Electrification Opportunities in the Medium- and Heavy-Duty Vehicle Segment in Canada †
Abstract
:1. Introduction
2. Methodology
3. Results of Short Feasibility Studies
3.1. Perspective on the Results
3.2. Buses
3.3. Trucks
3.4. Construction Vehicles
3.5. Sensitivity for the Price of Electricity and for Hydrogen
4. Conclusions
Author Contributions
Funding
Conflicts of Interest
References
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Short Biography of Authors
| |
| |
| |
|
Weight Class (For On-Road Vehicles) | Fleet Size | |
---|---|---|
Inter-city bus | 8 | 9000 [20] |
City bus | 8 | 30,000 [20] |
School bus | 7 | 50,000 [20,21,22] |
Courier vehicle | 4–6 | 7000 [23,24,25] |
Refuse truck | 8 | 14,000 [26] |
Long-haul truck | 8 | 200,000 [27] |
Construction vehicles (off-road) | ||
Small excavator | Unknown | |
Large excavator | Unknown |
Battery Electric | Stage of Development | Hydrogen Fuel Cell | Stage of Development | |
---|---|---|---|---|
Inter-city bus | X | Pilot | X | Concept |
City bus | X | Pilot/Commercial | X | Prototype |
School bus | X | Pilot | ||
Courier vehicle | X | Pilot | ||
Refuse truck | X | Pilot | X | Prototype |
Long-haul truck | X | Prototype | X | Prototype |
Small excavator | X | Prototype | X | Concept |
Large excavator | X | Concept | X | Concept |
Level 2 | Level 3–50 kW | Level 3–150 kW | |
---|---|---|---|
Charge power (kW) | 15 | 50 | 150 |
Purchase ($) | 4159 | 37,773 | 186,200 |
Installation ($) | 3773 | 23,530 | 24,707 |
Total investment ($) | 7932 | 61,304 | 210,907 |
Typical annual usage (kWh) | 17,500 | 70,000 | 200,000 |
Capital costs per kWh ($/kWh) * | 0.047 | 0.084 | 0.099 |
Fuel Type or Charge Level | Cost |
---|---|
Fuel costs ($/L diesel) | 1.20 |
Electricity costs (Level 2 charging–up to 15 kW, $/kWh) | 0.20 |
Electricity costs (Level 3 charging–50 kW, $/kWh) | 0.25 |
Electricity costs (Level 3 charging–150 kW, $/kWh) | 0.25 |
Electricity costs (Megawatt charging–1000 kW, $/kWh) | 0.50 |
Hydrogen ($/kg) | 15 |
School Bus | City Bus | Inter-City Bus | ||||||
---|---|---|---|---|---|---|---|---|
Diesel | Electric | Diesel | Electric | H2 Fuel Cell | Diesel | Electric | H2 Fuel Cell | |
Distance driven (km/year) | 18,000 | 18,000 | 60,000 | 60,000 | 60,000 | 40,000 | 40,000 | 40,000 |
Operating days per year | 180 | 180 | 300 | 300 | 300 | 200 | 200 | 200 |
Daily distance (km/day) | 100 | 100 | 200 | 200 | 200 | 200 | 200 | 200 |
Fuel consumption (L/100 km) | 34 | 64 | 39 | |||||
Fuel consumption (L/year) | 6120 | 38,400 | 15,600 | |||||
Daily fuel consumption (L/day) | 34 | 128 | 78 | |||||
Electricity consumption (kWh/km) | 0.88 | 1.2 | 1.6 | |||||
Electricity consumption (kWh/year) | 15,840 | 72,000 | 64,000 | |||||
Daily electricity consumption (kWh/day) | 88 | 240 | 320 | |||||
Recommended battery size (kWh) | 120 | 300 | 360 | |||||
Recharging period (h/day) | 12 | 6 | 10 | |||||
Minimum charge power (kW) | 8 | 40 | 32 | |||||
Recommended charge power (kW) | 15 | 50 | 50 | |||||
H2 consumption (kg/100 km) | 10 | 13 | ||||||
H2 consumption (kg/year) | 6000 | 5200 | ||||||
Daily H2 consumption (kg/day) | 20 | 26 | ||||||
Price of fuel ($/L, $/kWh, $/kg) | 1.20 | 0.20 | 1.20 | 0.25 | 15 | 1.20 | 0.25 | 15 |
Fuel costs ($) | 7344 | 3168 | 46,080 | 18,000 | 90,000 | 18,720 | 16,000 | 78,000 |
Maintenance costs ($) | 12,780 | 9000 | 50,000 | 30,000 | 30,000 | 30,000 | 18,000 | 18,000 |
Operational costs ($) | 20,124 | 12,168 | 96,080 | 48,000 | 120,000 | 48,720 | 34,000 | 96,000 |
Cost saving ($) | 7956 | 48,080 | −23,920 | 14,720 | −47,280 | |||
Cost savings (%) | 40% | 50% | −25% | 30% | −97% | |||
GHG emissions (tonnes CO2eq) | 16.5 | 2.4 | 103.7 | 10.8 | 47.4 | 42.1 | 9.6 | 41.1 |
Emission reduction (tonnes CO2eq) | 14.1 | 92.9 | 56.3 | 32.5 | 1.0 | |||
Emission reduction (%) | 86% | 90% | 54% | 77% | 2% |
Courier/Step Van | Refuse Truck | Long-Haul Truck | ||||||
---|---|---|---|---|---|---|---|---|
Diesel | Electric | Diesel | Electric | H2 Fuel Cell | Diesel | Electric | H2 Fuel Cell | |
Distance driven (km/year) | 24,000 | 24,000 | 25,000 | 25,000 | 25,000 | 150,000 | 150,000 | 150,000 |
Operating days per year | 300 | 300 | 250 | 250 | 250 | 250 | 250 | 250 |
Daily distance (km/day) | 80 | 80 | 100 | 100 | 100 | 600 | 600 | 600 |
Fuel consumption (L/100 km) | 32 | 84 | 39 | |||||
Fuel consumption (L/year) | 7680 | 21,000 | 58,500 | |||||
Daily fuel consumption (L/day) | 26 | 84 | 234 | |||||
Electricity consumption (kWh/km) | 0.8 | 2.5 | 2.0 | |||||
Electricity consumption (kWh/year) | 19,200 | 62,500 | 300,000 | |||||
Daily electricity consumption (kWh/day) | 64 | 250 | 1200 | |||||
Recommended battery size (kWh) | 100 | 300 | 800 | |||||
Recharging period (hr/day) | 10 | 10 | 8 | |||||
Minimum charge power (kW) | 7 | 25 | 100 | |||||
Recommended charge power (kW) | 15 | 50 | 150/1000 mixed | |||||
H2 consumption (kg/100 km) | 21.0 | 10.0 | ||||||
H2 consumption (kg/year) | 5250 | 15,000 | ||||||
Daily H2 consumption (kg/day) | 21 | 60 | ||||||
Price of fuel ($/L, $/kWh, $/kg) | 1.20 | 0.20 | 1.20 | 0.25 | 15 | 1.20 | 0.35 | 15 |
Fuel costs ($) | 9216 | 3840 | 25,200 | 15,625 | 78,750 | 70,200 | 105,000 | 225,000 |
Maintenance costs ($) | 4800 | 2880 | 15,000 | 3000 | 3000 | 18,700 | 9400 | 9400 |
Operational costs ($) | 14,016 | 6720 | 40,200 | 18,625 | 81,750 | 88,900 | 114,400 | 234,400 |
Cost saving ($) | 7296 | 21,575 | −41,550 | −25,500 | −145,500 | |||
Cost savings (%) | 52% | 54% | −103% | −29% | −164% | |||
GHG emissions (tCO2eq) | 20.7 | 2.9 | 56.7 | 9.4 | 41.5 | 158.0 | 45.0 | 118.5 |
Emission reduction (tCO2eq) | 17.9 | 47.3 | 15.2 | 113.0 | 39.5 | |||
Emission reduction (%) | 86% | 83% | 27% | 72% | 25% |
Small Excavator | Large Excavator | |||||
---|---|---|---|---|---|---|
Diesel | Electric | Hydrogen | Diesel | Electric | Hydrogen | |
Equivalent full load hours | 1000 | 1000 | 1000 | 1000 | 1000 | 1000 |
Fuel consumption (L/h) | 2.55 | 39.6 | ||||
Fuel consumption (L) | 2550 | 39,600 | ||||
Electricity consumption (kWh/h) | 6.3 | 98 | ||||
Electricity consumption (kWh) | 6300 | 98,000 | ||||
H2 consumption (kg/h) | 0.38 | 5.9 | ||||
H2 consumption (kg) | 380 | 5900 | ||||
Price of fuel ($/L, $/kWh, $/kg) | 1.20 | 0.35 | 18 | 1.20 | 0.50 | 18 |
Fuel costs ($) | 3060 | 2205 | 6840 | 47,520 | 49,000 | 106,200 |
Maintenance costs ($) | 1900 | 1520 | 1520 | 10,200 | 8160 | 8160 |
Operational costs ($) | 4960 | 3725 | 8360 | 57,720 | 57,160 | 114,360 |
Cost saving ($) | 1235 | −3400 | 560 | −56,640 | ||
Cost savings (%) | 25% | −69% | 1% | −98% | ||
GHG emissions (tonnes CO2eq) | 6.9 | 0.9 | 3.0 | 106.9 | 14.7 | 46.6 |
Emission reduction (tonnes CO2eq) | 5.9 | 3.9 | 92.2 | 60.3 | ||
Emission reduction (%) | 86% | 56% | 86% | 56% |
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Ribberink, H.; Wu, Y.; Lombardi, K.; Yang, L. Electrification Opportunities in the Medium- and Heavy-Duty Vehicle Segment in Canada. World Electr. Veh. J. 2021, 12, 86. https://doi.org/10.3390/wevj12020086
Ribberink H, Wu Y, Lombardi K, Yang L. Electrification Opportunities in the Medium- and Heavy-Duty Vehicle Segment in Canada. World Electric Vehicle Journal. 2021; 12(2):86. https://doi.org/10.3390/wevj12020086
Chicago/Turabian StyleRibberink, Hajo, Yinghai Wu, Kathleen Lombardi, and Libing Yang. 2021. "Electrification Opportunities in the Medium- and Heavy-Duty Vehicle Segment in Canada" World Electric Vehicle Journal 12, no. 2: 86. https://doi.org/10.3390/wevj12020086
APA StyleRibberink, H., Wu, Y., Lombardi, K., & Yang, L. (2021). Electrification Opportunities in the Medium- and Heavy-Duty Vehicle Segment in Canada. World Electric Vehicle Journal, 12(2), 86. https://doi.org/10.3390/wevj12020086