symbol is kL. The two names describe the same quantity, and which one appears depends entirely on the trade and the country: water utilities in the southern hemisphere say kilolitre where European ones say cubic metre.
Household water is where most people meet it. Australian, New Zealand and South African water bills are issued in kilolitres, tariffs are set as a price per kilolitre with rising blocks for heavier use, and drought restrictions are expressed as an allowance of so many kilolitres per household per quarter. A typical family uses between fifty and two hundred a year, so the annual bill fits in three digits.
Because the unit equals a cubic metre, it also carries an unusually direct physical meaning. A kilolitre of water weighs one tonne and would fill a cube one metre on each side, so a household allowance of a hundred kilolitres is a hundred tonnes of water, delivered, pumped and treated. Stating it that way is one reason the unit appears in conservation campaigns as often as on invoices.
Bulk liquid logistics uses it for cargo. A flexible tank fitted inside a shipping container carries around twenty-four kilolitres of wine, juice or edible oil, road tankers are rated in kilolitres, and depot storage is planned in thousands of them. Japanese petroleum statistics are published in kilolitres rather than in barrels, which makes Japanese energy figures awkward to compare with those of countries that use the barrel.
Industry generally prefers the cubic metre for the same quantity, because it is the coherent SI form and because it multiplies cleanly with metres of head, square metres of surface and other dimensional quantities. The kilolitre survives where the substance being measured is a liquid sold to the public, which is exactly where a name containing the word litre reads more naturally.
Converting is trivial in one direction and awkward in the other. One kilolitre is one cubic metre exactly and a thousand litres exactly, but 264.2 United States gallons and 220 imperial gallons, and about 6.29 barrels of oil, none of which are round numbers.
One kilolitre equals 1000 litres, 1 cubic metre, about 264.2 US gallons, or about 220 imperial gallons.