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Conflux

Preço de Conflux (CFX)

Comprar Conflux na principal corretora europeia de compra e venda de ativos digitais é simples, rápido e seguro.

Comprar Conflux na principal corretora europeia de compra e venda de ativos digitais é simples, rápido e seguro.

€0.0465

-€0.0008-1.64 %
-€0.0008-1.64 %



Este conversor mostra valores apenas para informação e não reflete as taxas reais de transação.

Última atualização: 02/10/2026, 22:10:00

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Os criptoativos são altamente voláteis. Podes perder parte ou até todo o teu investimento, por isso é importante investires apenas o que estás disposto a perder. Para uma visão detalhada dos riscos, consulta o Divulgação de Risco.

Os criptoativos são altamente voláteis. Podes perder parte ou até todo o teu investimento, por isso é importante investires apenas o que estás disposto a perder. Para uma visão detalhada dos riscos, consulta o Divulgação de Risco.

Preço de Conflux hoje

Consulta os últimos movimentos de preço de Conflux. Aqui está a tendência de hoje, num relance: -1.64 %

Estatísticas de preços de Conflux

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Estatísticas de mercado de Conflux

  • Max diário

    €0.05

  • Mínimo diário

    €0.05

  • Volatilidade (1 M)

    16.77%

  • Valor mais alto em 52 sem.

    €0.13

  • Valor mais baixo em 52 sem.

    €0.03

  • Capitalização de mercado

    €241.81M

Tabela de conversão de Conflux

1 EUR

21.52 CFX

5 EUR

107.59 CFX

10 EUR

215.18 CFX

15 EUR

322.77 CFX

20 EUR

430.36 CFX

25 EUR

537.96 CFX

1 Conflux (CFX) para Us Dollar (USD)

USD 0,05

1 Conflux (CFX) para Swiss Franc (CHF)

CHF 0,04

1 Conflux (CFX) para British Pound Sterling (GBP)

GBP 0,04

1 Conflux (CFX) para Turkish Lira (TRY)

TRY 2,57

1 Conflux (CFX) para Polish Zloty (PLN)

PLN 0,20

1 Conflux (CFX) para Hungarian Forint (HUF)

HUF 17,12

1 Conflux (CFX) para Czech Koruna (CZK)

CZK 1,14

1 Conflux (CFX) para Norwegian Krone (NOK)

NOK 0,50

1 Conflux (CFX) para Swedish Krona (SEK)

SEK 0,53

1 Conflux (CFX) para Danish Krone (DKK)

DKK 0,35

1 Conflux (CFX) para Romanian Leu (RON)

RON 0,25

Sobre Conflux (CFX)

Conflux (CFX) is the native coin of the Conflux Network, a public blockchain designed to offer scalability, security, and decentralisation. CFX plays a vital role in the Conflux ecosystem, serving as a means of payment for transaction fees, rewarding validators for securing the network, and providing liquidity for decentralised applications (dApps).

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  • As regulamentações ESG (Environmental, Social, and Governance) para criptoativos têm como objetivo reduzir o seu impacto ambiental (por exemplo, a mineração com elevado consumo de energia), promover a transparência e garantir práticas de governação ética, alinhando o setor das criptomoedas com metas mais amplas de sustentabilidade e responsabilidade social. Estas regulamentações promovem o cumprimento de normas que reduzem riscos e fortalecem a confiança nos ativos digitais.

    Nome

    Bitpanda Asset Management GmbH, Bitpanda GmbH

    Identificador relevante da entidade jurídica

    9845005X9B7N610K0093, 5493007WZ7IFULIL8G21

    Nome do criptoativo

    Conflux

    Mecanismo de Consenso

    Conflux operates on a unique Tree-Graph consensus mechanism that combines Optimized Proof of Work (PoW) with Proof of Stake (PoS), allowing high transaction throughput, security, and scalability. Core Components of Conflux’s Consensus: 1. Tree-Graph Structure: Concurrent Block Production: Conflux’s Tree-Graph model enables blocks to be produced in parallel, rather than sequentially in a single chain. This structure significantly increases transaction throughput and efficiency compared to traditional blockchains. Hierarchy for Fork Reduction: Unlike typical PoW blockchains where forks are common, Conflux’s Tree-Graph organizes blocks hierarchically, allowing multiple chains to coexist without causing divergences. This minimizes the need for forks, ensuring stability and continuity in block production. 2. Optimized Proof of Work (PoW): Security and Decentralization: Conflux uses an optimized PoW model to maintain security and decentralization, offering similar security guarantees to traditional PoW systems but with enhanced efficiency, allowing high-performance block processing. 3. Proof of Stake (PoS) Integration: PoS for Finality: PoS nodes in Conflux are selected based on the amount of staked CFX (Conflux’s native token). These nodes sign pivot blocks to finalize them, reducing the probability of forks and ensuring rapid finality. Balance Between PoW and PoS: By combining PoW and PoS, Conflux achieves a balanced, secure consensus system that leverages PoW’s security while incorporating PoS for faster finality.

    Mecanismos de Incentivo e Taxas Aplicáveis

    Conflux incentivizes network participation and security through block rewards, transaction fees, and staking rewards, along with unique ecosystem support and storage fee structures. Incentive Mechanisms: 1. Block Rewards and Transaction Fees for Miners: Continuous Incentive for Miners: Miners receive CFX rewards not only for mining blocks but also for securing the network. These rewards, including transaction fees, create an ongoing incentive for miners to participate actively and uphold network stability. 2. Staking Rewards for PoS Nodes: Rewards for Finalization Participation: PoS nodes, responsible for signing and finalizing pivot blocks, earn staking rewards based on their staked CFX amount. This reward structure encourages reliable PoS participation, enhancing network security and finality. 3. Dynamic Gas Fee Model: Ethereum-Like Gas Model: Conflux uses a gas model similar to Ethereum’s, where fees are calculated based on the computational resources required (measured in gas) and the current gas price, which adjusts based on network demand. Dynamic Adjustment: During high network demand, gas fees increase to help manage congestion, while fees decrease in low-demand periods to promote network activity. 4. Ecosystem Fund Allocation: Supporting Long-Term Development: A portion of transaction fees is allocated to the Conflux ecosystem fund, which supports long-term network development, community initiatives, and ecosystem growth. This fund helps sustain the network and fosters innovation within the ecosystem. 5. Storage Fee Model: Reducing Blockchain Bloat: Conflux incorporates a storage fee to discourage unnecessary data storage on the blockchain. This model supports long-term sustainability by reducing blockchain bloat, helping to maintain efficient network performance over time.

    Início do período

    2025-05-06

    Fim do período

    2026-05-06

    Consumo de energia

    1837140.73200 (kWh/a)

    Recursos e metodologias de consumo de energia

    The energy consumption of this asset is aggregated across multiple components: For the calculation of energy consumptions, the so called 'bottom-up' approach is being used. The nodes are considered to be the central factor for the energy consumption of the network. These assumptions are made on the basis of empirical findings through the use of public information sites, open-source crawlers and crawlers developed in-house. The main determinants for estimating the hardware used within the network are the requirements for operating the client software. The energy consumption of the hardware devices was measured in certified test laboratories. When calculating the energy consumption, we used - if available - the Functionally Fungible Group Digital Token Identifier (FFG DTI) to determine all implementations of the asset of question in scope and we update the mappings regulary, based on data of the Digital Token Identifier Foundation. The information regarding the hardware used and the number of participants in the network is based on assumptions that are verified with best effort using empirical data. In general, participants are assumed to be largely economically rational. As a precautionary principle, we make assumptions on the conservative side when in doubt, i.e. making higher estimates for the adverse impacts. To determine the energy consumption of a token, the energy consumption of the network(s) conflux is calculated first. For the energy consumption of the token, a fraction of the energy consumption of the network is attributed to the token, which is determined based on the activity of the crypto-asset within the network. When calculating the energy consumption, the Functionally Fungible Group Digital Token Identifier (FFG DTI) is used - if available - to determine all implementations of the asset in scope. The mappings are updated regularly, based on data of the Digital Token Identifier Foundation. The information regarding the hardware used and the number of participants in the network is based on assumptions that are verified with best effort using empirical data. In general, participants are assumed to be largely economically rational. As a precautionary principle, we make assumptions on the conservative side when in doubt, i.e. making higher estimates for the adverse impacts.

    Consumo de energia renovável

    34.478147108 (%)

    Intensidade energética

    0.01013 (kWh)

    Emissões de GEE de DLT de Âmbito 1 - Controladas

    0.00000 (tCO2e/a)

    Emissões de GEE de DLT de Âmbito 2 - Compradas

    754.94600 (tCO2e/a)

    Intensidade de GEE

    0.00417 (kgCO2e)

    Principais fontes de energia e metodologias

    To determine the proportion of renewable energy usage, the locations of the nodes are to be determined using public information sites, open-source crawlers and crawlers developed in-house. If no information is available on the geographic distribution of the nodes, reference networks are used which are comparable in terms of their incentivization structure and consensus mechanism. This geo-information is merged with public information from Our World in Data, see citation. The intensity is calculated as the marginal energy cost wrt. one more transaction. Ember (2025); Energy Institute - Statistical Review of World Energy (2024) - with major processing by Our World in Data. “Share of electricity generated by renewables - Ember and Energy Institute” [dataset]. Ember, “Yearly Electricity Data Europe”; Ember, “Yearly Electricity Data”; Energy Institute, “Statistical Review of World Energy” [original data]. Retrieved from https://ourworldindata.org/grapher/share-electricity-renewables.

    Principais fontes de GEE e metodologias

    To determine the GHG Emissions, the locations of the nodes are to be determined using public information sites, open-source crawlers and crawlers developed in-house. If no information is available on the geographic distribution of the nodes, reference networks are used which are comparable in terms of their incentivization structure and consensus mechanism. This geo-information is merged with public information from Our World in Data, see citation. The intensity is calculated as the marginal emission wrt. one more transaction. Ember (2025); Energy Institute - Statistical Review of World Energy (2024) - with major processing by Our World in Data. “Carbon intensity of electricity generation - Ember and Energy Institute” [dataset]. Ember, “Yearly Electricity Data Europe”; Ember, “Yearly Electricity Data”; Energy Institute, “Statistical Review of World Energy” [original data]. Retrieved from https://ourworldindata.org/grapher/carbon-intensity-electricity Licenced under CC BY 4.0.