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BENQI

BENQI price (QI)

Buying BENQI (QI) on Bitpanda is easy, fast, and secure. Check the current QI value and live chart in GBP and get to know more about QI.

BENQI

BENQI price (QI)

Buying BENQI (QI) on Bitpanda is easy, fast, and secure. Check the current QI value and live chart in GBP and get to know more about QI.

€0.00113

-€0.00007-6.07 %
-€0.00007-6.07 %



This converter shows values for info only and doesn’t reflect actual transaction rates.

Last updated: 09/09/2026, 15:20:00

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Figures shown refer to the past, and are based on gross performance. Past performance is not a reliable indicator of future results, and fees will reduce your net returns. Reference period: last 24 hours. Source: Bitpanda, based on prices from multiple trading venues. Please review the risk disclosure before investing.

Figures shown refer to the past, and are based on gross performance. Past performance is not a reliable indicator of future results, and fees will reduce your net returns. Reference period: last 24 hours. Source: Bitpanda, based on prices from multiple trading venues. Please review the risk disclosure before investing.

Price of BENQI today

Review the latest BENQI price movements. Here is today’s trend at a glance: -6.07 %

BENQI price statistics

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BENQI market stats

  • Daily high

    €0.00

  • Daily low

    €0.00

  • Volatility (1M)

    19.99%

  • 52W High

    €0.01

  • 52W Low

    €0.00

  • Market cap

    €7.81M

BENQI conversion table

1 EUR

887.97 QI

5 EUR

4439.87 QI

10 EUR

8879.73 QI

15 EUR

13319.60 QI

20 EUR

17759.47 QI

25 EUR

22199.33 QI

1 Benqi (QI) to Us Dollar (USD)

USD 0.00

1 Benqi (QI) to Swiss Franc (CHF)

CHF 0.00

1 Benqi (QI) to British Pound Sterling (GBP)

GBP 0.00

1 Benqi (QI) to Turkish Lira (TRY)

TRY 0.06

1 Benqi (QI) to Polish Zloty (PLN)

PLN 0.00

1 Benqi (QI) to Hungarian Forint (HUF)

HUF 0.41

1 Benqi (QI) to Czech Koruna (CZK)

CZK 0.03

1 Benqi (QI) to Norwegian Krone (NOK)

NOK 0.01

1 Benqi (QI) to Swedish Krona (SEK)

SEK 0.01

1 Benqi (QI) to Danish Krone (DKK)

DKK 0.01

1 Benqi (QI) to Romanian Leu (RON)

RON 0.01

About BENQI (QI)

BENQI (QI) is a cryptocurrency token built on the Avalanche blockchain, focusing on providing decentralised finance (DeFi) services. QI serves as the native utility token within the BENQI ecosystem, offering users various features such as lending, borrowing, and yield farming. The project aims to enhance the efficiency and accessibility of DeFi by utilising Avalanche's high-performance infrastructure. BENQI enables users to earn passive income through liquidity provision and participate in governance by voting on proposals and decision-making processes.

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  • ESG (Environmental, Social, and Governance) regulations for crypto assets aim to address their environmental impact (e.g., energy-intensive mining), promote transparency, and ensure ethical governance practices to align the crypto industry with broader sustainability and societal goals. These regulations encourage compliance with standards that mitigate risks and foster trust in digital assets.

    Name

    Bitpanda Asset Management GmbH, Bitpanda GmbH

    Relevant legal entity identifier

    9845005X9B7N610K0093, 5493007WZ7IFULIL8G21

    Name of the crypto-asset

    BENQI

    Consensus Mechanism

    The Avalanche blockchain network employs a unique Proof-of-Stake consensus mechanism called Avalanche Consensus, which involves three interconnected protocols: Snowball, Snowflake, and Avalanche. Avalanche Consensus Process 1. Snowball Protocol: o Random Sampling: Each validator randomly samples a small, constant-sized subset of other validators. Repeated Polling: Validators repeatedly poll the sampled validators to determine the preferred transaction. Confidence Counters: Validators maintain confidence counters for each transaction, incrementing them each time a sampled validator supports their preferred transaction. Decision Threshold: Once the confidence counter exceeds a pre-defined threshold, the transaction is considered accepted. 2. Snowflake Protocol: Binary Decision: Enhances the Snowball protocol by incorporating a binary decision process. Validators decide between two conflicting transactions. Binary Confidence: Confidence counters are used to track the preferred binary decision. Finality: When a binary decision reaches a certain confidence level, it becomes final. 3. Avalanche Protocol: DAG Structure: Uses a Directed Acyclic Graph (DAG) structure to organize transactions, allowing for parallel processing and higher throughput. Transaction Ordering: Transactions are added to the DAG based on their dependencies, ensuring a consistent order. Consensus on DAG: While most Proof-of-Stake Protocols use a Byzantine Fault Tolerant (BFT) consensus, Avalanche uses the Avalanche Consensus, Validators reach consensus on the structure and contents of the DAG through repeated Snowball and Snowflake.

    Incentive Mechanisms and Applicable Fees

    Avalanche uses a consensus mechanism known as Avalanche Consensus, which relies on a combination of validators, staking, and a novel approach to consensus to ensure the network's security and integrity. Validators: Staking: Validators on the Avalanche network are required to stake AVAX tokens. The amount staked influences their probability of being selected to propose or validate new blocks. Rewards: Validators earn rewards for their participation in the consensus process. These rewards are proportional to the amount of AVAX staked and their uptime and performance in validating transactions. Delegation: Validators can also accept delegations from other token holders. Delegators share in the rewards based on the amount they delegate, which incentivizes smaller holders to participate indirectly in securing the network. 2. Economic Incentives: Block Rewards: Validators receive block rewards for proposing and validating blocks. These rewards are distributed from the network’s inflationary issuance of AVAX tokens. Transaction Fees: Validators also earn a portion of the transaction fees paid by users. This includes fees for simple transactions, smart contract interactions, and the creation of new assets on the network. 3. Penalties: Slashing: Unlike some other PoS systems, Avalanche does not employ slashing (i.e., the confiscation of staked tokens) as a penalty for misbehavior. Instead, the network relies on the financial disincentive of lost future rewards for validators who are not consistently online or act maliciously. o Uptime Requirements: Validators must maintain a high level of uptime and correctly validate transactions to continue earning rewards. Poor performance or malicious actions result in missed rewards, providing a strong economic incentive to act honestly. Fees on the Avalanche Blockchain 1. Transaction Fees: Dynamic Fees: Transaction fees on Avalanche are dynamic, varying based on network demand and the complexity of the transactions. This ensures that fees remain fair and proportional to the network's usage. Fee Burning: A portion of the transaction fees is burned, permanently removing them from circulation. This deflationary mechanism helps to balance the inflation from block rewards and incentivizes token holders by potentially increasing the value of AVAX over time. 2. Smart Contract Fees: Execution Costs: Fees for deploying and interacting with smart contracts are determined by the computational resources required. These fees ensure that the network remains efficient and that resources are used responsibly. 3. Asset Creation Fees: New Asset Creation: There are fees associated with creating new assets (tokens) on the Avalanche network. These fees help to prevent spam and ensure that only serious projects use the network's resources.

    Beginning of the period

    2024-09-14

    End of the period

    2025-09-14

    Energy consumption

    385.40775 (kWh/a)

  • Description

    These tokens govern decentralised lending protocols. These platforms allow users to lend assets to earn interest or borrow assets by providing collateral. The protocol uses smart contracts to automate interest rates and collateral management.

    Risks

    Bad debt and liquidation failure. Lending protocols rely on the liquidation of collateral to stay solvent. If the market crashes rapidly, the system may fail to liquidate collateral fast enough to cover the loans. This leads to 'bad debt' which can bankrupt the protocol. Governance token holders are often the backstop for this debt and could see their tokens diluted or sold off to cover losses.

    Oracle dependency. Lending protocols require accurate real-time price feeds (oracles) to value collateral. If an oracle is manipulated or hacked, attackers can borrow more than they are allowed or trigger false liquidations.