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Introduction Tongji University

Nestled in the bustling city of Shanghai, Tongji University has emerged as a leading institution in China that is actively committed to sustainability and environmental stewardship. 

With a strong focus on addressing pressing global challenges, Tongji University has transformed its campus into a thriving model of eco-consciousness. 

Through innovative initiatives, research endeavors, and collaborative efforts, Tongji University showcases its dedication to creating a sustainable future. In this article, we will explore the sustainable practices and initiatives undertaken by Tongji University, highlighting its commitment to environmental sustainability.

Tongji University's

Tongji University’s in Sustainability

1. Sustainable Campus Design and Architecture

Tongji University has made sustainable campus design a priority. The university incorporates eco-friendly principles into its buildings, prioritizing energy efficiency and the use of sustainable materials. The campus features green roofs, rainwater harvesting systems, and solar energy installations, which contribute to reducing the university’s carbon footprint. 

By embracing sustainable architecture and design, Tongji University creates a visually appealing and environmentally responsible campus environment.

2. Energy Efficiency and Renewable Energy

Tongji University is dedicated to energy efficiency and the integration of renewable energy sources. The university has implemented comprehensive energy-saving measures across campus buildings, such as efficient lighting systems and smart energy management. 

Tongji also harnesses renewable energy through solar panels and geothermal heating and cooling systems. By reducing energy consumption and utilizing clean energy sources, Tongji University sets a positive example for sustainable energy practices.

3. Sustainable Transportation and Eco-Mobility

Recognizing the importance of sustainable transportation, Tongji University promotes eco-mobility options to reduce carbon emissions. The campus provides extensive bicycle infrastructure, including dedicated lanes and bike-sharing programs, encouraging the use of bicycles as a green transportation alternative. Tongji also encourages the use of public transportation and promotes carpooling to reduce the reliance on private vehicles. 

Through these initiatives, the university fosters a culture of sustainable transportation and actively contributes to reducing air pollution and traffic congestion.

4. Waste Management and Recycling

Tongji University prioritizes waste management and recycling to minimize environmental impact. The university has implemented comprehensive waste separation and recycling systems across the campus, promoting responsible waste disposal and recycling practices. 

Tongji encourages the reduction of single-use plastics and promotes the use of reusable alternatives. By instilling a culture of waste reduction and recycling, Tongji University contributes to a circular economy and resource conservation.

5. Environmental Research and Innovation

Tongji University is renowned for its research and innovation in environmental and sustainable development. The university’s faculty and students actively engage in research projects that address critical sustainability challenges, ranging from clean energy technologies to urban sustainability. 

Tongji also collaborates with international partners to develop innovative solutions for sustainable development. By fostering a culture of research and innovation, Tongji University plays a vital role in advancing sustainable practices and shaping global environmental policies.

6. Environmental Education and Outreach

Tongji University recognizes the importance of environmental education and outreach in fostering a sustainable mindset. The university incorporates sustainability into its academic programs, offering courses and interdisciplinary programs that equip students with the knowledge and skills needed to address sustainability challenges. 

Tongji also organizes environmental awareness campaigns, workshops, and conferences, engaging the campus community and raising awareness about sustainable practices. By nurturing a culture of environmental consciousness, Tongji University inspires individuals to become agents of change in their communities.

Tongji University's

Renewable Energy in Tongji University

Tongji University, an esteemed institution renowned for its forward-looking initiatives, has emerged as a trailblazer in the field of renewable energy. With a steadfast commitment to fostering sustainable solutions, the university’s innovative endeavors are shaping a future powered by clean and green energy sources.

Harnessing the Power of the Sun: Tongji’s Solar Initiatives

Tongji University has taken significant strides in solar energy research and implementation. From pioneering breakthroughs in photovoltaic technology to developing cutting-edge solar panels that maximize energy conversion, the university’s research efforts are instrumental in advancing the solar energy landscape.

Harvesting the Wind’s Potential: Wind Energy Innovations

The university’s dedication to renewable energy extends to wind power. Tongji’s research teams have been instrumental in optimizing wind turbine design, enhancing efficiency, and exploring novel approaches to integrate wind energy into urban environments. These initiatives propel the adoption of wind power as a viable and sustainable energy source.

Bioenergy for a Greener Future

Recognizing the importance of bioenergy in the transition to sustainability, Tongji University delves into biofuel research, biomass utilization, and sustainable waste-to-energy solutions. By converting organic materials into valuable energy resources, the university plays a pivotal role in reducing waste and curbing greenhouse gas emissions.

Global Collaborations and Impactful Research

Tongji University’s contributions to renewable energy extend beyond borders. Collaborative research projects with international partners further amplify the university’s impact. By fostering knowledge exchange and interdisciplinary collaboration, Tongji’s global network accelerates the development and implementation of renewable energy technologies on a worldwide scale.

Educational Empowerment: Nurturing Future Leaders

Equally important is the university’s role in educating the next generation of renewable energy leaders. Tongji’s comprehensive programs empower students with the knowledge and skills needed to drive innovation, advocate for sustainable practices, and catalyze the transition to a cleaner energy future.

A Brighter Tomorrow, Powered by Tongji

Tongji University’s unwavering commitment to renewable energy reflects its dedication to addressing the pressing challenges of our time. Through pioneering research, collaborative partnerships, and transformative education, Tongji is sowing the seeds of change that will cultivate a world where renewable energy illuminates the path to a more sustainable and prosperous future.

Conclusion of Tongji University

Tongji University stands as a shining example of an institution that embraces sustainability and environmental stewardship. 

Through its sustainable campus design, energy efficiency measures, promotion of eco-mobility, waste management practices, research and innovation, and environmental education initiatives, 

Tongji University demonstrates its commitment to creating a sustainable future. As the university continues to lead by example, it paves the way for other institutions in China and around the world to follow suit and prioritize sustainability in their campus operations. Tongji University’s dedication to sustainable practices not only benefits its immediate campus community but also contributes to the broader environmental goals of Shanghai and beyond.

As Tongji University continues to push the boundaries of sustainable practices and drive innovative solutions, it strengthens its position as a leader in sustainability within China and the global academic community. By nurturing a sustainable campus environment, Tongji University is not only preparing students for the challenges of a rapidly changing world but also making a meaningful contribution towards a greener and more sustainable future.

By integrating sustainability into every aspect of campus life, Tongji University fosters a culture of environmental responsibility and inspires future generations of leaders to prioritize sustainable practices. The university’s commitment to sustainable campus design, energy efficiency, sustainable transportation, waste management, research, and education sets a precedent for other academic institutions to follow.

In conclusion, Tongji University’s dedication to sustainability is evident through its comprehensive initiatives and holistic approach to campus sustainability. By prioritizing sustainable campus design, energy efficiency, sustainable transportation, waste management, research, and education, 

Tongji University serves as a beacon of environmental stewardship and inspires individuals to embrace sustainable practices. As the university continues to lead by example, it sets the stage for a future where sustainability and environmental consciousness are at the core of academic institutions and society as a whole.

https://www.exaputra.com/2023/08/shaping-sustainable-future-tongji.html

Renewable Energy

Before Trump, “Contempt of Court” Used to Be a Big Deal

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Most Americans, me included, are puzzled as to how the Trump administration can openly thumb its nose to the findings of our courts. Until recently, behavior like this would have wound you up in jail.

Before Trump, “Contempt of Court” Used to Be a Big Deal

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Renewable Energy

How Households Saved $1,200 with VEU & Air-Con Upgrade? 

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Over the decades, many households across Victoria have resided in older suburban homes equipped with traditional ducted gas heating and aging split-system air conditioners.

However, today the scenario has changed significantly. As energy prices rise, families are feeling the pinch, with annual heating and cooling costs often rising $2,000.

But what are the main issues?

Gas systems that waste energy heating unused rooms, old non-inverter aircons that struggle to maintain even temperatures, and confusion among residents about how rebates, such as the Victorian Energy Upgrades (VEU) program, actually work.

That’s where trusted providers like Cyanergy Australia step in!

By replacing outdated systems with efficient reverse-cycle multi-split air-conditioning and applying VEU rebates, we help many households to cut energy bills, reduce emissions, and enjoy year-round comfort, all in one smart upgrade.

This air conditioning upgrade can lead to a smoother transition from gas to clean, efficient electric heating and cooling, building a smarter, more sustainable home.

So, let’s break down how the household saved $1,200 with the VEU & Air-Con upgrade, what the program offers, and how you can take advantage of similar rebates to cut costs and enjoy a more energy-efficient home.

Cyanergy’s Energy Assessment: What We Found!

From the beginning, Cyanergy’s focus was to remove or disconnect the old gas ducted heater, install a modern
reverse-cycle multi-split air conditioning system, claim the VEU discount, and significantly reduce your annual
energy bills.

Simply via the effective air-conditioner upgrade, households can “Save
up to $2,000 a year on your energy bill.

Here are the findings after Cyanergy’s initial home energy visit:

  • In many Victorian households, the ducted
    gas heater
    is still in use, with high standing and fuel costs.

  • The older split system had poor efficiency. Some of them were oversized for the room and lacked zoning
    options.

  • The electrical switchboard had spare capacity to support a multi-split installation. For example, one
    outdoor unit
    with multiple indoor units for different zones.

Home Heating & Cooling Upgrade| The Step-by-Step Path

It’s well-known that the upgrade path usually involves replacing old systems with modern, energy-efficient solutions.

So, from gas to an energy-efficient electric system, let’s have a look at the upgrade story:

Choosing the right system

For the households that want to upgrade under the VEU air
conditioner rebate
, we proposed a multi-split reverse-cycle system:

  • One efficient outdoor inverter unit connected to three indoor units

  • One in the main living area, one serving the upstairs bedrooms, and

  • One for the downstairs zone, which had very little heating or cooling.

  • Going multi-split provides flexibility: you only run the zones you need, resulting in lower energy
    consumption.

However, in Victoria, Cyanergy is a renowned company that handles design, quoting, installation, and also guides
families through rebate
eligibility
.

Decommissioning the old gas ducted heater

As part of eligibility for the VEU discount, the existing gas heater needed to be decommissioned in most cases.

This involves removing the system or disconnecting the ducted unit from the gas supply, following proper procedures
and obtaining certification, and utilizing expert installers.

Installation Process & Timing Period

  1. Initially, after checking the eligibility, apply for the quotes.

  2. The quote needs to be accepted and dated.

  3. Then the installers will remove the old ducted heater, seal off the vents, and remove or disconnect the gas
    appliance.

  4. The outdoor inverter unit should be mounted externally in these households. The indoor units need to be
    installed in each zone, minimising the intrusion of ductwork and piping.

  5. The wiring and electrical breaker must be upgraded as needed.

  6. The system will then be commissioned, and the necessary documentation will be submitted to the accredited provider for the VEU scheme.

Choosing efficiency over just cooling

Rather than improving just cooling, the Victorian households treated the upgrade as a heating & cooling renovation, switching to a system that uses electricity rather than gas.

Modern inverter systems are more efficient, as they modulate their output, offer better zoning, and can both heat and cool, allowing you to enjoy both winter comfort and summer cooling in one system.

At Cyanergy, we emphasise this home upgrade path:

“Efficient and Eco-Friendly Electric Multi-Split Air Conditioner. Take advantage of up to $7,200 in Victorian Government Energy Upgrade incentives, save big this winter on your gas bill.”

Out-of-pocket and rebate

Here is recent data from the average estimation for a household from the aircon rebate case study in Victoria.

In the quotation, the family had an installation cost of approximately $8,000 for the new multi-split system, including the decommissioning.

The VEU discount for gas-ducted to multi-split upgrades in Victoria was approximately $2,500.

So, their net out-of-pocket cost was ($8,000 – $2,500), which is approx $5,500.

How to Apply for the VEU Rebate: Are You Eligible?

The Victorian Energy Upgrades (VEU) program provides rebates for eligible energy-efficient upgrades such as
installing a high-efficiency reverse-cycle air conditioner to replace an older heating or cooling system.

Before we discuss how
the rebate works
, here are the eligibility criteria.

So, to qualify under the VEU program:

  • The property must be more than two years old.
  • The existing heating or cooling system must be removed or replaced.
  • The new system must be an eligible high-efficiency reverse-cycle unit installed by an accredited
    provider.

How the Rebate Works

In this case, the quote from Cyanergy already included the VEU discount, meaning the price shown was the net cost
after applying the rebate allocated to the installer.

After installation:

  1. The accredited provider registers the upgrade with the VEU program.
  2. They create and claim Victorian Energy Efficiency Certificates (VEECs) for the upgrade.
  3. The value of those certificates is passed on to the customer as an instant discount on the invoice.

The homeowner simply has to:

  • Signs off that the old system was removed or decommissioned.
  • Provides any required evidence or documentation, like serial numbers or photos.

The Result

The rebate is applied instantly at the point of installation, reducing the upfront cost — no need for the homeowner
to submit a separate claim.

Why is the VEU rebate significant?

Rebates like this make a big difference in the decision-making process. As the website says:

On average, households that upgrade
can save
between $120 and $1,100 per year on their energy bills.

Additionally, the government factsheet notes that households can save between $120 and over $1,000 annually,
depending on the type of system and upgrade.

Thus, the rebate reduces the payback period, making the system more widely available.

Energy Bill Before vs After: See the Savings!

Here’s where the real story says: the household’s actual bills before and after the upgrade.

Before Adding Air Conditioning System

  • Ducted gas heating and an older split system.
  • In Victoria during winter months, the average monthly gas cost is approximately $125, and for electricity,
    and other supplementary costs, an additional $30. So roughly $155 per winter month. Therefore, over the
    course of four months, the price can reach nearly $620.

  • In summer cooling months, if their older split system ran for 2 hours per day, for example, from May to
    October, it would cost around $50 per month. Over the 6 months, it will be, $300.

  • Total annual heating and cooling cost is approximately $920

After Adding the Air Conditioning System

  • Household that installed a Multi-split reverse-cycle system.
  • During the winter months, running the zones efficiently and utilizing the inverter system resulted in a
    decrease in heating electricity costs.
  • Let’s say the average is around $70 per month over four months, totaling approximately $280.

  • In the summer months, efficient cooling costs approximately $30 per month over six months, totaling around
    $180.

  • So, the annual heating
    and cooling
    cost is approximately $460.

Net Savings

Annual savings: $920 (before) – $460 (after) = $460 per year.

At that rate, the upgrade pays for itself in net savings and an upfront rebate.

However, as they also removed gas connection fees and standing charges, improving comfort, therefore, the “effective”
savings were perceived to be higher, around $1,200 in the first year with the air conditioning upgrade.

This figure also includes avoided gas standing charges of $150, lower maintenance costs of the old system, and
improved efficiency.

Maximising Your Savings| Key Insights from the VEU Rebate Program

Based on the case study and Cyanergy’s experience, here are some lessons and actionable tips for homeowners
considering an upgrade.

  • Don’t wait until your system dies.
  • Replace outdated or inefficient gas or electric resistance systems immediately. Once the system starts
    failing, you
    may have fewer options or higher installation disruption.

  • Choose a provider who handles the rebates.
  • Dealing with the rebate or discount component (VEU) on your own adds complexity, like documentation,
    compliance, and
    installation. So look for an accredited provider.

  • Understand the actual savings potential.
  • It’s not just the rebate amount; consider running costs, efficiency improvements, zoning, and the ability to
    heat and
    cool.

  • Ensure proper sizing and zone control.
  • As many families discovered, the benefit came from zoning: you only heat and cool rooms you use. Oversized
    units or
    whole-home heating can reduce savings.

  • Factor in non-energy benefits.
  • Better comfort, for example, quieter systems and more consistent temperatures, as well as the removal of gas
    standing
    charges, less
    maintenance
    , and improved resale appeal for eco-conscious buyers, all benefit you.

  • Check the accreditation and compliance.
  • With rebate programs, there’s always a risk of non-compliant installations or companies that don’t follow
    through.

    So, do your homework: check that the installer is accredited for VEU, ask for references, and ensure that the
    documentation is completed appropriately.

  • Request detailed quotes that include estimates for both “before rebate” and “after rebate”
    costs.
  • This helps you see how much you’re actually paying, the discount you receive, and ensures transparency. The
    rebate is
    not always the full difference; minimum contribution rules apply.

  • Monitor your bills after installation.
  • Keep track of your energy bills (gas & electricity) before and after for at least 12 months. This will
    indicate
    whether the savings are as expected and aid in budgeting.

    Be realistic about pay-back

    Although the rebate helps upfront, large systems still cost thousands of dollars. Don’t expect payback in one
    or two
    years (unless you have extreme usage).

    However, with a well-designed system, rebates, and efficiency gains, a payback of 5-10 years or better is
    possible,
    depending on usage.

Final Notes

This aircon rebate case study illustrates the VEU saving. By working with Cyanergy Australia, households transformed a traditional, inefficient gas-ducted heating and older split cooling system into a modern, efficient, zone-controlled multi-split reverse-cycle air-conditioning system.

This was made more affordable through the VEU scheme discount.

The result? A net cost of around $5,500, improved comfort, and savings of approximately $1,200 in the first year.

This real-world “VEU saving example” shows that:

  1. Rebates matter as they make the upgrade financially viable.
  2. Efficiency matters as modern multi-split reverse-cycle systems deliver lower running costs.

  3. Removing inefficient gas heating can unlock significant savings.
  4. A reliable installer who navigates the rebate process effectively is crucial.

So, if you are looking for an accredited provider in Australia, Cyanergy is here to help!

Contact us today to receive a free solar quote. We will handle all your paperwork to ensure a fast and smooth installation process.

Your Solution Is Just a Click Away

The post How Households Saved $1,200 with VEU & Air-Con Upgrade?  appeared first on Cyanergy.

How Households Saved $1,200 with VEU & Air-Con Upgrade? 

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Renewable Energy

Air Power

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About 20 years ago, a friend asked me if I was aware that cars could run on air.  I asked, delicately, what she meant, and she explained that cars can run on compressed air.

“Ah,” I replied. “Of course they can. But where does the energy come from that compresses the air?”  End of conversation.

Now, it’s back.  Now there are enormous swaths of the population who know so little about middle school science that they believe we can put cars on the road, in an ocean of air, and extract energy out of that air to power our automobiles.

If you’re among these morons and want to invest with some heavy-duty fraud/charlatans, here’s your opportunity.  They say that it’s “self-sustaining and needs no fuel.” If that makes sense to you, be my guest.

Air Power

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