Mercedes Benz set to launch home battery storage in Australia

mercedes benz home battery storage

Tesla’s Home Battery gets competition from Mercedes-Benz. Image source.

Mercedes Benz Australia plans to unveil the home battery storage offering at its Melbourne headquarters in Mulgrave, along with an on-site four-car charging station, made up of the lithium-ion battery packs and solar panels.

The plan is for the company to sell the batteries to customers as a package with rooftop solar – the cost per 2.5kWh battery unit has not yet been released – through an as-yet unnamed “electricity retailer” partner.

According to Mercedes Benz German parent company, Daimler, up to eight 2.5kWh modules can be combined to make a capacity of up to 20kWh, allowing solar households to “buffer surplus… power with virtually no losses,” and increase their self-consumption to as much as 65 per cent.

The batteries have been available on the German market – where they are also sold as packages with solar by a network of sales partners – since April of this year, and according to the website have generated “tremendous interest” and numerous orders.

The move into the Australian residential energy storage market, says Mercedes head of corporate communications David McCarthy, is a natural progression, and goes hand in hand with the roll-out of electric cars: Mercedes is releasing three new plug-in hybrid EV models in Australia in July.

It also puts Mercedes into direct competition with fellow prestige EV maker, Tesla, whose 7kWh Powerwall battery was released to much fanfare in Australia in December last year.

“The future says this is one of the directions that people are going to want to go in,” McCarthy told One Step Off The Grid on Wednesday. “It’s not enough to charge your car… people who are buying a plug-in hybrid want to know where the energy is coming from and have the ability to generate the energy and store it.”

In terms of demand for the Mercedes home battery, McCarthy said that the level of interest being shown in Australia indicated they might move a few hundred a year, but that it was “unchartered territory”, so difficult to predict.

As for EV demand, McCarthy concedes that numbers are still small in Australia, and will take a while yet to build, but that stationary storage will help move this along.

“It will take a while… for EVS to sell in greater numbers,’ McCarthy told One Step. “Incentives are only one of the issues …and where the power comes from that charges the cars is another – and this is our solution to that problem.

“A customer who wants to buy a package (EV, battery and solar) can do so,” McCarthy said. “Depending on how much you want [in kWh] it’ll be enough to charge your car, or run your house too, or even feed back into the grid. So it depends what level you want to go to.”

IRENA: Solar energy boosts food production and fights poverty

solar irrigation pump

“Solar sharing”= agriculture and sunshine brings new prosperity to farmers around the world. Image source.

A new paper from IRENA, launched at InterSolar Europe in Munich, highlights the way solar technology is being used to power food production and empower communities to escape poverty.

Solar Pumping for Irrigation: Improving livelihoods and sustainability, details how solar technology is being used to improve farming efficiency and agricultural output, highlighting successful examples from across Africa and Asia.

A growing need for change

According to the United Nations, more than 40% of the world’s population makes a living in the agriculture sector — many of whom live in poverty. Socio-economic development is strongly linked to agricultural productivity, and as climate change continues to disrupt rainfall patterns, developing irrigation is becoming a vital tool to combat poverty. Given that only 5% of sub-Saharan African farmland irrigated, and that the continent is home to one of the fastest growing populations on the planet, the need to produce more food and energy is becoming critical.

Some countries are now exploring solar-based solutions (e.g. water pumps powered by solar panels), which provide reliable, cost-effective, and environmentally sustainable energy for decentralized irrigation services. These solutions are even cost-competitive with diesel powered pumps in many cases.

For example, Solar Pumping for Irrigation highlights a case in India, where diesel-powered water pumps on salt-pan farms were replaced with solar-powered pumps. The change resulted in a life-changing 161% increase in annual monetary savings for the farmers, in addition to reduced air pollution and CO2 emissions.

Solar-pumps and other solar technologies are proven to positively affect the lives of both men and women. For example, the installation of three solar-powered drip-irrigation systems in the Kalale district of northern Benin helped a co-operative of 35-45 women free themselves from four hours of labor a day. The increased time and more reliable income from the irrigation system helps the women to feed, educate, and provide medical care for their families.

Adopting a ‘Nexus Approach’

Water, energy, and food are intimately interlinked. Within this nexus, actions taken in any areas affects the others. In Solar Pumping for Irrigation, IRENA calls for a holistic approach with regards to policy, which recommends to:

  • foster innovation and flexibility when delivering solar pumping solutions;
  • take into account target groups and the long-term sustainability of markets when considering financial instruments to support solar pumping;
  • focus on after-sales support and capacity building: providing support for regular operation and maintenance;
  • package energy and water-efficient solutions in water-stressed areas;
  • assess the direct and indirect impacts on water resources;
  • monitor performance and gather data;
  • consider the influence of availability and cost of energy on the choice of crops grown;
  • and adopt an integrated approach to programme design: solar pumps can also bring electricity to poorly connected communities and contribute to the achievement of multiple Sustainable Development Goals.

IRENA: Solar energy boosts food production and fights poverty

solar irrigation pump

“Solar sharing”= agriculture and sunshine brings new prosperity to farmers around the world. Image source.

A new paper from IRENA, launched at InterSolar Europe in Munich, highlights the way solar technology is being used to power food production and empower communities to escape poverty.

Solar Pumping for Irrigation: Improving livelihoods and sustainability, details how solar technology is being used to improve farming efficiency and agricultural output, highlighting successful examples from across Africa and Asia.

A growing need for change

According to the United Nations, more than 40% of the world’s population makes a living in the agriculture sector — many of whom live in poverty. Socio-economic development is strongly linked to agricultural productivity, and as climate change continues to disrupt rainfall patterns, developing irrigation is becoming a vital tool to combat poverty. Given that only 5% of sub-Saharan African farmland irrigated, and that the continent is home to one of the fastest growing populations on the planet, the need to produce more food and energy is becoming critical.

Some countries are now exploring solar-based solutions (e.g. water pumps powered by solar panels), which provide reliable, cost-effective, and environmentally sustainable energy for decentralized irrigation services. These solutions are even cost-competitive with diesel powered pumps in many cases.

For example, Solar Pumping for Irrigation highlights a case in India, where diesel-powered water pumps on salt-pan farms were replaced with solar-powered pumps. The change resulted in a life-changing 161% increase in annual monetary savings for the farmers, in addition to reduced air pollution and CO2 emissions.

Solar-pumps and other solar technologies are proven to positively affect the lives of both men and women. For example, the installation of three solar-powered drip-irrigation systems in the Kalale district of northern Benin helped a co-operative of 35-45 women free themselves from four hours of labor a day. The increased time and more reliable income from the irrigation system helps the women to feed, educate, and provide medical care for their families.

Adopting a ‘Nexus Approach’

Water, energy, and food are intimately interlinked. Within this nexus, actions taken in any areas affects the others. In Solar Pumping for Irrigation, IRENA calls for a holistic approach with regards to policy, which recommends to:

  • foster innovation and flexibility when delivering solar pumping solutions;
  • take into account target groups and the long-term sustainability of markets when considering financial instruments to support solar pumping;
  • focus on after-sales support and capacity building: providing support for regular operation and maintenance;
  • package energy and water-efficient solutions in water-stressed areas;
  • assess the direct and indirect impacts on water resources;
  • monitor performance and gather data;
  • consider the influence of availability and cost of energy on the choice of crops grown;
  • and adopt an integrated approach to programme design: solar pumps can also bring electricity to poorly connected communities and contribute to the achievement of multiple Sustainable Development Goals.