EGLD
EGLD

MultiversX 价格

$18.4000
+$0.45000
(+2.50%)
过去 24 小时的价格变化
USDUSD
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MultiversX 市场信息

市值
市值是通过流通总应量与最新价格相乘进行计算。市值 = 当前流通量 × 最新价
流通总量
目前该代币在市场流通的数量
市值排行
该资产的市值排名
历史最高价
该代币在交易历史中的最高价格
历史最低价
该代币在交易历史中的最低价格
市值
$5.17亿
流通总量
28,050,818 EGLD
31,415,926 EGLD
的 89.28%
市值排行
--
审计方
CertiK
最后审计日期:2021年8月14日
24 小时最高
$18.4600
24 小时最低
$17.9000
历史最高价
$561.88
-96.73% (-$543.48)
最后更新日期:2021年11月23日
历史最低价
$5.6000
+228.57% (+$12.8000)
最后更新日期:2020年10月9日

EGLD 计算器

USDUSD
EGLDEGLD

MultiversX 价格表现 (美元)

MultiversX 当前价格为 $18.4000。MultiversX 的价格在过去 24 小时内上涨了 +2.51%。目前,MultiversX 市值排名为第 0 名,实时市值为 $5.17亿,流通供应量为 28,050,818 EGLD,最大供应量为 31,415,926 EGLD。我们会实时更新 MultiversX/USD 的价格。
今日
+$0.45000
+2.50%
7 天
+$0.26000
+1.43%
30 天
-$4.7200
-20.42%
3 个月
-$17.4900
-48.74%

关于 MultiversX (EGLD)

3.1/5
TokenInsight
3.1
2022/10/26
此评级是欧易从不同来源收集的汇总评级,仅供一般参考。欧易不保证评级的质量或准确性。欧易无意提供 (i) 投资建议或推荐;(ii) 购买、出售或持有数字资产的要约或招揽;(iii) 财务、会计、法律或税务建议。包括稳定币和 NFT 的数字资产容易受到市场波动的影响,风险较高,波动较大,可能会贬值甚至变得一文不值。数字资产的价格和性能不受保证,且可能会发生变化,恕不另行通知。您的数字资产不受潜在损失保险的保障。 历史回报并不代表未来回报。欧易不保证任何回报、本金或利息的偿还。欧易不提供投资或资产建议。您应该根据自身的财务状况仔细考虑交易或持有数字资产是否适合您。具体情况请咨询您的专业法务、税务或投资人士。
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Elrond是一种软件协议,使区块链技术安全、全球可扩展和可互操作。它的分片架构允许智能合约的无障碍执行,交易费用低,速度接近实时。


Elrond的软件基础设施包括两个独特的功能——自适应状态分片和安全权益证明(SPoS)共识机制。该网络还使用了Elrond WASM VM,这是一种快速的虚拟机,可以用任何编程语言运行智能合约并编译到WebAssembly。


自适应分片发生在每个级别,包括事务、数据和区块链。这意味着基础设施可以动态地进行调整,以提供高吞吐量和速度。分片机制根据区块链使用情况或当时可用的验证器节点数量自动合并或分割。为了提高效率,在共识机制中使用了分片。SPoS共识通过一个无法预测或影响的随机源从碎片中选择共识验证器节点。验证器使用改进的BLC多重签名方案对区块进行验证等等。


Elrond还有一个集成开发环境,允许开发人员在平台上为用户协作、编写和创建程序和分布式应用程序。用户还可以创建自己的Elrond标准数字货币,Elrond标准是ERC-20的进阶标准版本。


Elrond的原生数字货币EGLD有多种应用。它是该网络的主要流通货币,用于验证者奖励、质押、交易和智能合约支付。它也是平台治理机制的必要组成部分。


EGLD的价格和经济模型

该项目的token总供应量限制在3,142万枚。在最初发布2,000万代币之后,Elrond协议打算在未来十年逐步发布EGLD代币,直到达到其最大供应量。Elrond的代币最初作为ERD在币安链上可用。后来改名为EGLD。目前流通中的代币略多于2,000万枚。


EGLD的价格在2021年11月23日达到490美元的历史高点。此前,该项目宣布了一项12.9亿美元的流动性激励计划。


2019年6月,该项目以每个代币0.5美元的价格在私募中筹集了190万美元,在其首次交换发行(IEO)中,以每个代币0.65美元的价格将其总代币供应的25%交换为325万美元。


四分之一的代币供应供公众销售,其余15%保留给私人销售。5%预留给未来的轮,剩下的代币分配给质押奖励、捐赠、社区、顾问、公司和团队。


创始人团队

Elrond于2017年由Lucian Todea、Beniamin Mincu和Lucian Mincu共同创立,由马耳他的Elrond Network公司运营,负责项目的发展。


在创立Elrond之前,Beniamin Mincu是Nem Core的产品和业务主管,并与他的兄弟兼工程师Lucian Mincu共同创立了MetaChain Capital,这是一家领先的数字资产投资基金。Lucian Todea是Soft32的创始人和首席执行官。他也是mobilPay的合伙人,也是Typing DNA和Smart Bill的天使投资人。


Elrond协议还拥有一个强大的企业家、工程师和开发人员团队,他们拥有令人印象深刻的经验和成功记录。


Elrond 项目亮点

Elrond实施了了最大的DeFi流动性激励计划。

2021年11月,Elrond宣布了一项12.9亿美元的流动性激励计划,用于其Maiar DEX DeFi平台的推广。该项目使用原生代币MEX在其DEX(去中心化交易所)用户中总计分发2.82亿美元。


首席执行官Beniamin Mincu表示:“通过将Maiar DEX的所有权分配给下一个10亿用户,该项目寻求为一个真正的全球金融系统奠定基础,使每个人都可以在任何地方访问。”


运行时验证框架扩展了对Elrond生态的承诺。

Elrond 用户响应 NASA-协议运行时验证框架来开发它的核心组件和应用程序协议。自从运行时验证团队成立以来,Elrond就一直与之合作。Elrond宣布,该团队已通过成为非托管股权提供者,扩展了对Elrond生态系统的承诺。


这不仅将为生态系统提供EGLD委托服务,而且还将显著促进网络安全和去中心化。截至2022年9月16日,运行时验证质押池已经拥有5个活动节点,提供±11%的APR和有上限的委托限制。

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社媒平台热度

发布量
过去 24 小时内提及某个代币的发帖数量。该指标可以帮助评估用户对该代币的感兴趣程度。
参与用户人数
过去 24 小时内发布有关该代币的用户数量。用户数量越多,可能表明该代币的表现有所提升。
互动量
过去24小时内由社交驱动的在线互动总和,例如点赞、评论和转发。较高的互动水平可能表明对该代币的强烈兴趣。
市场情绪占比
以百分数形式呈现,反映了过去 24 小时内的帖子对市场的情绪感知。数值越高,表明用户对市场越有信心,可能预示着市场表现正在变好。
发布量排名
过去 24 小时内的发帖数量排名。排名越高,则表示该代币越受欢迎。
MultiversX 的社交热度在各大平台上持续升温,表明社区对该币种的兴趣度和参与度不断高涨。讨论也在持续进行中,在过去 24 小时内新发布了 1,453 条关于 MultiversX 的帖子,其中有 191 人积极参与其中,社区互动将近 23万 次,也贡献了相当高的话题热度。另外,当前市场情绪值达到 77%,彰显了市场对 MultiversX 的总体感受和认知的洞察。
除了市场情绪这一指标外,当前 MultiversX 的发布量排名 4584,这体现了该币种在整体数字货币市场中的重要性和关注度。随着 MultiversX 的持续发展,其社交指标将成为衡量其影响力和市场覆盖度的重要参考。
由 LunarCrush 提供支持
发布量
1,453
参与用户人数
191
互动量
230,952
市场情绪占比
77%
发布量排名
#4584

X

发布量
1,259
互动量
230,164
市场情绪占比
78%

MultiversX 常见问题

EGLD的历史价格是多少?
EGLD的历史最高价格是490美元每枚,是在2021年11月23日达到的。在达到历史最高价值之前,该项目宣布了一项12.9亿美元的流动性激励计划。
EGLD的市值是多少?
EGLD市值为1,095,190,497美元,完全稀释后的市值为1,486,381,995美元。
EGLD的总供应量是多少?
Elrond的总供应量为3,140万枚,流通供应量为2,315万枚。剩余的EGLD将在未来十年逐步释放,直到达到最大供应。
MultiversX 今天值多少钱?
目前,一个 MultiversX 价值是 $18.4000。如果您想要了解 MultiversX 价格走势与行情洞察,那么这里就是您的最佳选择。在欧易探索最新的 MultiversX 图表,进行专业交易。
数字货币是什么?
数字货币,例如 MultiversX 是在称为区块链的公共分类账上运行的数字资产。了解有关欧易上提供的数字货币和代币及其不同属性的更多信息,其中包括实时价格和实时图表。
数字货币是什么时候开始的?
由于 2008 年金融危机,人们对去中心化金融的兴趣激增。比特币作为去中心化网络上的安全数字资产提供了一种新颖的解决方案。从那时起,许多其他代币 (例如 MultiversX) 也诞生了。
MultiversX 的价格今天会涨吗?
查看 MultiversX 价格预测页面,预测未来价格,帮助您设定价格目标。

ESG 披露

ESG (环境、社会和治理) 法规针对数字资产,旨在应对其环境影响 (如高能耗挖矿)、提升透明度,并确保合规的治理实践。使数字代币行业与更广泛的可持续发展和社会目标保持一致。这些法规鼓励遵循相关标准,以降低风险并提高数字资产的可信度。
资产详情
名称
OKcoin Europe LTD
相关法人机构识别编码
54930069NLWEIGLHXU42
代币名称
MultiversX EGLD
共识机制
MultiversX EGLD is present on the following networks: binance_smart_chain, multiversx. Binance Smart Chain (BSC) uses a hybrid consensus mechanism called Proof of Staked Authority (PoSA), which combines elements of Delegated Proof of Stake (DPoS) and Proof of Authority (PoA). This method ensures fast block times and low fees while maintaining a level of decentralization and security. Core Components 1. Validators (so-called “Cabinet Members”): Validators on BSC are responsible for producing new blocks, validating transactions, and maintaining the network’s security. To become a validator, an entity must stake a significant amount of BNB (Binance Coin). Validators are selected through staking and voting by token holders. There are 21 active validators at any given time, rotating to ensure decentralization and security. 2. Delegators: Token holders who do not wish to run validator nodes can delegate their BNB tokens to validators. This delegation helps validators increase their stake and improves their chances of being selected to produce blocks. Delegators earn a share of the rewards that validators receive, incentivizing broad participation in network security. 3. Candidates: Candidates are nodes that have staked the required amount of BNB and are in the pool waiting to become validators. They are essentially potential validators who are not currently active but can be elected to the validator set through community voting. Candidates play a crucial role in ensuring there is always a sufficient pool of nodes ready to take on validation tasks, thus maintaining network resilience and decentralization. Consensus Process 4. Validator Selection: Validators are chosen based on the amount of BNB staked and votes received from delegators. The more BNB staked and votes received, the higher the chance of being selected to validate transactions and produce new blocks. The selection process involves both the current validators and the pool of candidates, ensuring a dynamic and secure rotation of nodes. 5. Block Production: The selected validators take turns producing blocks in a PoA-like manner, ensuring that blocks are generated quickly and efficiently. Validators validate transactions, add them to new blocks, and broadcast these blocks to the network. 6. Transaction Finality: BSC achieves fast block times of around 3 seconds and quick transaction finality. This is achieved through the efficient PoSA mechanism that allows validators to rapidly reach consensus. Security and Economic Incentives 7. Staking: Validators are required to stake a substantial amount of BNB, which acts as collateral to ensure their honest behavior. This staked amount can be slashed if validators act maliciously. Staking incentivizes validators to act in the network's best interest to avoid losing their staked BNB. 8. Delegation and Rewards: Delegators earn rewards proportional to their stake in validators. This incentivizes them to choose reliable validators and participate in the network’s security. Validators and delegators share transaction fees as rewards, which provides continuous economic incentives to maintain network security and performance. 9. Transaction Fees: BSC employs low transaction fees, paid in BNB, making it cost-effective for users. These fees are collected by validators as part of their rewards, further incentivizing them to validate transactions accurately and efficiently. MultiversX employs a consensus model called Secure Proof of Stake (SPoS), which integrates elements of Proof of Stake (PoS) with a rapid, randomized validator selection process. SPoS enables efficient and scalable consensus with high throughput and low latency. Core Components: 1. Secure Proof of Stake (SPoS): Randomized Validator Selection: Validators are selected in under 100 milliseconds based on their stake, with a quick rotation to maintain efficiency and prevent centralization. Validator and Observer Nodes: Validator nodes process transactions and produce blocks, while Observer nodes are read-only, providing data access and network monitoring. 2. Adaptive State Sharding: Parallel Transaction Processing: Adaptive State Sharding splits the network into shards, allowing for simultaneous transaction processing across multiple shards, which enhances scalability and network performance. 3. Meta Chain Coordination: Cross-Shard Finalization: The Meta Chain manages cross-shard transactions, finalizing blocks and ensuring data consistency between shards.
奖励机制与相应费用
MultiversX EGLD is present on the following networks: binance_smart_chain, multiversx. Binance Smart Chain (BSC) uses the Proof of Staked Authority (PoSA) consensus mechanism to ensure network security and incentivize participation from validators and delegators. Incentive Mechanisms 1. Validators: Staking Rewards: Validators must stake a significant amount of BNB to participate in the consensus process. They earn rewards in the form of transaction fees and block rewards. Selection Process: Validators are selected based on the amount of BNB staked and the votes received from delegators. The more BNB staked and votes received, the higher the chances of being selected to validate transactions and produce new blocks. 2. Delegators: Delegated Staking: Token holders can delegate their BNB to validators. This delegation increases the validator's total stake and improves their chances of being selected to produce blocks. Shared Rewards: Delegators earn a portion of the rewards that validators receive. This incentivizes token holders to participate in the network’s security and decentralization by choosing reliable validators. 3. Candidates: Pool of Potential Validators: Candidates are nodes that have staked the required amount of BNB and are waiting to become active validators. They ensure that there is always a sufficient pool of nodes ready to take on validation tasks, maintaining network resilience. 4. Economic Security: Slashing: Validators can be penalized for malicious behavior or failure to perform their duties. Penalties include slashing a portion of their staked tokens, ensuring that validators act in the best interest of the network. Opportunity Cost: Staking requires validators and delegators to lock up their BNB tokens, providing an economic incentive to act honestly to avoid losing their staked assets. Fees on the Binance Smart Chain 5. Transaction Fees: Low Fees: BSC is known for its low transaction fees compared to other blockchain networks. These fees are paid in BNB and are essential for maintaining network operations and compensating validators. Dynamic Fee Structure: Transaction fees can vary based on network congestion and the complexity of the transactions. However, BSC ensures that fees remain significantly lower than those on the Ethereum mainnet. 6. Block Rewards: Incentivizing Validators: Validators earn block rewards in addition to transaction fees. These rewards are distributed to validators for their role in maintaining the network and processing transactions. 7. Cross-Chain Fees: Interoperability Costs: BSC supports cross-chain compatibility, allowing assets to be transferred between Binance Chain and Binance Smart Chain. These cross-chain operations incur minimal fees, facilitating seamless asset transfers and improving user experience. 8. Smart Contract Fees: Deployment and Execution Costs: Deploying and interacting with smart contracts on BSC involves paying fees based on the computational resources required. These fees are also paid in BNB and are designed to be cost-effective, encouraging developers to build on the BSC platform. MultiversX incentivizes network participation through staking rewards and transaction fees, supporting network security and performance. Incentive Mechanisms: 1. Staking Rewards for Validators and Delegators: Validator Rewards: Validators earn EGLD tokens for processing transactions and producing blocks. Delegation Rewards: EGLD holders can delegate their tokens to validators to receive a portion of the staking rewards without managing a node. Applicable Fees: 1. Transaction Fees: Fee Structure: Fees are paid in EGLD and vary based on transaction complexity and size, covering smart contract execution, asset transfers, and other network interactions. 2. Delegation Opportunities: Passive Staking for EGLD Holders: EGLD holders who delegate their tokens share in staking rewards, supporting network security and earning passive income.
信息披露时间段的开始日期
2024-03-18
信息披露时间段的结束日期
2025-03-18
能源报告
能源消耗
742021.52322 (kWh/a)
可再生能源消耗
15.116150606 (%)
能源强度
0.00034 (kWh)
主要能源来源与评估体系
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 the European Environment Agency (EEA) and thus determined.
能源消耗来源与评估体系
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. To determine the energy consumption of a token, the energy consumption of the network(s) binance_smart_chain is calculated first. Based on the crypto asset's gas consumption per network, the share of the total consumption of the respective network that is assigned to this asset is defined. 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.
排放报告
DLT 温室气体排放范围一:可控排放
0.00000 (tCO2e/a)
DLT 温室气体排放范围二:外购排放
305.70981 (tCO2e/a)
温室气体排放强度
0.00014 (kgCO2e)
主要温室气体来源与评估体系
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 the European Environment Agency (EEA) and thus determined.
免责声明
本页面的社交内容 (包括由 LunarCrush 提供支持的推文和社交统计数据) 均来自第三方,并按“原样”提供,仅供参考。本文内容不代表对任何数字货币或投资的认可或推荐,也未获得欧易授权或撰写,也不代表我们的观点。我们不保证所显示的用户生成内容的准确性或可靠性。本文不应被解释为财务或投资建议。在做出投资决策之前,评估您的投资经验、财务状况、投资目标和风险承受能力并咨询独立财务顾问至关重要。过去的表现并不代表未来的结果。您的投资价值可能会波动,您可能无法收回您投资的金额。您对自己的投资选择自行承担全部责任,我们对因使用本信息而造成的任何损失或损害不承担任何责任。提供外部网站链接是为了用户方便,并不意味着对其内容的认可或控制。请参阅我们的 使用条款风险警告,了解更多详情。
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EGLD 计算器

USDUSD
EGLDEGLD