Electrical Power & Protection


Zinc batteries for renewable energy storage

Technews Industry Guide: Sustainable Manufacturing 2023 Electrical Power & Protection

Zinc-based batteries are a new energy storage and conversion technology with significant potential for renewable energy applications, according to Simon Norton, executive director of International Zinc Association (IZA) Africa. The technology has attracted attention due to its high theoretical energy density, safety, abundant resources, environmental friendliness and low cost. In recent years considerable effort has gone into improving the performance of zinc-based batteries. Battery cycle life and energy efficiency can be improved by electrolyte modification and the construction of highly efficient rechargeable zinc anodes.

The global risk posed by climate change and the resultant energy crisis due to the excessive use of traditional fossil fuels have spurred the development of renewable energy sources. Therefore, the sustainable development of clean energy globally is critical. Renewable energy sources such as solar, tidal and wind power all have their role to play. However, the intermittent and regional characteristics of renewable energy means that large-scale power generation and long-distance transmission projects are cost prohibitive. Thus, developing highly efficient energy storage and conversion technology is important to achieve effective utilisation and distribution of renewable energy to solve the issue of energy storage.

The researchers point out that lithium-ion batteries (LIBs) dominate the energy storage market at present due to their high capacity. Nevertheless, thermal stability, destruction of electrode structures, flammability of organic electrolytes and the lithium anode, high cost and low specific energy density significantly limit their large-scale commercialisation.

In contrast, aqueous batteries, including zinc/nickel (Zn/Ni), zinc/manganese (Zn/Mn), iron/nickel (Fe/Ni), and iron/cobalt (Fe/Co), have the advantages of low cost, environmental friendliness, and high ionic conductivity. Compared with iron and manganese, the slow hydrogen evolution of zinc in aqueous electrolytes eliminates the risk of fire. More importantly, metal zinc possesses outstanding electrochemical properties, such as a relatively low redox potential, an outstanding specific volumetric capacity, and a high theoretical capacity.

In terms of Zn-ion batteries (ZIBs), safety, high zinc abundance, and a simple assembly process promise large-scale energy storage application. Metal zinc has been used as an anode material since 1799. Zinc-based battery technology accounts for a third of the global battery market. Zinc can be used in Zn-air batteries (ZABs) and Zn-ion and Zn hybrid batteries.

Many companies have already been deploying ZABs for utility-scale energy storage. For example, NantEnergy installed 3000 systems in nine countries in 2019 at $100/kWh. These ZABs with a half-open structure use oxygen directly from ambient air as a cathode reactant, which can exhibit high capacity and energy density. They have a high theoretical specific energy density that is about five times greater than LIBs and are far less expensive. However, the achievable battery lifetime is about 150 cycles under current practical conditions, while the round-trip energy efficiency is usually under 60%, way below commercialisation requirements.

Zinc-based batteries tend to have poor cycle life, low coulombic efficiency (CE), and capacity fading. This is due to uncontrolled growth of zinc dendrites, insulation and discharge products with poor reversibility, and continuous consumption of electrolytes. The operation of ZIBs is based on the stripping and plating of zinc on the anode, zinc ion insertion, extraction and conversion reactions at the cathode, and zinc ion transfer between the cathode and anode. However, ZABs only involve stripping and plating of Zn on the anode in aqueous electrolytes. During charging, zinc ions are redeposited on the zinc anode without the added complication of replacing battery components. Generally, the poor reversibility of the zinc anode and thermodynamic instability are the main obstacles to the commercialisation of zinc-based batteries.

Widely reported research has focused on zinc anode modification, cathode material design, and electrolyte development and improvement. Here the zinc anode has shown compatibility with both aqueous and non-aqueous electrolytes. Aqueous electrolytes have excellent ionic conductivity, non-flammability, easy battery assembly, and non-toxic properties. However, the thermodynamic instability of the zinc anode causes severe challenges, including shape change, passivation, zinc dendrites, and hydrogen evolution reaction (HER). Similar to the Li anode, side reactions consume the zinc anode and electrolyte, resulting in low CE. For organic electrolytes, non-flammable electrolytes are often employed to reduce flammability, while corrosion is minimised thanks to their thermodynamic stability.

“Over the past decade, significant progress and exciting breakthroughs have been achieved in designing anode structures, applying additives, and exploring alternative electrolytes to further commercialise zinc-based batteries,” say the researchers. “Overall, zinc plays a vital role in renewable energy. It stands to enable the development of low cost, green energy storage technologies, in addition to its contribution in the area of solar panels and wind turbines,” concludes Norton.




Share this article:
Share via emailShare via LinkedInPrint this page

Further reading:

Power supply with scalability optimised
Schneider Electric South Africa Electrical Power & Protection
Schneider Electric has introduced the Easy UPS 3-Phase Modular to the South African marketplace. This robust uninterruptible power supply (UPS) is designed to protect critical loads while offering third-party verified Live Swap functionality.

Read more...
Prioritising arc flash safety
Comtest Electrical Power & Protection
Comtest has developed a range of thermal imaging and wireless testing tools from Fluke, designed to ensure safety is the top priority for engineers working in potentially dangerous arc flash zones.

Read more...
Hot Dip Galvanizers Association shines new light on renewable energy
Electrical Power & Protection
The Hot Dip Galvanizers Association of Southern Africa plays an important role in supporting the energy value chain – which spans clean, renewable and green energy – as it powers towards key sustainability targets.

Read more...
ACTOM supplies high-voltage equipment to wind farm project
ACTOM Electrical Machines Electrical Power & Protection
ACTOM High Voltage Equipment is currently in the process of manufacturing 400 kV and 132 kV high-voltage primary equipment for the Ummbila Emoyeni wind farm project in Mpumalanga.

Read more...
Energy measurement module for BL20 I/O System
Turck Banner Southern Africa Electrical Power & Protection
Turck’s BL20 energy measurement module enables precise monitoring of the energy consumption of single- or three-phase systems.

Read more...
Distributed energy resource management systems: a grid symphony
Schneider Electric South Africa Electrical Power & Protection
To listen to a symphony is one of the world’s great gifts. A conductor must ensure that instruments play beautifully as a whole and are kind to the ear and uplifting to the spirit yet shine in their individuality. The same can be said of a DERMS, which must effectively manage diverse energy sources to avoid compromising the grid’s integrity.

Read more...
Focus on energy sector infrastructure development can drive economic growth
Electrical Power & Protection
Post-election periods in South Africa often see a renewed focus on infrastructure development, with a specific emphasis on directing investments towards the energy sector. This strategic approach aims to accelerate economic growth, address energy challenges, and ultimately uplift the overall standard of living for the populace.

Read more...
Turning the continent into a global leader for green fuel
Electrical Power & Protection
Africa is at a turning point, with the potential to shift from being a supplier of raw materials to becoming a leader in advanced manufacturing, particularly in the growing green hydrogen market. For this transformation to happen, African countries must work together, combining their resources and talents to build a strong local economy.

Read more...
Epiroc showcases battery-electric drill rig at MINExpo 2024
Electrical Power & Protection
Epiroc recently showcased a demonstrator of the first ever Down-The-Hole SmartROC D65 battery-electric drill rig at the MINExpo exhibition in Las Vegas.

Read more...
Smart metering for utility management and sustainability
Electrical Power & Protection
Theodore Paraskevakos, a Greek-American inventor and businessman, developed the first smart meters in 1972 while collaborating with Boeing. Since then, smart meters have evolved significantly.

Read more...