Emissions & Generation Resource Integrated Database eGRID US EPA
When you enter energy data, the calculator converts these values into carbon dioxide-equivalent greenhouse gas emissions based on emission factors for energy consumption or electricity reductions. This calculator may be useful in communicating your greenhouse gas reduction strategy, reduction targets, or other initiatives aimed at reducing greenhouse gas emissions. The EU’s renewable energy target for 2030 (32%) was exceeded in 2023, with renewables contributing 42% of electricity 60% of EU utilities have integrated renewable energy into their grids, enabling a 25% increase in renewable penetration
(1) An aggregate rate-based standard of performance (lb CO2/MWh-gross) that applies for a group of affected EGUs that share the same owner or operator, as calculated on a gross generation weighted average basis, provided the standard of performance meets the requirements of paragraph (f) of this section. (A) All documentation required as part of this extension must be submitted by the owner or operator of the affected EGU to the State air pollution control agency no later than 6 months prior to the applicable compliance date for that affected EGU. This report must explain the cause or causes of the deviation and describe all measures taken or to be taken by the owner or operator of the EGU to cure the reported deviation and to prevent such deviations in the future, including the timeframes in which the owner or operator intends to cure the deviation. You must include in your State plan legally enforceable increments of progress as required elements for affected EGUs in the long-term coal-fired steam generating unit and medium-term coal-fired steam generating unit subcategories.
- (1) The net electric or mechanical output from the affected facility, plus 100 percent of the useful thermal output measured relative to standard ambient temperature and pressure conditions that is not used to generate additional electric or mechanical output or to enhance the performance of the unit (e.g., steam delivered to an industrial process for a heating application).
- Emission factors contained in Table 3.2 must be used for the quantification of GHG reductions occurring in calendar year 2025.
- Thus, a million metric tons are roughly the same mass as 1 million small cars.
- (1) An affected EGU’s standard of performance is quantifiable if it can be reliably measured in a manner that can be replicated.
- (1) The presumptively approvable rate-based standard of performance (lb CO2/MWh-gross) that would apply to the affected EGU under paragraph (a)(1) of this section, and as determined in accordance with paragraphs (c) and (d) of this section.
Purchasing renewable energy is a common approach to addressing Scope 2 emissions. According to Xylem estimates, Scope 1 emissions account for 25% of water utility emissions. Reducing greenhouse gas emissions presents a rare opportunity to rethink what is possible through technology and data-driven decision-making.
- Emission factors contained in Table 6.1 must be used for the quantification of GHG reductions occurring in calendar years 2023 and 2024.
- (iii) Presumptively approvable standard of performance is an annual emission rate limit of 1,600 lb CO2/MWh-gross.
- If your company is required to report greenhouse gas emissions or chooses to analyze its carbon footprint, you may need information about natural gas delivered by Wisconsin Electric Gas Operations or Wisconsin Gas LLC.
- (4) A demonstration of how the application of the mass CO2 limit for the affected EGU will achieve equivalent or better emission reduction as would be achieved through the application of a rate-based standard of performance (lb CO2/MWh-gross) that would apply pursuant to paragraph (a)(1) of this section, and as determined in accordance with paragraphs (c) and (d) of this section.
- (iii) The State plan must provide that an existing coal-fired steam generating EGU operating past the date listed in the State plan pursuant to paragraph (a)(9)(ii) of this section is in violation of that State plan, except to the extent the existing coal-fired steam generating EGU has received an extension of its date for ceasing operation pursuant to the reliability assurance mechanism, described in paragraph (a)(13) of this section.
Reducing Emissions from Electric Power Production
An owner or operator must also include in the report the affected EGU’s calculated emission performance as a CO2 emission rate in units of the standard of performance. (c) Your State plan must require the owner or operator of an affected EGU covered by your State plan to include in a report submitted to you the information in paragraphs (c)(1) through (3) of this section. (ii) If there is no net electrical output, but there is mechanical or useful thermal output, either for a particular valid operating hour (for rate-based applications), or for a particular operating hour (for mass-based applications), the owner or operator of the affected EGU must still determine the net energy output for that hour. Further, the owner or operator of an affected EGU that is a combined heat and power facility must install, calibrate, maintain, and operate equipment to continuously measure and record on an hourly basis useful thermal output and, if applicable, mechanical output, which are used with gross electric output to determine gross energy output.
Learn more about how Oregon tracks greenhouse gas emissions at DEQ’s greenhouse gas inventory page. This data does not represent all of Oregon’s greenhouse gas emissions. These groups submit annual reports on their greenhouse gas emissions to DEQ.
Greenhouse Gas Emissions by Electricity End-Use
(2) For affected units in the medium-term coal-fired steam generating unit subcategory, this increment of progress applies to each affected EGU that adopts natural gas co-firing to meet the standard of performance and ensures timely completion of any pipeline infrastructure needed to transport natural gas to designated facilities. (1) For affected units in the long-term coal-fired steam generating unit subcategory, this increment of progress applies to each affected EGU that adopts CCS to meet the standard of performance and ensure timely completion of CCS-related pipeline infrastructure. (2) For steam generating units, the gross electric or mechanical output from the affected EGU(s) (including, but not limited to, output from steam turbine(s), combustion turbine(s), and gas expander(s)) minus any electricity used to power the feedwater pumps plus 100 percent of the useful thermal output; (c) Modified coal-fired steam generating units that are subject to subpart TTTTa of this part as a result of commencing modification after the subpart TTTTa applicability date;
Carbon dioxide emissions from the United States’ electric power sector rose by 4%, or 58 million metric tons, in 2025, due to growth in electricity generation and coal use, the U.S. If your company is required to report greenhouse gas emissions or chooses to analyze its carbon footprint, you may need information about natural gas delivered by Wisconsin Electric Gas Operations or Wisconsin Gas LLC. The emission rates apply to retail electric utility customers of We Energies, except for customers of Energy for Tomorrow, the We Energies Green-e certified renewable energy program that is offered to all retail electric customers. The emission rates are supplied for customers to estimate their environmental footprint from electric energy supplied by We Energies, such as Scope 2 (indirect) greenhouse gas emissions. Brickhouse said that while renewables make up 30% of Basin’s generation portfolio, meeting data center demand with renewable energy generation backed up by diesel is not ideal due to the “very high load factor” of data centers.
Generation and thermal output
(iv) Intermediate load oil-fired steam generating units, consisting of oil-fired steam generating units with an annual capacity factor greater than or equal to 8 percent and less than 45 percent. (iii) Base load oil-fired steam generating units, consisting of oil-fired steam generating units with an annual capacity factor greater than or equal to 45 percent. (ii) Medium-term coal-fired steam generating units, consisting of coal-fired steam generating units that have elected to commit to permanently cease operations by a date after December 31, 2031, and before January 1, 2039. (i) Long-term coal-fired steam generating units, consisting of coal-fired steam generating units that are not medium-term coal-fired steam generating units and do not plan to permanently cease operation before January 1, 2039. (1) Five years before any planned date to permanently cease operations or by the date upon which the State plan is submitted, whichever is later, the owner or operator of the EGU must submit an initial report to the EPA that includes the information in paragraphs (a)(1)(i) and (ii) of this section. (b) All State plan submittals, supporting materials that are part of a State plan submittal, any State plan revisions, and all State reports required to be submitted to the EPA by the State plan must be reported through the EPA’s State Plan Electronic Collection System (SPeCS).
Reported Greenhouse Gas Emissions
(1) The net electric or mechanical output from the affected facility, plus 100 percent of the useful thermal output measured relative to standard ambient temperature and pressure conditions that is not used to generate additional electric or mechanical output or to enhance the performance of the unit (e.g., steam delivered to an industrial process for a heating application). https://bandlybands.com/narkes-elektriska/ Mechanical output means the useful mechanical energy that is not used to operate the affected facility, generate electricity and/or thermal output, or to enhance the performance of the affected facility. Integrated gasification combined cycle facility or IGCC means a combined cycle facility that is designed to burn fuels containing 50 percent (by heat input) or more solid-derived fuel not meeting the definition of natural gas plus any integrated equipment that provides electricity or useful thermal output to either the affected facility or auxiliary equipment.
- (iv) A requirement to document the hours an affected EGU operated under a system emergency and the enforceable emission limitation, whether the applicable standard of performance or the alternative emission limitation, under which that affected EGU operated during those hours.
- But what the report mainly seems to demonstrate, he said, is that the bulk of emissions reductions to take place in the electric sector were likely to happen even in the absence of utility emissions targets.
- (3) For the purposes of 40 CFR 70.2, with respect to greenhouse gas emissions from facilities regulated in the State plan, the “pollutant that is subject to any standard promulgated under section 111 of the Act” shall be considered to be the pollutant that otherwise is “subject to regulation” as defined in 40 CFR 70.2.
- (iii) Base load oil-fired steam generating units, consisting of oil-fired steam generating units with an annual capacity factor greater than or equal to 45 percent.
- The owner or operator of an affected EGU must demonstrate that they have commenced permitting actions by a date specified in the State plan.
(1) The report must include the emissions performance achieved by each affected EGU during the reporting period and identification of whether each affected EGU is in compliance with its standard of performance during the compliance period, as specified in the State plan. For each calendar year reporting period the report must be submitted by March 1 of the following year. (3) For each affected EGU the report must also include the applicable standard of performance and demonstration that it met the standard of performance.
Electric utility energy mix and emission rates
This page provides a summary of Oregon’s mandatory greenhouse gas reported data. For further discussion of GWPs and an estimate of greenhouse gas emissions using updated GWPs, see Annex 6 of the https://labverra.com/authors/dr.-neelesh-rao/ U.S. Thus, a million metric tons are roughly the same mass as 1 million small cars. A million metric tons equals about 2.2 billion pounds, or 1 trillion grams. Looking at greenhouse gas emissions by end-use sector can help us understand energy demand across sectors and changes in energy use over time.

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