Unlocking Manufacturing Sustainability: Energy Efficiency Opportunities through the US Department of Energy’s Better Plants Program Energy Treasure Hunts (2023–2024)
Abstract
:1. Introduction
2. Methods
2.1. What Does an Energy Treasure Hunt Entail?
2.1.1. Phase One: Preparation
2.1.2. Phase Two: Event
2.1.3. Phase Three: Follow-Up
2.2. Analysis Methods for Reviewing DOE’s Better Plants Energy Treasure Hunt Events
3. Results
4. Future Work
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
Appendix A
Energy System | Count | Total Energy Savings | Total Emissions Savings | Total Cost Savings |
---|---|---|---|---|
MMBtu | tCO2e | USD | ||
Compressed Air | 77 | 68,484 | 7,330,967 | 1,183,536 |
Process Heating | 57 | 2,085,134 | 110,905,680 | 10,229,991 |
HVAC System | 36 | 38,506 | 3,776,883 | 635,468 |
Steam | 31 | 82,709 | 4,392,675 | 422,021 |
Fan | 29 | 57,104 | 5,889,084 | 935,467 |
Lights | 29 | 13,520 | 1,485,970 | 242,543 |
Motor | 25 | 11,685 | 1,284,223 | 209,613 |
Pump | 25 | 83,384 | 9,164,409 | 1,689,194 |
Other | 24 | 5676 | 623,840 | 101,824 |
Water | 20 | 51 | 5585 | 280,630 |
Process Cooling | 17 | 6094 | 669,823 | 124,898 |
Renewables | 1 | 8392 | 922,374 | 150,552 |
Appendix B
ARC | ARC Description | Count | Total Energy Savings | Total Emissions Savings | Total Cost Savings |
---|---|---|---|---|---|
MMBtu | tCO2e | USD | |||
2.6218 | Turn off equipment when not in use | 78 | 209,850 | 16,769,482 | 2,318,153 |
2.4236 | Eliminate leaks in inert gas and compressed air lines/valves | 44 | 16,044 | 1,763,314 | 287,812 |
2.4146 | Use adjustable frequency drive or multiple speed motors on existing system | 25 | 66,987 | 7,362,328 | 1,201,694 |
2.7142 | Utilize higher efficiency lamps and/or ballasts | 24 | 12,702 | 1,396,064 | 227,868 |
2.1131 | Repair faulty insulation in furnaces, boilers, etc | 15 | 85,241 | 4,534,097 | 420,360 |
2.2135 | Repair and eliminate steam leaks | 15 | 34,813 | 1,848,918 | 186,886 |
2.2511 | Insulate bare equipment | 14 | 21,525 | 1,193,204 | 116,704 |
2.7224 | Reduce space conditioning during non-working hours | 11 | 3871 | 374,131 | 57,652 |
2.4231 | Reduce the pressure of compressed air to the minimum required | 7 | 1564 | 171,882 | 28,055 |
2.7313 | Recycle air for heating, ventilation and air conditioning | 7 | 28,952 | 2,731,563 | 415,870 |
2.2414 | Use waste heat from hot flue gases to preheat | 6 | 84,653 | 4,495,921 | 413,783 |
2.4239 | Eliminate or reduce compressed air usage | 6 | 403 | 44,276 | 7227 |
2.7447 | Install vinyl strip/high speed/air curtain doors | 6 | 3793 | 249,678 | 29,626 |
3.4154 | Eliminate leaks in water lines and valves | 6 | - | - | 6664 |
2.1113 | Reduce combustion air flow to optimum | 5 | 77,563 | 4,119,371 | 379,127 |
2.1116 | Improve combustion control capability | 5 | 1,584,916 | 84,174,889 | 7,747,053 |
3.4116 | Meter recycled water (to reduce sewer charges) | 5 | - | - | 242,656 |
3.4151 | Minimize water usage | 5 | - | - | 70,976 |
2.1121 | Use insulation in furnaces to facilitate heating/cooling | 4 | 43,419 | 2,359,303 | 224,485 |
2.1133 | Adjust burners for efficient operation | 4 | 10,859 | 592,722 | 56,757 |
2.2694 | Use highest temperature for chilling or cold storage | 4 | 442 | 48,537 | 7922 |
2.2113 | Repair or replace steam traps | 3 | 17,078 | 907,013 | 83,477 |
2.2127 | Flash condensate to produce lower pressure steam | 3 | 3052 | 162,092 | 15,938 |
2.2531 | Re-size charging openings or add movable cover or door | 3 | 2357 | 125,180 | 11,521 |
2.4322 | Use or replace with energy efficient substitutes | 3 | 635 | 69,779 | 11,389 |
2.6211 | Conserve energy by efficient use of vending machines | 3 | 32 | 3521 | 575 |
2.6231 | Utilize controls to operate equipment only when needed | 3 | 437 | 48,050 | 7843 |
2.7135 | Install occupancy sensors | 3 | 658 | 72,332 | 11,806 |
2.7231 | Use radiant heater for spot heating | 3 | 1974 | 137,228 | 17,094 |
3.4146 | Change method of deionized water production | 3 | 78 | 8541 | 1394 |
3.4156 | Use flow control valves on equipment to optimize water use | 3 | - | - | 43,288 |
2.1233 | Analyze flue gas for proper air/fuel ratio | 2 | 42,194 | 2,240,923 | 206,244 |
2.2211 | Use optimum temperature | 2 | 4995 | 265,284 | 87,488 |
2.2422 | Use waste heat from hot flue gases to generate steam | 2 | 7651 | 406,345 | 37,542 |
2.2514 | Cover open tanks 2.2515 use optimum thickness insulation | 2 | 5148 | 283,554 | 27,492 |
2.2614 | Use cooling tower or economizer to replace chiller cooling | 2 | 1685 | 185,208 | 30,230 |
2.4111 | Utilize energy-efficient belts and other improved mechanisms | 2 | 2189 | 240,541 | 39,262 |
2.4222 | Install adequate dryers on air lines to eliminate blowdown | 2 | 7373 | 810,301 | 132,259 |
2.4323 | Use optimum size and capacity equipment | 2 | 414 | 45,450 | 7418 |
2.7124 | Make a practice of turning off lights when not needed | 2 | 160 | 17,574 | 2868 |
2.8117 | Install sub-metering equipment | 2 | 108 | 11,916 | 1945 |
3.4114 | Replace city water with recycled water via cooling tower | 2 | - | - | 11,232 |
3.7222 | Minimize overflows by installing level controls | 2 | - | - | 97,951 |
2.1134 | Eliminate leaks in combustible gas lines | 1 | 6354 | 337,461 | 31,058 |
2.1135 | Repair furnaces and oven doors so that they seal efficiently | 1 | 6 | 319 | 29 |
2.2437 | Recover waste heat from equipment | 1 | 3449 | 183,176 | 16,859 |
2.2622 | Replace existing chiller with high efficiency model | 1 | 2771 | 304,560 | 49,711 |
2.2625 | Chill water to the highest temperature possible | 1 | 185 | 20,339 | 3320 |
2.2691 | Shut off cooling if cold outside air will cool process | 1 | 2565 | 281,898 | 46,012 |
2.4133 | Use most efficient type of electric motors | 1 | 6 | 626 | 102 |
2.4224 | Upgrade controls on compressors | 1 | 359 | 39,420 | 6434 |
2.4226 | Use/purchase optimum sized compressor | 1 | 20,427 | 2,245,050 | 366,442 |
2.4237 | Substitute compressed air cooling with water or air cooling | 1 | 12 | 1293 | 211 |
2.5123 | Reduce fluid flow rates | 1 | 500 | 54,947 | 8969 |
2.6127 | Maintain air filters by cleaning or replacement | 1 | 145 | 15,884 | 2593 |
2.6212 | Turn off equipment during breaks, reduce operating time | 1 | 615 | 67,544 | 11,025 |
2.6232 | Install set-back timers | 1 | 13 | 1418 | 231 |
2.6241 | Reduce temperature of process equipment when on standby | 1 | 8 | 885 | 144 |
2.6242 | Minimize operation of equipment maintained in standby condition | 1 | 602 | 66,145 | 10,796 |
2.7229 | Air condition only space necessary | 1 | 6 | 649 | 106 |
2.7312 | Minimize use of outside make-up air for ventilation except when used for economizer cycle | 1 | 2159 | 237,300 | 38,733 |
2.7492 | Use proper thickness of insulation on building envelope | 1 | 1855 | 98,519 | 9067 |
2.9114 | Use solar heat to make electricity | 1 | 8392 | 922,374 | 150,552 |
3.4152 | Carefully control water level in mass finishing equipment | 1 | 24,500 | 1,301,195 | 119,756 |
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Term | Results |
---|---|
Total number of events | 17 |
Total number of opportunities identified | 371 |
Total identified water savings (kgal) | 24.42 million |
Total identified energy savings (MMBtu) | 2.46 million |
Total identified emissions savings (tCO2e) | 146.45 million |
Total identified cost savings | $16.2 million |
Utility Type | Count (%) | Utility Savings | Utility Units | Total Energy Savings | Total Emissions Savings | Total Cost Savings |
---|---|---|---|---|---|---|
MMBtu | tCO2e | USD | ||||
Electricity | 261 (70%) | 81,333,922 | kWh | 277,511 | 30,500,221 | 4,978,309 (31%) |
Natural gas | 78 (21%) | 2,183,229 | MMBtu | 2,183,229 | 115,951,292 | 10,671,601 (66%) |
Water | 32 (9%) | 24,422,309 | kgal | - | 555,827 (3%) | |
Grand total | 371 | 2,460,740 | 146,451,513 | 16,205,737 |
Energy System | Count (%) | Average Energy Savings | Total Energy Savings | Average Emissions Savings | Total Emissions Savings | Average Cost Savings | Total Cost Savings |
---|---|---|---|---|---|---|---|
MMBtu | tCO2e | USD | |||||
Compressed Air | 77 (21%) | 889 | 68,484 | 95,207 | 7,330,967 | 15,371 | 1,183,536 |
Process Heating | 57 (15%) | 37,235 | 2,085,134 | 1,945,714 | 110,905,680 | 179,474 | 10,229,991 |
HVAC System | 36 (10%) | 1167 | 38,506 | 104,913 | 3,776,883 | 17,652 | 635,468 |
Steam | 31 (8%) | 3308 | 82,709 | 141,699 | 4,392,675 | 13,614 | 422,021 |
Fan | 29 (8%) | 1969 | 57,104 | 203,072 | 5,889,084 | 32,257 | 935,467 |
Lights | 29 (8%) | 466 | 3,520 | 51,240 | 1,485,970 | 8364 | 242,543 |
Motor | 25 (7%) | 467 | 11,685 | 51,369 | 1,284,223 | 8385 | 209,613 |
Pump | 25 (7%) | 3625 | 83,384 | 366,576 | 9,164,409 | 67,568 | 1,689,194 |
Water | 20 * (5%) | 51 | 51 | 279 | 5585 | 14,032 | 280,630 |
Process Cooling | 17 (5%) | 381 | 6094 | 39,401 | 669,823 | 7347 | 124,898 |
Renewables | 1 (0.3%) | 8392 | 8392 | 922,374 | 922,374 | 150,552 | 150,552 |
Other | 24 (6%) | 237 | 5676 | 25,993 | 623,840 | 4243 | 101,824 |
Misc. plug loads | 10 (3%) | 47 | 282 | 5166 | 30,993 | 843 | 5059 |
Computers/office Plug loads | 6 (3%) | 470 | 4703 | 51,686 | 516,864 | 8436 | 84,364 |
Vacuum systems | 4 (1%) | 162 | 647 | 17,787 | 71,146 | 2903 | 11,613 |
Vending | 4 (1%) | 11 | 44 | 1209 | 4837 | 197 | 789 |
Grand total | 371 | 2,460,740 | 146,451,513 | 16,205,737 |
ARC | ARC Description | Count (%) | Total Energy Savings | Total Emissions Savings | Total Cost Savings |
---|---|---|---|---|---|
MMBtu | tCO2e | USD | |||
2.6218 | Turn off equipment when not in use | 78 (21%) | 209,850 | 16,769,482 | 2,318,153 |
2.4236 | Eliminate leaks in inert gas and compressed air lines/valves | 44 (12%) | 16,044 | 1,763,314 | 287,812 |
2.4146 | Use adjustable frequency drive or multiple speed motors on existing system | 25 (7%) | 66,987 | 7,362,328 | 1,201,694 |
2.7142 | Utilize higher efficiency lamps and/or ballasts | 24 (6%) | 12,702 | 1,396,064 | 227,868 |
2.1131 | Repair faulty insulation in furnaces, boilers, etc. | 15 (4%) | 85,241 | 4,534,097 | 420,360 |
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Miera, K.; Botts, A.; Lemar, P.; Kamath, D.; Wenning, T. Unlocking Manufacturing Sustainability: Energy Efficiency Opportunities through the US Department of Energy’s Better Plants Program Energy Treasure Hunts (2023–2024). Sustainability 2024, 16, 7918. https://doi.org/10.3390/su16187918
Miera K, Botts A, Lemar P, Kamath D, Wenning T. Unlocking Manufacturing Sustainability: Energy Efficiency Opportunities through the US Department of Energy’s Better Plants Program Energy Treasure Hunts (2023–2024). Sustainability. 2024; 16(18):7918. https://doi.org/10.3390/su16187918
Chicago/Turabian StyleMiera, Kalie, Alex Botts, Paul Lemar, Dipti Kamath, and Thomas Wenning. 2024. "Unlocking Manufacturing Sustainability: Energy Efficiency Opportunities through the US Department of Energy’s Better Plants Program Energy Treasure Hunts (2023–2024)" Sustainability 16, no. 18: 7918. https://doi.org/10.3390/su16187918
APA StyleMiera, K., Botts, A., Lemar, P., Kamath, D., & Wenning, T. (2024). Unlocking Manufacturing Sustainability: Energy Efficiency Opportunities through the US Department of Energy’s Better Plants Program Energy Treasure Hunts (2023–2024). Sustainability, 16(18), 7918. https://doi.org/10.3390/su16187918