Quantum Resilient Smart Contracts for Ethical Governance and Sustainable Circular Economy Innovations

Authors

  • Dr. Megala Rajendran
  • R. Gopalakrishnan
  • Dr.A. Dharmaraj
  • Dadajon Dadabayev Rustamovich

DOI:

https://doi.org/10.71086/IAJSE/V12I4/IAJSE1293

Keywords:

Quantum Resilient Smart Contracts, Post Quantum Cryptography, Lattice Based Signatures, Blockchain Enabled Circular Economy, Ethical Blockchain Governance, Waste Management Traceability.

Abstract

Background: Quantum computing poses a threat to classical signatures, like ECDSA, and makes long-lived blockchain smart contracts, particularly those used in a system of the circular economy and sustainability, susceptible to future forgery and governance attacks. Abstract: This paper presents a quantum resilient smart contract lattice architecture to achieve ethical governance and resource tracking in the use of a circular economy and maintain realistic performance. Methods: The architecture uses a NIST‑track lattice‑based post‑quantum signature scheme (CRYSTALS‑Dilithium) with one signature per transaction in an Ethereum‑like environment, adds batched post‑quantum verification opcodes to the virtual machine and a post‑quantum‑aware gas model, and introduces Solidity contracts for recycle passports, tokenized waste‑management incentives, and DAO‑based governance. Ethical governance is operationalized using a transparency index together with quantitative fairness and inclusiveness measures derived from reward distributions and participation rates. Results: The proposed framework has a 2.0 ms verification latency, 450 transactions per block, 70% relative throughput, and 130 GB/year storage, compared to 2.8 ms verification, 268 transactions per block, 55% relative throughput, and 140 GB/year storage in the hybrid post‑quantum baseline and the classical ECDSA configuration. Conclusion: These findings suggest quantum resilient smart contracts are a promising basis of long-horizon circular economy governance, which provides superior security and ethics by design assurances and sustains competitive performance and sustainability attributes compared to both classical and hybrid post-quantum baselines.

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Published

2025-12-30

Issue

Section

Articles

How to Cite

Rajendran, M., Gopalakrishnan, R., Dharmaraj, A., & Rustamovich, D. D. (2025). Quantum Resilient Smart Contracts for Ethical Governance and Sustainable Circular Economy Innovations. International Academic Journal of Science and Engineering, 12(4), 248-257. https://doi.org/10.71086/IAJSE/V12I4/IAJSE1293