An LED retrofit cuts CO2. It uses less power from the grid. Here is the main math:
CO2 Cut (tons) = kWh Saved × Grid Rate (kg CO2 per kWh) ÷ 1,000
This works for any job size. Use it for one LED retrofit kit. Use it for a full retrofit LED lights rollout too. Site teams, small business owners, and green teams can all use it. You get a clear number for reports and pitches. This number can back up green claims. It can also help you track real progress over time.
An LED retrofit swaps old bulbs for LED ones. You keep the same housing. You keep the same wires. A recessed light LED retrofit kit slides into an old can. This LED recessed retrofit swaps the old bulb for an LED part. Retrofit LED can lights use 65-85% less power. They give the same or better light.
A retrofit is fast. It is cheap. You reuse what you have. This is why most sites start here. You skip long build times. You skip big crews. You get lower bills fast.
You multiply watts by hours, then find your power use. Do this twice. Once for old lights. Once for new LED lights. Then take one from the other.
Use the same steps. Say each LED kit is 12 watts.
kWh Saved = Old kWh − New kWh. So: 46,800 − 8,640 = 38,160 kWh saved a year. You will use this next.
Use the CO2 rate for your own power grid. Do not use a flat U.S. rate. Grids differ by place. Some use coal. Some use hydro. Some use wind.
| Place | Source | Unit |
|---|---|---|
| U.S. (local) | EPA eGRID, by ZIP code | lbs CO2/MWh |
| U.S. (whole) | EPA GHG Tool | lbs CO2/kWh |
| Canada | Canada’s own report | kg CO2e/kWh |
| EU | EU Green Agency | g CO2/kWh |
| UK | UK Govt GHG Facts | kg CO2e/kWh |
| Global | World Energy Agency | g CO2/kWh |
The EPA says 823.1 lbs CO2 per MWh made. With grid loss, this grows to about 867.5 lbs per MWh sent out. Use this as a start. But check your own zone rate for the real number. Zone rates can be way off from the U.S. rate.
A coal zone may top 1.5 lbs CO2 per kWh. A hydro zone may be under 0.3 lbs. The same 38,160 kWh saved gives far different CO2 totals in each zone. Always list your zone name and year in a report.
The math is: CO2 Cut (tons) = kWh Saved × Rate (kg CO2/kWh) ÷ 1,000.
U.S. data comes in pounds. The math needs kg. You must switch units first. Skipping this step is the top math slip. It throws your number off by more than double.
0.8675 lbs CO2/kWh = 0.3934 kg CO2/kWh. Just divide lbs by 2.2046. Every step below uses this kg rate.
Using 38,160 kWh saved and the 0.3934 kg rate:
This 15.0-ton figure is from lights alone. HVAC savings come next, as a separate number.
| Step | Math |
|---|---|
| Energy saved | Old kWh − New kWh |
| Unit fix (if in lbs) | lbs ÷ 2.2046 |
| CO2 in kg | kWh × kg rate |
| CO2 in tons | kg CO2 ÷ 1,000 |
| CO2 in short tons | kg CO2 ÷ 907.185 |
This same math works for one LED retrofit kit or a whole site of retrofit LED lights. Only the saved number changes.
More run hours means more power saved. More power saved means more CO2 cut. A 24 hour site saves close to twice as much as a 12 hour site.
Recheck your hours each year. New schedules change your totals. A slow shift can add up fast over time. Small checks now save big work later.
The EPA’s GHG Tool turns CO2 tons into things like car miles or trees. This helps readers see the size of your savings.
| CO2 Saved | Equals |
|---|---|
| 1 ton | About 2,485 miles in a car |
| 1 ton | About 16.5 trees grown 10 years |
| 1 ton | About 113 gallons of gas |
| 4.6 tons | 1 car’s full year of use |
Our 15.0 tons equals about 37,275 miles not driven. It equals about 247 trees grown for 10 years. It equals about 3.3 cars off the road for a year. The EPA can change these terms. Check their site before you print a final report.
Yes. But call it a Rough HVAC CO2 Cut. Keep it apart from the Direct CO2 Cut. LED bulbs make less heat. So, AC units run less. This saving is real, but it is a rough guess, not a fixed fact.
Old bulbs turn 90% of their power into heat, not light. LED bulbs send most power into light instead. Less heat means less AC use. Your AC unit works less hard. It runs shorter cycles. Over a year, this adds up to real savings.
HVAC kWh Saved = Watt Cut × Cool Factor (0.3-0.4) × Yearly Hours
Rough HVAC CO2 Cut (tons) = HVAC kWh Saved × Rate (kg CO2/kWh) ÷ 1,000
The 0.3-0.4 factor is a common guess. Ask your own building expert for your true rate.
Watts drop from 13 kW to 2.4 kW. That is a 10.6 kW cut. Use a factor of 0.35.
Total CO2 Cut = Direct CO2 Cut + Rough HVAC CO2 Cut. Here: 15.0 + 5.25 = 20.25 tons total. List these two numbers separately. One comes from real data. One comes from a guess.
Good math needs good gear. Vision Line builds LED retrofit kits, like recessed light LED retrofit kits and retrofit LED can lights. Each one lists clear watt and light data. That data plugs right into the math above.
Whether your project is one LED recessed retrofit or a full site upgrade, site teams, shop owners, and green teams can pull true specs from Vision Line’s sheets. Visit the Vision Line website to find the parts behind your next CO2 number.
Is This a Scope 1 or Scope 2 Cut?
An LED retrofit is a Scope 2 cut. This covers power you buy, not power you burn. The power plant makes the CO2, not your site.
How Often Should You Redo the Math?
Redo your math each year. Or redo it when your grid rate shifts. Grids add clean power or drop old plants a lot. Old math goes stale fast.
Do LED Kits Get Rebates or Tax Breaks?
Many LED retrofit kits do count for rebates. This depends on your state and power firm. Check with your power firm and a tax pro first.
Can You Use This Math for a Small Office Too?
Yes. The same steps work for any size site. A small office with 20 lights works just like a big store with 200. You plug in your own count and watts.