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BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

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Page 1: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

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Page 2: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

BCSE – Innovate. Invest. Deploy. Taking the Clean Energy Transformation to COP 22

Location: Global

EP100 companies commit to doubling their energy productivity for greater profitability, lower risk and reduced GHG emissions.

Be a leader. Join us.

TheClimateGroup.org/EP100

Page 3: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

BCSE – Innovate. Invest. Deploy. Taking the Clean Energy Transformation to COP 22

A COP21-Inspired Experiment of Real-Time GHG Monitoring At Urban Scales

Location: Paris, France

Co-developed by Harris and Atmospheric and Environmental Research (AER), the Greenhouse Gas Laser Imaging Tomography Experiment (GreenLITE™) is a remote sensing system that provides 24/7 real-time measurement of near-surface greenhouse gases in localized areas from 1 to 30 square kilometers.

Using a network of ground retro-reflectors and transceivers, along with proprietary software, GreenLITE™ delivers two –dimensional maps of GHG concentration and distribution.

Following initial testing in the United States, GreenLITE™ was installed in Paris to measure CO2 over a 25 km2-area. Originally intended as a demonstration for COP21, the project was extended to November 2016. The full year of data collection will provide key insights into real-time dynamics of GHG over an urban environment, aiding in model verification, analysis of source locations and magnitude, concentration patterns, and anthropogenic activity correlations.

Future plans include demonstration of system capability for CH4.

Above: Harris’ GreenLITE™ deployed in Paris in November 2016; Below: 2-D view of CO2

concentration and distribution over the city.

Page 4: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

BCSE – Innovate. Invest. Deploy. Taking the Clean Energy Transformation to COP 22

North Carolina Museum of Art

Location: Raleigh, North Carolina

Trane performance contract upgrades save >$500,000 per year in utility & operating costs with reduced temperature & humidity fluctuations

• Variable speed chiller plant with integrated free cooling, plus controls upgrade & chiller tower optimization

• Complete retrofit (including lighting & plumbing fixtures) financed by guaranteed future savings of the performance contract upgrades

• Now meets strict “AA” ASHRAE indoor environment class for best artwork preservation• Annual CO2 emissions avoidance average 9 million lbs.• > $3.3M energy savings (including operational cost avoidance) 2008-2011

Page 5: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

BCSE – Innovate. Invest. Deploy. Taking the Clean Energy Transformation to COP 22

Texas State Technical College

Location: Waco, Texas

Trane performance contract provides $344,000 per year in energy savings

• New chiller plant design reduced size of ancillary equipment for lower first cost and reduced energy consumption

• Building automation system upgrade• 100 kW solar PV system• Lighting upgrades in 33 campus buildings• Non-weather adjusted electric

consumption reduced 25.5%

Page 6: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

BCSE – Innovate. Invest. Deploy. Taking the Clean Energy Transformation to COP 22

The Acer Arena

Location: Sydney, Australia

Trane chiller plant reduces installation costs by $100,000 and operating costs of 6%

• $200 million complex; designed as one of the most technologically advanced and environmentally responsible indoor arenas

• Indoor arena with seating capacity of 21,000• Major venue for the 2000 Summer Olympics• New system design reduced size of ancillary

equipment, reducing installation and operating costs

Page 7: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

BCSE – Innovate. Invest. Deploy. Taking the Clean Energy Transformation to COP 22

Hawaii Department of Transportation

Location: Honolulu, Hawaii

• Hawai’i Department of Transportation project involves 12 airports

• State of Hawaii has set a 2030 goal to meet 70 percent of its energy needs through efficiency measures and renewable sources

• Lighting, HVAC, Controls, Water (75,000 lighting fixtures)

• Renewable Energy (9,100 solar panels/2.6 MW generation)

• 20 year Energy Savings Performance Contact

• 400 local jobs, while adding more than $670 million in economic development

• 43,000 metric tons of CO2 saved annually

• $518M in cost savings over 20 years

Page 8: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

BCSE – Innovate. Invest. Deploy. Taking the Clean Energy Transformation to COP 22

SK Building

Location: Beijing, China

• 40 story, 106,000m² mixed-use development part of the Central World Trade Centre in Chaoyang district of Beijing

• Install new Building Management System and field devices with plant control logic

• Install energy-saving fresh air handling units and PM2.5 static discharge air purifier

• Install comprehensive energy measurement system for ease of monitoring

• 20% guaranteed savings (with potential savings exceeding 25%)

• 5.5 million RMB (USD 895,000) per year in guaranteed savings

• Innovative contracting model (short-term guaranteed savings model) with rigorous measurement and verification recognized by US-China EPC Working Group

Page 9: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

BCSE – Innovate. Invest. Deploy. Taking the Clean Energy Transformation to COP 22

Automotive battery technology enables gas engines to shut off while idle

Location: U.S., Europe, China

• Advanced batteries used in Start-Stop vehicle systems are helping global automakers meet 2020 CO2 reduction regulations by shutting off the gasoline-powered engine while at a stop

• Integrated into 35 million vehicles globally, it saves an estimated 660 million gallons of fuel and reducing greenhouse gas emissions by 5.9 million metric tons per year

• Drivers can save more than 5% every time they fill up their gas tank- which equals around $100/year

Page 10: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

Customers like Stanford University are motivated by objective to reduce energy and water use, and greenhouse gas emissionsLocation: Stanford, California

• Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric heat recovery chilled and hot water system

• 68% reduction in GHG emissions• 15% reduction in water use

BCSE – Innovate. Invest. Deploy. Taking the Clean Energy Transformation to COP 22

Page 11: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

BCSE – Innovate. Invest. Deploy. Taking the Clean Energy Transformation to COP 22

Industrial Energy Efficiency: Improving Economic Competitiveness while reducing Carbon Footprint of Industrial Processes

Location: USA

Retrofitting of manufacturing facilities and power plants can offer significant energy and emissions savings. Jupiter Oxygen Corporation’s patented process has significantly reduced fuel consumption and costs, as well as GHG emissions at Jupiter Aluminum Corporation, an aluminum recycling and manufacturing plant in the United States.

Building upon that success, Jupiter Oxygen is now applying this technology to natural gas and coal-fired power plants. The high flame temperature oxy-combustion process maximizes heat transfer effectiveness, enables cost-effective carbon capture and key air pollutant control from these large point sources of greenhouse gas emissions.

Jupiter Oxygen’s Vision of Sustainable Development & Promotion of Clean Energy Technologies

Page 12: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

BCSE – Innovate. Invest. Deploy. Taking the Clean Energy Transformation to COP 22

A Low-Carbon Energy Portfolio Approach Includes Carbon Capture

Location: China

Applying Jupiter Oxygen’s cost effective carbon capture and air pollutant control technologies, which were developed jointly with the US Department of Energy’s National Energy Technology Laboratory, to existing and new coal power plants, will be key for sustainable development and growth. Essential to this business model is a market that will utilize the captured CO2 at scale, such as enhanced oil recovery (EOR), and enhanced coal bed methane (ECBM) recovery.

Jupiter Oxygen’s integrated technology approach offers a cleaner fossil energy pathway, as countries that rely heavily on coal, prepare to improve their competitiveness and transition to a low-carbon economy.

November 18, 2015: Agreement signed for commercial scale

CCUS – ECBM project in western China

Page 13: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

Deloitte needed an innovative, comfortable environment for its employees and wanted to reduce their CO2 footprints.

Philips Lighting connected lighting system uses Power-over-Ethernet to connect office lighting fixtures to the building’s IT network.

• Sensors capture anonymous data on room occupancy, temperature and humidity.

• no need for expensive electrical wiring, reducing installation costs by up to 50%.

• Office workers have more control of their open-plan environment, aiding comfort and productivity

• The facility manager has a single system showing real-time and historical views of building utilization

• System offers new value that goes beyond energy-efficiency and cost savings.

Connected Office Lighting System

Location: Amsterdam, the Netherlands

http://www.lighting.philips.co.uk/cases/cases/office/edge.html

BCSE – Innovate. Invest. Deploy. Taking the Clean Energy Transformation to COP 22

Page 14: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

The Madrid local government identified lighting as one of the main causes for its high energy bills and inefficiency, but where cost-effective improvements can be easily achieved.

• 225,000 street lights were replaced with Philips Lighting technology (including luminaires on avenues, streets, historic monuments and parks);

• The city will save over 44% of its energy consumption after installation, which was completed in 2015.

• The new city lighting system benefits from a command panel capable of regulating the intensity and duration of lighting across the city according to where it is most needed.

The Largest Street Lighting Project in the World

Location: Madrid, Spain

http://www.philips.com/a-w/about/news/archive/standard/news/press/2014/20141219-Madrid-upgrades-city-infrastructure-with-Philips-lighting.html

BCSE – Innovate. Invest. Deploy. Taking the Clean Energy Transformation to COP 22

Page 15: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

Schiphol Group needed a sustainable solution for the new lighting at the terminal limiting costs, improving safety and comfort for passengers.

• Philips Lighting proposed the “light as a service” concept: Schiphol pays for the light it uses, while Philips Lighting remains the owner of all fixtures and installations.

• Philips Lighting & partners will be jointly responsible for the performance and durability of the system and ultimately its re-use and recycling at end of life.

• Lighting fixtures were developed for the airport to last 75% longer thanks to improved serviceability.

• 50% reduction in electricity consumption will be achieved over conventional lighting systems.

Light as a Service for Schiphol Airport

Location: Amsterdam, the Netherlands

http://www.philips.com/a-w/about/news/archive/standard/news/press/2015/20150416-Philips-provides-Light-as-a-Service-to-Schiphol-Airport.html

BCSE – Innovate. Invest. Deploy. Taking the Clean Energy Transformation to COP 22

Page 16: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

BCSE – Innovate. Invest. Deploy. Taking the Clean Energy Transformation to COP 22

Boosting Agriculture & Supporting Environmental Sustainability with Drones

Location: San Carlos, Brazil

The Drone Technology Development Program for Precision Agriculture was launched in Sao Carlos, Brazil on June 30, 2016, and it is a collaboration between Qualcomm Wireless Reach, the Brazilian Agricultural Research Corporation (Embrapa) and the Institute of Solidarity Socioeconomics (ISES).

The program aims to demonstrate how drone technologies can be applied to reduce environmental impact and increase crop yields. The on-board systems developed for drones will combine Embrapa’sexpertise in agriculture and image processing algorithms with the strong performance of the Qualcomm Snapdragon Flight drone platform and advanced wireless technologies to collect, process, analyze and transmit real-time crop intelligence to farmers and environmental stakeholders in Brazil.

Page 17: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

BCSE – Innovate. Invest. Deploy. Taking the Clean Energy Transformation to COP 22

Qualcomm’s Smart Campus

Shows the Future of Smart Cities

Location: San Diego, California

The Qualcomm smart campus is a “living” test bed covering office and research space, labs, outdoor areas and parking structures across six buildings and nearly 1 million square feet. Examples of how our campus and its technologies can help cities be more efficient and sustainable include:

o Using connectivity technologies to collect real-time data from our water, power heating, ventilating, and air conditioning (HVAC) systems through the use of smart sensors

o Equipping employee shuttles with off-the-shelf camera solutions optimized for edge processing with image recognition algorithms to determine real-time occupancy via a mobile app

o Collecting trash using a new system that combines a connected solar powered trash compactor with an algorithm for optimal pick-up routing and notification of waste status

Page 18: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

BCSE – Innovate. Invest. Deploy. Taking the Clean Energy Transformation to COP 22

Empire State Building Retrofit

Location: New York City, NY

• LEED Gold certification • The retrofit guaranteed to reduce the

2.85 million-square-foot building’s energy consumption by more than 38 percent and is expected to save $4.4 million in energy costs annually

• The improvements will also reduce carbon emissions by an estimated 105,000 metric tons over a 15-year period

http://www.usgbc.org/articles/leed-soars-new-heights-5-iconic-global-skyscrapers

Page 19: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

BCSE – Innovate. Invest. Deploy. Taking the Clean Energy Transformation to COP 22

Korea’s Songdo International Business District

Location: Songdo International Business District, South Korea

• One of the world's most ambitious LEED developments

• Totals 19.5 million square feet of LEED-certified space represents 12 projects comprising an

impressive 106 buildings: 71 residential, 27 retail & 8 commercial

• When finished in 2020, it will include: 100M square feet of office, residential, retail,

hotel & public space 65,000 residents 300,000 daily commuters

http://plus.usgbc.org/global-green-building/

Page 20: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

BCSE – Innovate. Invest. Deploy. Taking the Clean Energy Transformation to COP 22

New Construction at Dunbar High School

Location: Washington, D.C.

• LEED Platinum certification

• Highest-scoring school in the world certified under the LEED for Schools-New Construction rating system

• Has a photovoltaic array that generates enough energy to power classroom lights for 8 hours

• Below school’s athletic fields is D.C.’s largest ground-source heat pump, with wells reaching down 460 feet

http://www.eesi.org/articles/view/d.c.s-dunbar-high-school-becomes-the-greenest-school-in-the-world

Page 21: BCSE · reduce energy and water use, and greenhouse gas emissions Location: Stanford, California • Central Energy Plant at Stanford involved conversion of gas-fired CHP to electric

For More Information: Visit www.bcse.org

or E-mail: [email protected]