Chemicals Industry Today

Lithium Oxalate Market to Grow at 6.88% Annually, Reaching $0.739 Billion by 2032

This growth is attributed to the increasing demand for lithium-ion batteries in electric vehicles and consumer electronics
Published 18 June 2025

In the world of chemistry, many compounds are used in industries, laboratories, and even everyday products. One such lesser-known but important compound is Lithium Oxalate. 

Lithium Oxalate Market Size was estimated at 0.41 (USD Billion) in 2023. The Lithium Oxalate Market Industry is expected to grow from 0.43(USD Billion) in 2024 to 0.739 (USD Billion) by 2032. The Lithium Oxalate Market CAGR (growth rate) is expected to be around 6.88% during the forecast period (2024 - 2032)

How is Lithium Oxalate Made?

Lithium oxalate is usually prepared in a laboratory or industrial setting by reacting lithium hydroxide or lithium carbonate with oxalic acid. The process is fairly simple:

First, oxalic acid is dissolved in water.

  • Then, lithium hydroxide or carbonate is slowly added to the solution.
  • The reaction forms lithium oxalate and water or carbon dioxide as byproducts.
  • The lithium oxalate is then filtered, dried, and sometimes recrystallized to purify it.

This compound is generally stable at room temperature but can decompose when heated to high temperatures. 

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Physical and Chemical Properties

Here are a few important characteristics of lithium oxalate:

  • Appearance: White or colorless crystalline powder.
  • Solubility: Slightly soluble in water.
  • Stability: Stable under normal conditions but decomposes when heated.
  • Toxicity: It should be handled carefully as it can be harmful if swallowed or inhaled.

These properties make lithium oxalate suitable for specific applications in the chemical, battery, and research fields.

Uses of Lithium Oxalate

Lithium oxalate may not be a household name, but it has several specialized uses, including:

1. In Lithium-Ion Batteries

One of the most exciting uses of lithium oxalate is in the battery industry. Lithium-ion batteries power most of our electronics today, from smartphones to electric vehicles (EVs). Researchers are studying lithium oxalate as a potential electrolyte additive or solid electrolyte material. Its ability to decompose into lithium carbonate can improve the battery’s performance and lifespan.

2. In Ceramics and Glass

Lithium compounds, including lithium oxalate, are often used in the production of ceramics and specialty glass. They help reduce melting points, improve hardness, and enhance color. Lithium oxalate can be added to these materials to achieve better thermal and structural properties.

3. In Laboratory and Research Work

In academic and industrial labs, lithium oxalate is used in various chemical reactions and experiments, especially where lithium ions are needed. It serves as a source of lithium in many syntheses.

4. In Analytical Chemistry

Lithium oxalate is used in chemical analysis, especially in studying thermal decomposition. Scientists use it to understand how compounds break down when heated and how lithium behaves under specific conditions.

Why is Lithium Oxalate Important?

In recent years, there has been a growing demand for lithium compounds due to the boom in electric vehicles and portable electronics. Lithium oxalate plays a small but significant role in the development of next-generation batteries and materials engineering.

Moreover, researchers are constantly looking for new materials that are safe, efficient, and environmentally friendly. Lithium oxalate is gaining attention because it can decompose into non-toxic and recyclable byproducts, such as lithium carbonate.

Safety and Handling

Like many chemicals, lithium oxalate should be handled with care. It is:

  • Irritating to the eyes, skin, and respiratory system.
  • Harmful if swallowed or inhaled.

Should be stored in a cool, dry place away from strong acids and heat.

Proper lab gear, including gloves and goggles, should always be used when working with this compound.

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As we move toward cleaner energy and better battery technology, materials like lithium oxalate may become more important. Researchers are already exploring its role in improving battery safety and efficiency.

If lithium oxalate proves to be a better alternative or additive in lithium-ion batteries, it may help make devices last longer, charge faster, and operate more safely. The future of energy storage may very well involve advanced compounds like this.

Key Companies in the Lithium Oxalate Market Include:

  • Tianjin Bodi Chemical Co., Ltd.
  • Merck
  • American Elements
  • Solvay
  • SK Chemicals
  • Alabaster Industries
  • Anhui Huaxin Chemical Co., Ltd.
  • Wuxi Hengchang Chemical Co Ltd.
  • Geiger Co.
  • Jiangsu Haiheng Advanced Chemicals Co. Ltd.
  • Baoding Sanli Chemical Co., Ltd.
  • Chemetall
  • NEOCHEM

Lithium oxalate may not be widely known, but it is a valuable chemical with promising uses. From battery technology to ceramics, this compound is finding its place in modern industries. As technology continues to grow, so does the need for smart, efficient, and clean materials—and lithium oxalate is part of that journey.

Whether you're a student, a researcher, or just curious about chemistry, it's exciting to see how such simple compounds can help shape the future.

Translation of the Report in Different Languages 

Marché de l'oxalate de lithium | Lithiumoxalat-Markt | 리튬 옥살레이트 시장 | 草酸锂市场 | Mercado de oxalato de litio | シュウ酸リチウム市場 

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