Topic/Matter Intersection

Topic:"Carbon Capture Utilization And Storage" in M08604

Matter: E-ENS-R-18 - EfficiencyOne - 2019 Demand Side Management (DSM) Plan Application, 2017 Annual Progress Report  and 2017 Evaluation Reports
22 passages 3 documents

Carbon Capture Utilization And Storage across all matters →

E-22017 DSM Evaluation Reports 2 passages
Section 1835
irectly question participants about any potential spillover effects and found that the spillover level for 2017 was nil. NTGR Calculation The NTGR is calculated using the following equation: NTGR = (1 – % free-ridership + %spillover) Based...

AI summary The document calculates the Net-to-Gross Ratio (NTGR) using free-ridership and spillover levels for BER Mail-in, resulting in an NTGR of 0.86. Net savings from BER Mail-in are estimated at 15.778 GWh in energy and 2.462 MW in peak demand, leading to 10,305 tonnes of avoided CO2 emissions over a 15.3-year weighted average useful life.

Section 1889
Net energy savings were first calculated separately for each product category because the NTGR differed from one product category to another. Table 31 below presents the details of these calculations. Overall, the total net energy and peak...

AI summary The text discusses the calculation of net energy and peak demand savings from the Efficient Product Rebates Program, resulting in 30.805 GWh of energy savings and 4.823 MW of peak demand savings. Using a 9.9-year effective useful life and a 2016 Nova Scotia-specific GHG factor, the net energy savings are estimated to have avoided 20,119 tonnes of CO2 eq.

E-11E1 (Synapse) RIRs to IR-1 to IR-22 18 passages
Section 197
mns may not add correctly, due to rounding. a Incremental (annual) emissions impacts estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

AI summary The text mentions that incremental annual emissions impacts are estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator. It also notes that figures may not add correctly due to rounding.

Section 199
4.0 71.5 2.3 $0.346 $0.019 2.6 Water Heating $0.9 5.3 50.3 0.8 $0.164 $0.017 3.5 Appliances $0.0 0.0 0.0 0.0 n/a n/a 0.0 Lighting $3.7 12.1 204.3 2.4 $0.301 $0.018 7.9 Other $0.3 1.6 6.6 0.0 $0.216 $0.052 1.0 Total $7.6 27.9 462.9 7.0 $0.2...

AI summary The table presents data on emissions impacts across various categories such as water heating, appliances, lighting, and others, with figures expressed in 2016 dollars. It includes incremental annual emissions impacts estimated using the 2016 CO2e emissions intensity of 653 tonnes/GWh.

Section 200
mns may not add correctly, due to rounding. a Incremental (annual) emissions impacts estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

AI summary The text discusses incremental annual emissions impacts estimated using the 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator, noting that values may not add correctly due to rounding.

Section 206
mns may not add correctly, due to rounding. a Incremental (annual) emissions impacts estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

AI summary The text discusses incremental annual emissions impacts calculated using the 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator, though it notes that these may not add correctly due to rounding.

Section 209
mns may not add correctly, due to rounding. a Incremental (annual) emissions impacts estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

AI summary The text discusses the estimation of incremental annual emissions impacts using the 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator, noting that rounding may affect accuracy.

Section 212
s may not add correctly, due to rounding. a Incremental (annual) emissions impacts estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator. Date Filed: May 30, 2018 E1 (Synapse) IR-11 Page 3 of...

AI summary The text discusses incremental annual emissions impacts based on the 2016 CO2e emissions intensity of 653 tonnes/GWh, and references the EfficiencyOne – 2019 Demand Side Management (DSM) Resource Plan M08604 (E-ENS-R-18) and E1 responses to Synapse Energy Economics.

Section 216
mns may not add correctly, due to rounding. a Incremental (annual) emissions impacts estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

AI summary The text mentions that incremental annual emissions impacts are estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator. Rounding may affect the accuracy of these estimates.

Section 219
mns may not add correctly, due to rounding. a Incremental (annual) emissions impacts estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

AI summary The text mentions that incremental annual emissions impacts are estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator. It also notes that the numbers may not add correctly due to rounding.

Section 226
mns may not add correctly, due to rounding. a Incremental (annual) emissions impacts estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

AI summary The text discusses the estimation of incremental annual emissions impacts using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

Section 229
mns may not add correctly, due to rounding. a Incremental (annual) emissions impacts estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

AI summary The text discusses the estimation of incremental annual emissions impacts using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

Section 235
mns may not add correctly, due to rounding. a Incremental (annual) emissions impacts estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

AI summary The text discusses incremental annual emissions impacts estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

Section 238
mns may not add correctly, due to rounding. a Incremental (annual) emissions impacts estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

AI summary The text mentions that incremental annual emissions impacts are estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator. It also notes that rounding may affect the accuracy of these estimates.

Section 245
mns may not add correctly, due to rounding. a Incremental (annual) emissions impacts estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

AI summary The text discusses the estimation of incremental annual emissions impacts using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

Section 248
mns may not add correctly, due to rounding. a Incremental (annual) emissions impacts estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

AI summary The text discusses the estimation of incremental annual emissions impacts using the 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator, noting that rounding may affect accuracy.

Section 255
s may not add correctly, due to rounding. a 13 Incremental (annual) emissions impacts estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

AI summary The text discusses the estimation of incremental annual emissions impacts using the 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator, noting that rounding may affect accuracy.

Section 260
0.0 Domestic Hot Water (DHW) $0.0 0.0 0.0 0.0 n/a n/a 0.0 Heating, Ventilation and Air Conditioning ( $2.0 4.6 137.2 1.3 $0.441 $0.015 3.0 Lighting $0.0 0.0 0.0 0.0 n/a n/a 0.0 Refrigeration $0.0 0.0 0.0 0.0 n/a n/a 0.0 Process $0.0 0.0 0....

AI summary The table presents data on energy costs and emissions impacts for various sectors, including Heating, Ventilation and Air Conditioning (HVAC) with a total cost of $2.0 and annual emissions impacts estimated using a 2016 CO2e emissions intensity of 653 tonnes/GWh. Other sectors such as Domestic Hot Water, Lighting, and Refrigeration have zero costs and emissions. The data is expressed in 2018 dollars, and rounding may cause discrepancies in column totals.

Section 261
mns may not add correctly, due to rounding. a Incremental (annual) emissions impacts estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

AI summary The text discusses incremental annual emissions impacts calculated using the 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

Section 270
mns may not add correctly, due to rounding. a Incremental (annual) emissions impacts estimated using the actual 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator.

AI summary The text discusses the estimation of incremental annual emissions impacts using the 2016 CO2e emissions intensity of 653 tonnes/GWh, measured at the generator, noting that rounding may affect accuracy.

E-13Evidence - Synapse (BCC) 2 passages
Section 46
ow-income, commercial, industrial, and self-directed energy efficiency and combined heat & power programs and proposals, including review, analysis, comments, and testimony assistance.  Facilitate residential, commercial, and industrial p...

AI summary The text outlines various activities related to energy efficiency, policy research, and market analysis, including the facilitation of working groups, testimony on energy efficiency and AMI proposals, and research on emissions and market data. These efforts span residential, commercial, and industrial sectors, with a focus on reducing greenhouse gas emissions and analyzing energy policies.

Section 56
ying and Controlling Fine Particulate Matter in New York City. Synapse Energy Economics for Coalition Helping Organize a Kleaner Environment, Natural Resources Defense Council (NRDC), Reliant Energy. Alice Napoleon page 4 of 7 Drunsic, M.,...

AI summary The text includes a list of publications and studies conducted by Synapse Energy Economics for various organizations and commissions, covering topics such as energy markets, fuel diversity, portfolio management, and carbon sequestration feasibility.

Disclaimer: These summaries were generated by AI from the filings they describe. We take care to make them accurate, but errors are possible - and they aren't advice. Only the filings themselves are the record: if you're relying on something here, confirm it against the source documents or the Nova Scotia Energy Board's own record. Full disclaimer →