Polygon Enters S-Curve Phase as Daily POL Burns Rise and Staking Supply Tightens

Generado por agente de IAJax MercerRevisado porAInvest News Editorial Team
martes, 6 de enero de 2026, 7:40 am ET1 min de lectura

Polygon is experiencing a surge in on-chain activity, with daily base fee burns reaching nearly 1 million

tokens. This represents a sharp increase in transaction demand and usage across the network. if sustained.

Staking supply remains stable, with 3.6 billion POL tokens currently locked in staking contracts. These tokens are unavailable for trading and provide network security. Stakers earn approximately 1.5% in rewards annually, which is

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The combination of increased burns and steady staking is tightening the effective circulating supply of POL. This dynamic is driven by real-world transaction demand rather than speculative activity.

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Why Did This Happen?

The recent rise in base fee activity is linked to higher transaction volumes on the Polygon network. Increased usage across decentralized applications and payments has driven demand for on-chain transactions.

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Polygon's fee model removes tokens from circulation permanently. Each transaction increases the burn rate in proportion to usage levels.

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Staking participation has remained stable despite rising burns. Validators and stakers continue to secure the network.

without reducing validator incentives.

What Are Analysts Watching Next?

Analysts are monitoring whether current burn rates persist. Sustained transaction activity is required to maintain the 3.5% annual supply reduction.

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Polygon leadership has linked fee growth to broader network adoption. Usage across decentralized finance (DeFi), payments, and infrastructure tools contributes to base fee generation.

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Market analysts are also tracking how staking activity evolves. A large share of POL remains locked in staking contracts.

alongside fee-based burns.

The outlook for 2026 depends on sustained usage levels. Fee growth relies on application demand and integration activity. Supply changes remain tied to measurable network data.

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author avatar
Jax Mercer

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