Energy consumption; components, branch, 2011-2016
| Energy commodities | Sector / branches (SIC 2008) | Periods | From consumption Total energy consumption (PJ) | From consumption Final energy consumption (PJ) | From consumption Non-energy use (PJ) | From consumption Energy transformation Net energy transformation (PJ) | From consumption Energy transformation Energy transformation input (PJ) | From consumption Energy transformation Energy transformation output (-) (PJ) | From supply Total energy consumption (PJ) | From supply Indigenous production (PJ) | From supply Supply of energy (PJ) | From supply Delivery of energy (-) (PJ) | From supply Stock change (PJ) |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Total energy commodities | 101 Slaughtering, processing of meat | 2016** | 6.3 | 6.3 | 6.3 | 6.3 | 0.0 | ||||||
| Total energy commodities | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Total energy commodities | 103 Processing of vegetables and fruit | 2016** | 9.9 | 9.7 | 0.3 | 1.6 | 1.3 | 9.9 | 0.2 | 10.7 | 0.9 | ||
| Total coal and coal products | 101 Slaughtering, processing of meat | 2016** | |||||||||||
| Total coal and coal products | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Total coal and coal products | 103 Processing of vegetables and fruit | 2016** | |||||||||||
| Primary coals | 101 Slaughtering, processing of meat | 2016** | |||||||||||
| Primary coals | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Primary coals | 103 Processing of vegetables and fruit | 2016** | |||||||||||
| Total coal products | 101 Slaughtering, processing of meat | 2016** | |||||||||||
| Total coal products | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Total coal products | 103 Processing of vegetables and fruit | 2016** | |||||||||||
| Total crude and petroleum products | 101 Slaughtering, processing of meat | 2016** | 0.0 | 0.0 | 0.0 | 0.0 | 0.0 | ||||||
| Total crude and petroleum products | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Total crude and petroleum products | 103 Processing of vegetables and fruit | 2016** | 0.0 | 0.0 | 0.0 | 0.0 | |||||||
| Total crude | 101 Slaughtering, processing of meat | 2016** | |||||||||||
| Total crude | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Total crude | 103 Processing of vegetables and fruit | 2016** | |||||||||||
| Total petroleum products | 101 Slaughtering, processing of meat | 2016** | 0.0 | 0.0 | 0.0 | 0.0 | 0.0 | ||||||
| Total petroleum products | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Total petroleum products | 103 Processing of vegetables and fruit | 2016** | 0.0 | 0.0 | 0.0 | 0.0 | |||||||
| Residual gas | 101 Slaughtering, processing of meat | 2016** | |||||||||||
| Residual gas | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Residual gas | 103 Processing of vegetables and fruit | 2016** | |||||||||||
| Lpg | 101 Slaughtering, processing of meat | 2016** | 0.0 | 0.0 | 0.0 | 0.0 | |||||||
| Lpg | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Lpg | 103 Processing of vegetables and fruit | 2016** | 0.0 | 0.0 | 0.0 | 0.0 | |||||||
| Naphtha | 101 Slaughtering, processing of meat | 2016** | |||||||||||
| Naphtha | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Naphtha | 103 Processing of vegetables and fruit | 2016** | |||||||||||
| Motor gasoline | 101 Slaughtering, processing of meat | 2016** | |||||||||||
| Motor gasoline | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Motor gasoline | 103 Processing of vegetables and fruit | 2016** | |||||||||||
| Kerosene type jet fuel | 101 Slaughtering, processing of meat | 2016** | |||||||||||
| Kerosene type jet fuel | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Kerosene type jet fuel | 103 Processing of vegetables and fruit | 2016** | |||||||||||
| Heating and other gasoil | 101 Slaughtering, processing of meat | 2016** | 0.0 | 0.0 | 0.0 | 0.0 | 0.0 | ||||||
| Heating and other gasoil | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Heating and other gasoil | 103 Processing of vegetables and fruit | 2016** | 0.0 | 0.0 | 0.0 | 0.0 | |||||||
| Fuel oil | 101 Slaughtering, processing of meat | 2016** | |||||||||||
| Fuel oil | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Fuel oil | 103 Processing of vegetables and fruit | 2016** | |||||||||||
| Other petroleum products | 101 Slaughtering, processing of meat | 2016** | |||||||||||
| Other petroleum products | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Other petroleum products | 103 Processing of vegetables and fruit | 2016** | |||||||||||
| Natural gas | 101 Slaughtering, processing of meat | 2016** | 2.6 | 2.6 | 2.6 | 2.6 | |||||||
| Natural gas | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Natural gas | 103 Processing of vegetables and fruit | 2016** | 7.4 | 5.8 | 1.5 | 1.5 | 7.4 | 7.4 | |||||
| Total renewable energy | 101 Slaughtering, processing of meat | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Total renewable energy | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Total renewable energy | 103 Processing of vegetables and fruit | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Hydro power | 101 Slaughtering, processing of meat | 2016** | |||||||||||
| Hydro power | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Hydro power | 103 Processing of vegetables and fruit | 2016** | |||||||||||
| Geothermal heat | 101 Slaughtering, processing of meat | 2016** | |||||||||||
| Geothermal heat | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Geothermal heat | 103 Processing of vegetables and fruit | 2016** | |||||||||||
| Solar energy | 101 Slaughtering, processing of meat | 2016** | . | . | . | . | |||||||
| Solar energy | 102 Processing of fish | 2016** | . | . | . | . | |||||||
| Solar energy | 103 Processing of vegetables and fruit | 2016** | . | . | . | . | |||||||
| Wind energy | 101 Slaughtering, processing of meat | 2016** | . | . | . | . | |||||||
| Wind energy | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Wind energy | 103 Processing of vegetables and fruit | 2016** | . | . | . | . | |||||||
| Biomass | 101 Slaughtering, processing of meat | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Biomass | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Biomass | 103 Processing of vegetables and fruit | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Nuclear energy | 101 Slaughtering, processing of meat | 2016** | |||||||||||
| Nuclear energy | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Nuclear energy | 103 Processing of vegetables and fruit | 2016** | |||||||||||
| Waste and other energy sources | 101 Slaughtering, processing of meat | 2016** | |||||||||||
| Waste and other energy sources | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Waste and other energy sources | 103 Processing of vegetables and fruit | 2016** | |||||||||||
| Electricity | 101 Slaughtering, processing of meat | 2016** | 3.0 | 3.0 | 3.0 | 3.0 | |||||||
| Electricity | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Electricity | 103 Processing of vegetables and fruit | 2016** | 2.1 | 2.5 | -0.4 | 0.0 | 0.4 | 2.1 | 2.4 | 0.3 | |||
| Heat | 101 Slaughtering, processing of meat | 2016** | 0.7 | 0.7 | 0.7 | 0.7 | |||||||
| Heat | 102 Processing of fish | 2016** | . | . | . | . | . | . | . | . | . | . | . |
| Heat | 103 Processing of vegetables and fruit | 2016** | 0.2 | 1.2 | -1.0 | 1.0 | 0.2 | 0.9 | 0.7 | ||||
| Source: CBS. | |||||||||||||
Table explanation
This table shows the consumption of energy of companies broken down by branche based on the Standard Industrial Classification (SIC 2008). Consumption of energy can calculated in two ways. First from a consumption perspective. Consumption is final energy consumption plus non-energy use plus net energy transformation. The latter is the amount of energy lost during the transformation of energy commodities. Second from a supply perspective. Energy consumption is indigenous production plus supply minus delivery of energy plus stock change. The result of these two calculation perspectives is the same. The table also shows energy transformation input (the amount of energy used to produce other energy commodities) and energy transformation output (the amount of energy transformed from another energy commodity).
Data available from: 2011.
Status of the figures:
Figures up to 2014 are definite. Figures of 2015 and 2016 are revised provisional.
Changes as of 23 March 2018:
None, this table has been discontinued.
The successor of this table is 'Energy balance sheet; supply and consumption, sector'. See section 3.
Changes as of 27 December 2017
Figures for 2015 and 2016 have been adjusted.
Figures for 2011 up to and including 2014 have been revised. See section 4 for explanations.
When will new figures be published?
Not applicable.
Description topics
- From consumption
- Calculated from consumption energy consumption is final energy consumption plus non-energy use plus net energy transformation.
- Total energy consumption
- The amount of energy used by companies, households and transport in the Netherlands. Energy can be used
- for transformation into other energy commodities, this is input minus the energy produced.
- as final consumption.
Energy consumption is final energy consumption plus non-energy use plus net energy transformation.
- Final energy consumption
- Final consumption of energy. No useful energy commodity remains.
Examples are the combustion of natural gas in boilers, household electricity consumption and the consumption of motor fuels for transport.
- Non-energy use
- Use of an energy commodity for a product that is not energy. The energy used for the production process remains in the product. E.g. use of oil for the production of plastics, or natural gas for fertilisers.
- Energy transformation
- Transformation of one energy commodity into another. This may be a transformation from a fuel into heat or power. It may also be a physical processing of one fuel into another, like the transformation of crude oil into motor gasoline.
- Net energy transformation
- The difference between transformation input and transformation output.
Net energy transformation is the sum of:
- Electricity/CHP transformation
- Other transformation.
For primary energy commodities, like natural gas and coal, net transformation is always positive. For secondary energy commodities, like electricity or gasoline it is always negative. Obviously, the output for these commodities is higher than the input. For the total of energy commodities, this is the amount of energy lost during the transformation of energy commodities.
- Energy transformation input
- The amount of energy used to produce other energy commodities. This may be a transformation from a fuel into heat or power. It may also be a physical processing of one fuel into another, like the transformation of crude oil into motor gasoline.
- Energy transformation output (-)
- The amount of energy transformed from another energy commodity. This may be heat or power made from another fuel. It may also be the production of a fuel by a physical processing of another fuel, e.g. production of motor gasoline from crude oil.
- From supply
- Calculated from supply energy consumption is indigenous production plus supply of energy minus delivery of energy plus stock change.
- Total energy consumption
- The amount of energy used by companies, households and transport in the Netherlands. Energy can be used
- for transformation into other energy commodities, this is input minus the energy produced.
- as final consumption.
Energy consumption is indigenous production plus supply of energy minus delivery of energy plus stock change.
- Indigenous production
- Extraction of energy commodities from nature.
Fossil energy commodities - coal, crude oil and natural gas - are extracted from the earth. Renewable commodities include wind energy and biomass. Other commodities include, for example, nuclear energy and energy from waste.
- Supply of energy
- Energy imported, bought or received in the Netherlands.
- Delivery of energy (-)
- Energy exported, sold or delivered in the Netherlands.
- Stock change
- Changes in stock are calculated as opening stock minus closing stock, in accordance with international energy statistics guidelines. A positive figure means that stocks have decreased, and the supply of energy has thus increased. A negative figure means the opposite: an increase in stocks and a decrease in consumption.