
BIO
BIO价格
$0.048450
+$0.0015300
(+3.26%)
过去 24 小时的价格变化

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。
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请参阅我们的 使用条款 和 风险警告,了解更多详情。通过使用第三方网站(“第三方网站”),您同意对第三方网站的任何使用均受第三方网站条款的约束和管辖。除非书面明确说明,否则欧易及其关联方(“OKX”)与第三方网站的所有者或运营商没有任何关联。您同意欧易对您使用第三方网站而产生的任何损失、损害和任何其他后果不承担任何责任。请注意,使用第三方网站可能会导致您的资产损失或贬值。本产品可能无法在所有司法管辖区提供或适用。
BIO 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
24 小时最高
$0.049880
24 小时最低
$0.046740
历史最高价
$0.90750
-94.67% (-$0.85905)
最后更新日期:2025年1月3日 (UTC+8)
历史最低价
$0.040470
+19.71% (+$0.0079800)
最后更新日期:2025年4月17日 (UTC+8)
您认为 BIO 今天会涨还是会跌?
您可以点赞或点踩来表达对该币种今日涨跌的预测
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BIO 动态资讯
以下内容源自 。

土澳大狮兄BroLeon
老哥也是经历丰富的人,财富到了一定程度被内心拷问,思考,重新定位是必然经历,尤其是白手起家的富一代。
我觉得文中这段话说的挺好的:
"你问“大表哥”有没有阶层焦虑?
我相信肯定有。只是他的“参照系”不再是财富数字,而是主流价值认同、行业历史地位、甚至在人类文明叙事里,他要扮演什么角色。这是所有“财富过剩者”的共同焦虑。"
所以每次我看到有人大喊" @cz_binance 是大割,盯着散户兜里那点钱💰收割",就想笑。
当财富到了500亿美金的这个位置,零头数字怎么变化已经不会有什么感觉了,即便这个零头可能是百万,千万。就跟你现在会去留意账户里小数点后几位的变化么?可以体会一下。
这是我为什么之前表达过我宁可相信Cz一姐他们某件事出问题,更有可能是没做好而非刻意使坏(比如估计要被记一辈子的 $BIO ),因为已经没必要为了那三瓜两枣去算计了。
他们焦虑和琢磨的估计更多是行业地位,主流认同,自我实现等更高一个层级的需求。
比如昨天我看 Richard 和 @heyibinance 都发了Binance Pay的推,但很少人留意到图的背景是不丹。结合之前我写币安战略文章时候收集到的信息,Cz今年出访不丹时候说要帮助当地做支付,大概率是这件事有进展了。
如果一个主权国家(虽然很小)开始接受一个原生加密公司做国家级infra,这种成就带来的满足感应该会远大于攒10个项目收割到的钱。
现在币股和稳定币的确又有点动摇原生crypto的信仰,这个时候也是更需要行业领袖站出来为行业发展探路的时候。希望这些个儿高的加油吧,我等草芥小民就先继续在坑里刨点吃的,希望native Crypto能早点迎来新一波大航海时代。

库哥
看了巴黎哥的推文,感触颇深。
我在2005年股改初期,个人净资产已超一亿。
那时候年纪轻,赚钱快,心理也出现了小问题。
印象最深的一次,是我住的房子对面有座天桥,桥上常年有个乞丐。
我每天上下班都会给他几块钱。
有一天因为太匆忙忘了给,结果整天心神不宁,晚上竟让司机专程回去,只为了补上那几块钱。
那一刻,我意识到自己“心理出了问题”。
经朋友介绍,我找了一位我们省台的主持人——也是心理咨询师。
她听完后告诉我:“你这是‘超我’在折磨你。”
她说,一个成熟的人,最健康的心理状态,不是‘本我’的冲动,也不是‘超我’的道德枷锁,而是‘自我’——理性、平衡、能接受不完美的自己。
但彼时的我太年轻,太理想主义。
想证明自己,总想带着身边人一起干一番事业。
2010年年投资山西煤矿,2011年上海钢贸市场牛市行情搞担保公司承兑汇票,2013年再度回归资本市场,一度站上人生高峰。
2015年躲过大股灾,当时账面资产达到顶点时,内心反而空虚至极。
现在想想,那种“空虚”,其实就是TM的矫情。
后来我转型PE投资,重仓教培行业,结果赶上政策整顿,二十年的积累归零于一夜。为了那份矫情付出惨重的代价。
如果现在让我重新选择,我就想做个有点底线的贪财好色之徒,有点猥琐、但一定要有点人情味,不然再多的财富,等老了把自己活成行尸走肉也没意思。
所谓“阶级跃迁”的说法,说到底只是拿来制造焦虑的说辞。
只要心态不平和,处于哪个财富层级都一样焦虑。
你问“大表哥”有没有阶层焦虑?
我相信肯定有。只是他的“参照系”不再是财富数字,而是主流价值认同、行业历史地位、甚至在人类文明叙事里,他要扮演什么角色。这是所有“财富过剩者”的共同焦虑。@cz_binance @heyibinance @xiaomucrypto @jiujinshan2022 @BTCBruce1 @BTCdayu @BroLeonAus @1000XcoinV
2.89万
57
USD 兑换 BIO


BIO 价格表现 (美元)
BIO 当前价格为 $0.048450。BIO 的价格在过去 24 小时内上涨了 +3.26%。目前,BIO 市值排名为第 0 名,实时市值为 $8,709.43万,流通供应量为 1,794,279,561 BIO,最大供应量为 3,320,000,000 BIO。我们会实时更新 BIO/USD 的价格。
今日
+$0.0015300
+3.26%
7 天
-$0.00357
-6.87%
30 天
-$0.03515
-42.05%
3 个月
-$0.02996
-38.21%
关于 BIO (BIO)
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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通过使用第三方网站(“第三方网站”),您同意对第三方网站的任何使用均受第三方网站条款的约束和管辖。除非书面明确说明,否则 OKX 及其关联方(“OKX”)与第三方网站的所有者或运营商没有任何关联。您同意 OKX 对您使用第三方网站而产生的任何损失、损害和任何其他后果不承担任何责任。请注意,使用第三方网站可能会导致您的资产损失或贬值。
BIO 常见问题
BIO 今天值多少钱?
目前,一个 BIO 价值是 $0.048450。如果您想要了解 BIO 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 BIO 图表,进行专业交易。
数字货币是什么?
数字货币,例如 BIO 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 BIO) 也诞生了。
BIO 的价格今天会涨吗?
查看 BIO 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
BIO
共识机制
BIO is present on the following networks: Base, Ethereum, Solana.
Base is a Layer-2 (L2) solution on Ethereum that was introduced by Coinbase and developed using Optimism's OP Stack. L2 transactions do not have their own consensus mechanism and are only validated by the execution clients. The so-called sequencer regularly bundles stacks of L2 transactions and publishes them on the L1 network, i.e. Ethereum. Ethereum's consensus mechanism (Proof-of-stake) thus indirectly secures all L2 transactions as soon as they are written to L1.
The crypto-asset's Proof-of-Stake (PoS) consensus mechanism, introduced with The Merge in 2022, replaces mining with validator staking. Validators must stake at least 32 ETH every block a validator is randomly chosen to propose the next block. Once proposed the other validators verify the blocks integrity. The network operates on a slot and epoch system, where a new block is proposed every 12 seconds, and finalization occurs after two epochs (~12.8 minutes) using Casper-FFG. The Beacon Chain coordinates validators, while the fork-choice rule (LMD-GHOST) ensures the chain follows the heaviest accumulated validator votes. Validators earn rewards for proposing and verifying blocks, but face slashing for malicious behavior or inactivity. PoS aims to improve energy efficiency, security, and scalability, with future upgrades like Proto-Danksharding enhancing transaction efficiency.
Solana uses a unique combination of Proof of History (PoH) and Proof of Stake (PoS) to achieve high throughput, low latency, and robust security. Here’s a detailed explanation of how these mechanisms work: Core Concepts 1. Proof of History (PoH): Time-Stamped Transactions: PoH is a cryptographic technique that timestamps transactions, creating a historical record that proves that an event has occurred at a specific moment in time. Verifiable Delay Function: PoH uses a Verifiable Delay Function (VDF) to generate a unique hash that includes the transaction and the time it was processed. This sequence of hashes provides a verifiable order of events, enabling the network to efficiently agree on the sequence of transactions. 2. Proof of Stake (PoS): Validator Selection: Validators are chosen to produce new blocks based on the number of SOL tokens they have staked. The more tokens staked, the higher the chance of being selected to validate transactions and produce new blocks. Delegation: Token holders can delegate their SOL tokens to validators, earning rewards proportional to their stake while enhancing the network's security. Consensus Process 1. Transaction Validation: Transactions are broadcast to the network and collected by validators. Each transaction is validated to ensure it meets the network’s criteria, such as having correct signatures and sufficient funds. 2. PoH Sequence Generation: A validator generates a sequence of hashes using PoH, each containing a timestamp and the previous hash. This process creates a historical record of transactions, establishing a cryptographic clock for the network. 3. Block Production: The network uses PoS to select a leader validator based on their stake. The leader is responsible for bundling the validated transactions into a block. The leader validator uses the PoH sequence to order transactions within the block, ensuring that all transactions are processed in the correct order. 4. Consensus and Finalization: Other validators verify the block produced by the leader validator. They check the correctness of the PoH sequence and validate the transactions within the block. Once the block is verified, it is added to the blockchain. Validators sign off on the block, and it is considered finalized. Security and Economic Incentives 1. Incentives for Validators: Block Rewards: Validators earn rewards for producing and validating blocks. These rewards are distributed in SOL tokens and are proportional to the validator’s stake and performance. Transaction Fees: Validators also earn transaction fees from the transactions included in the blocks they produce. These fees provide an additional incentive for validators to process transactions efficiently. 2. Security: Staking: Validators must stake SOL tokens to participate in the consensus process. This staking acts as collateral, incentivizing validators to act honestly. If a validator behaves maliciously or fails to perform, they risk losing their staked tokens. Delegated Staking: Token holders can delegate their SOL tokens to validators, enhancing network security and decentralization. Delegators share in the rewards and are incentivized to choose reliable validators. 3. Economic Penalties: Slashing: Validators can be penalized for malicious behavior, such as double-signing or producing invalid blocks. This penalty, known as slashing, results in the loss of a portion of the staked tokens, discouraging dishonest actions.
奖励机制与相应费用
BIO is present on the following networks: Base, Ethereum, Solana.
Base is a Layer-2 (L2) solution on Ethereum that uses optimistic rollups provided by the OP Stack on which it was developed. Transaction on base are bundled by a, so called, sequencer and the result is regularly submitted as an Layer-1 (L1) transactions. This way many L2 transactions get combined into a single L1 transaction. This lowers the average transaction cost per transaction, because many L2 transactions together fund the transaction cost for the single L1 transaction. This creates incentives to use base rather than the L1, i.e. Ethereum, itself. To get crypto-assets in and out of base, a special smart contract on Ethereum is used. Since there is no consensus mechanism on L2 an additional mechanism ensures that only existing funds can be withdrawn from L2. When a user wants to withdraw funds, that user needs to submit a withdrawal request on L1. If this request remains unchallenged for a period of time the funds can be withdrawn. During this time period any other user can submit a fault proof, which will start a dispute resolution process. This process is designed with economic incentives for correct behaviour.
The crypto-asset's PoS system secures transactions through validator incentives and economic penalties. Validators stake at least 32 ETH and earn rewards for proposing blocks, attesting to valid ones, and participating in sync committees. Rewards are paid in newly issued ETH and transaction fees. Under EIP-1559, transaction fees consist of a base fee, which is burned to reduce supply, and an optional priority fee (tip) paid to validators. Validators face slashing if they act maliciously and incur penalties for inactivity. This system aims to increase security by aligning incentives while making the crypto-asset's fee structure more predictable and deflationary during high network activity.
Solana uses a combination of Proof of History (PoH) and Proof of Stake (PoS) to secure its network and validate transactions. Here’s a detailed explanation of the incentive mechanisms and applicable fees: Incentive Mechanisms 4. Validators: Staking Rewards: Validators are chosen based on the number of SOL tokens they have staked. They earn rewards for producing and validating blocks, which are distributed in SOL. The more tokens staked, the higher the chances of being selected to validate transactions and produce new blocks. Transaction Fees: Validators earn a portion of the transaction fees paid by users for the transactions they include in the blocks. This provides an additional financial incentive for validators to process transactions efficiently and maintain the network's integrity. 5. Delegators: Delegated Staking: Token holders who do not wish to run a validator node can delegate their SOL tokens to a validator. In return, delegators share in the rewards earned by the validators. This encourages widespread participation in securing the network and ensures decentralization. 6. Economic Security: Slashing: Validators can be penalized for malicious behavior, such as producing invalid blocks or being frequently offline. This penalty, known as slashing, involves the loss of a portion of their staked tokens. Slashing deters dishonest actions and ensures that validators act in the best interest of the network. Opportunity Cost: By staking SOL tokens, validators and delegators lock up their tokens, which could otherwise be used or sold. This opportunity cost incentivizes participants to act honestly to earn rewards and avoid penalties. Fees Applicable on the Solana Blockchain 7. Transaction Fees: Low and Predictable Fees: Solana is designed to handle a high throughput of transactions, which helps keep fees low and predictable. The average transaction fee on Solana is significantly lower compared to other blockchains like Ethereum. Fee Structure: Fees are paid in SOL and are used to compensate validators for the resources they expend to process transactions. This includes computational power and network bandwidth. 8. Rent Fees: State Storage: Solana charges rent fees for storing data on the blockchain. These fees are designed to discourage inefficient use of state storage and encourage developers to clean up unused state. Rent fees help maintain the efficiency and performance of the network. 9. Smart Contract Fees: Execution Costs: Similar to transaction fees, fees for deploying and interacting with smart contracts on Solana are based on the computational resources required. This ensures that users are charged proportionally for the resources they consume.
信息披露时间段的开始日期
2024-06-14
信息披露时间段的结束日期
2025-06-14
能源报告
能源消耗
285.86520 (kWh/a)
可再生能源消耗
26.542366745 (%)
能源强度
0.00004 (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 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
能源消耗来源与评估体系
The energy consumption of this asset is aggregated across multiple components:
To determine the energy consumption of a token, the energy consumption of the network(s) base, ethereum, solana 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.
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
0.09515 (tCO2e/a)
温室气体排放强度
0.00001 (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 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
USD 兑换 BIO

