Xinjiang's Computing Power Resurges, Then Gets Cleared Out Within 48 Hours: What Exactly Happened to the Bitcoin Network This Time?

marsbitPublished on 2025-12-16Last updated on 2025-12-16

Abstract

On December 16, Bitcoin network hashrate dropped sharply within 48 hours, widely attributed to the concentrated shutdown and clearance of mining facilities in Xinjiang. Estimates suggest between 200,000 to 400,000 mining machines went offline, causing a hashrate decline of nearly 30%, from around 1200 EH/s to approximately 836 EH/s at its lowest. The resurgence of mining in Xinjiang was driven by three factors: surplus energy capacity and low electricity prices, underutilized data center infrastructure seeking revenue, and shorter ROI periods for miners amid rising Bitcoin prices. Despite China’s clear policy against cryptocurrency mining—classifying it as an obsolete industry—mining resurfaced periodically due to economic pressures and infrastructure availability. The recent crackdown was swift and severe, following a multi-department regulatory meeting emphasizing continued strict oversight of crypto-related activities, including anti-money laundering and cross-border capital risks. The concentrated nature of mining operations in specific regions meant that regulatory actions led to large-scale, simultaneous shutdowns. Short-term impacts include disrupted cash flows for miners and potential market volatility due to heightened policy sensitivity. In the medium term, the Bitcoin network will adjust mining difficulty, and hashrate is likely to migrate to other regions. The event underscores that mining in China remains a high-risk, grey-area activity driven by economic ince...

On December 16th, Beijing time, the Bitcoin network suddenly slammed on the brakes. The hashrate curve showed a significant drop within two days, and the mining community's explanation was highly consistent: concentrated shutdowns occurred at multiple mining farms in Xinjiang, with some equipment being confiscated or cleared out, leading to a sudden "chunk" of the total network hashrate being pulled away. The market's debate wasn't about whether the shutdowns happened, but about the actual scale—rumored figures ranged from over 200,000 to 400,000 units.

The most commonly cited estimate comes from an engineer's algorithm in the mining circle: roughly calculated based on contemporary mainstay machines at about 250 TH/s each, if 400,000 units were successively powered down, the corresponding hashrate gap would be enough to cause a drop on the order of hundreds of EH/s for the entire network. Some put the more aggressive hashrate point more bluntly: the total hashrate once dropped from nearly 1200 EH/s to around 836.75 EH/s, a decline of nearly 30%. Different platforms and different calibers don't completely agree on the "lowest point," but one fact is hard to ignore: this isn't the fluctuation of a few mining farms "turning off a few rows of cabinets," but a widespread concentrated shutdown.

What's truly worth追问 is the two halves of this story: Why did mining in Xinjiang resurge under the ban? And why did the clearance come so quickly and so fiercely?


Why Did Mining in Xinjiang Come Back?

The underlying driving force behind the "resurgence" of Xinjiang's computing power wasn't a sudden policy shift, but three real-world pressures being squeezed into the same outlet.

The first pressure comes from the energy structure. Xinjiang has large-scale power supply and industrial power distribution systems. During certain periods and in some regions, the marginal value of power consumption is not very high. For transmission channels, dispatch, and demand-side承接 capacity, this is a long-term tug-of-war: electricity can be generated, but it can't always be sold in an "ideal way." For asset owners, the most painful thing isn't low electricity prices, but electricity that can't be sold; for miners, this恰恰 constitutes an energy洼地—as long as they can get electricity, they can directly convert it into cash flow.

The second pressure comes from data center facilities and infrastructure. The rapid expansion of data centers across various regions in recent years has left a large amount of存量 capacity where "power is already connected, and facilities are already built." The AI narrative is hot, but AI isn't a case of having a data center就能赚钱: it requires compute cards, big clients, and long-term stable load. The reality is, some data centers haven't secured enough AI orders nor enough compute card resources; equipment sitting idle for a day means real losses from depreciation. Thus, some asset owners see "filling load" as a rigid demand—in the gray area, mining happens to be the easiest application to deploy for filling capacity: it doesn't挑剔 clients or business models, it runs as long as there's power, cooling, and an internet connection.

The third pressure comes from the temptation of ROI and the supply chain. When Bitcoin's price rises, the payback period for miners is significantly compressed; faced with the诱惑 of "breaking even in about six months," many people treat the risks in the gray area as a cost rather than a red line. More crucially, the miner supply chain hasn't disappeared: machines can be bought, transported, and installed, giving the gray area resurgence the physical conditions.

The result of these three pressures converging is a shadow resurgence: local assets (power + facilities) need cash flow, miners need low-cost electricity, the supply chain can deliver the equipment, so Xinjiang once again becomes a magnet for computing power. It's not a gathering place for miner sentiment, but a place where an energy洼地 and an infrastructure洼地 overlap.

This also explains a seemingly contradictory phenomenon: the ban never disappeared, but mining still periodically surfaces. It's not because the red line loosened, but because the constraints of real-world assets never stop: electricity, facilities, power distribution, depreciation, cash flow—all force participants to repeatedly test the boundaries.


Is Mining Illegal in China: An Eliminated Item Doesn't Equal a Criminal Crime, But the Red Line Persists

In China, the policy positioning of mining is not an encouraged industry, but an item that must be rectified and pushed for exit. The relevant authorities' rectification documents core requirements are to strictly prohibit new additions, properly handle existing stock, promote orderly exit, and explicitly list virtual currency mining as an eliminated industry, while also emphasizing precise identification through methods like abnormal electricity consumption monitoring and park inspections, and prohibiting mining under the name of data centers.

Looking at real-world governance methods, it's more like a combination of administrative and energy-side measures: differentiated electricity prices or punitive fees, cancellation of preferential policies, cessation of fiscal and financial support, restrictions on power connection and participation in the electricity market, etc. Therefore, the direct consequences for many mining farms when handled are often power cuts, clearance, back payment of electricity fees, and cancellation of policy benefits—this is not the same as legal operation, but it also doesn't equate to "mining itself必然触犯刑法" (necessarily violating criminal law).

What truly escalates the risk are usually actions附带 to mining: electricity theft, illegal power supply, fraudulently claiming subsidies, obtaining support funds under the guise of supercomputing centers or data centers, illegal fundraising, money laundering channels, etc. Once these issues are triggered, it quickly moves from industrial rectification into the realm of public security or criminal law.

At the same time, financial regulation has maintained a tougher stance on virtual currency-related businesses, continuously emphasizing the crackdown on illegal activities related to virtual currency and focusing on anti-money laundering and cross-border capital risks. Putting these two lines together, one can understand why such clearance actions happen repeatedly: mining has long been within the red line of rectification, and once the enforcement end tightens its口径, the power switch is faster than any announcement.


Why Did This Clearance Come So Fiercely

The speed and force of the clearance often depend on two things: whether the signals are unified, and whether the leverage points are clear.

A coordination mechanism meeting led by the central bank with participation from multiple departments in late November was seen as an important node by the mining circle. It released not emotion, but a unification of enforcement port口径: continue to maintain high pressure on virtual currency-related activities, strengthen the narrative on anti-money laundering and cross-border capital risks, and bring issues like stablecoins into a more stringent regulatory view. For gray area industries, this meant "the scope of being watched expanded," and more importantly, local systems knew what to check next, how to check it, who would lead, and who would cooperate.

At the same time, mining in China has long been handled within an industrial policy framework, not just a financial regulatory framework. It is classified as an eliminated industry, with common governance methods including differentiated electricity prices, punitive fees, park inspections, abnormal electricity consumption monitoring, etc. A more realistic risk point is: simply running hashrate might be treated as an eliminated industry, but once it involves electricity theft, fraudulently claiming subsidies, or obtaining support funds under the name of other projects, the nature quickly turns from gray to accountable black.

Therefore, when systems like development and reform, energy, power, and parks start to联动, the clearance often presents a "sudden" feeling: it was running yesterday, but today there's a collective shutdown. To the outside world, this is news; to miners, it's the power switch, and the power switch never needs an advance announcement.



Why Did the Hashrate Drop So Dramatically: Concentrated Power Cuts Get "Amplified" on the Curve

The dramatic drop in hashrate isn't核心ly about "number jitter," but about "concentrated power cuts." After entering the ZH era, the total network hashrate fluctuates daily, but most fluctuations are like ocean waves: rising and falling, looking back it's just noise. This time was more like pulling out a beam—a阶梯式 (stepped) plunge occurring in a short time, combined with highly consistent on-the-ground information from the mining circle pointing to concentrated shutdowns in Xinjiang. This combination is what made the market treat it as a hard event, not normal jitter.

More crucial is the structure. When the resurgence happens in a concentrated form of "few regions + few parks + few data centers," its advantage is fast expansion, its disadvantage is fragility: once the switch is pulled, what drops isn't sporadic mining farms, but an entire chunk of hashrate coming loose together. In other words, the market isn't debating whether the hashrate is an estimate, but reading one thing: what was cut off this time was likely a highly concentrated hashrate pool.

There's another layer of perceptual amplification. Hashrate is estimated based on block production speed: when large-scale shutdowns happen in a short period, the block interval first becomes unstable, and short-term estimates are more prone to exaggerated spikes and deep pits; once the difficulty completes its self-healing in subsequent adjustment cycles, the curve will slowly smooth out. Therefore, this "seemingly scary" plunge is essentially the immediate projection of a regional concentrated shutdown on the network level—it's not a false alarm, but an amplification effect brought by concentration.


What Happens After the Clearance: Miners Hurt Most, Market Most Sensitive, Hashrate Will Continue Migrating

The short-term impact will first land on miner cash flow. Machines being confiscated or shut down means the payback period is instantly interrupted; hosting providers and the power side will become more cautious, and the costs of relocation, restarting, and finding new sockets will increase sharply. These costs will ultimately manifest in two ways: some miners are forced to exit, while other miners raise their risk premium, only willing to restart under higher profit expectations.

At the market level, the most common说法 is that miners will sell coins. This conclusion doesn't always hold directly: whether it's a集中处置 (concentrated disposal), what the disposal path is, whether it enters the secondary market, how long it drags on—all depend on the specific execution method. But the clearance will form a clear signal in sentiment: the policy risk premium is back. Especially in a phase already marked by increased volatility, any news带有 (carrying) the color of concentrated clearance will be amplified, becoming an amplifier for price fluctuations.

In the medium term, the Bitcoin network will use difficulty adjustment to self-heal: after the hashrate declines, block production slows, then the difficulty下调 (drops), short-term收益 (profits) improve for the remaining miners, and hashrate will regrow elsewhere. The protocol doesn't care about Xinjiang or Texas, it only cares about producing a block on average every ten minutes. But for Chinese miners, this means the next migration will be more dispersed, more hidden, more socket-based.

The significance of this clearance in Xinjiang isn't whether the lowest point was exactly 836.75 or some other number, but that it laid bare the true structure of the shadow resurgence: this wasn't an above-board industrial recovery, but a gray area arbitrage driven by electricity, facilities, depreciation, and cash flow. Arbitrage is fast, of course, but when the switch falls, it's equally fast.

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Related Questions

QWhat caused the sudden drop in Bitcoin's network hashrate in mid-December?

AThe sudden drop in Bitcoin's network hashrate was caused by the concentrated shutdown of mining operations in Xinjiang, with reports of between 200,000 to 400,000 mining machines being powered down or seized within 48 hours.

QWhat were the three main pressures that led to the resurgence of mining in Xinjiang despite the ban?

AThe three main pressures were: 1) The region's energy structure, where excess electricity created a low-cost 'energy洼地' (energy洼地); 2) Underutilized data center infrastructure seeking any revenue-generating load; and 3) The tempting return-on-investment cycle for miners when Bitcoin's price rises, making the risk seem worth the cost.

QIs cryptocurrency mining illegal in China according to the article?

ACryptocurrency mining is not classified as a criminal offense per se, but it is explicitly listed as an industry that must be eliminated and phased out. The primary enforcement measures are administrative and energy-based, such as punitive electricity pricing, power cuts, and revoking policy benefits, rather than direct criminal charges, unless it involves ancillary illegal acts like electricity theft or fraud.

QWhy did the crackdown and shutdown of mines happen so quickly and forcefully?

AThe crackdown was swift and forceful due to a unified signal from a high-level multi-departmental coordination meeting led by the central bank, which mandated continued high-pressure scrutiny on virtual currency activities. This provided clear guidance for local authorities in energy, development, and industrial parks to act in concert, leading to coordinated power cuts without prior warning.

QWhat is the expected medium-term impact on the Bitcoin network after this crackdown?

AThe medium-term impact is that the Bitcoin network will self-correct through a difficulty adjustment, making mining more profitable for remaining miners and causing the hashrate to regrow in other regions. For Chinese miners, this will lead to more dispersed, hidden, and 'socketized' mining operations in the future.

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What is AGENT S

Agent S: The Future of Autonomous Interaction in Web3 Introduction In the ever-evolving landscape of Web3 and cryptocurrency, innovations are constantly redefining how individuals interact with digital platforms. One such pioneering project, Agent S, promises to revolutionise human-computer interaction through its open agentic framework. By paving the way for autonomous interactions, Agent S aims to simplify complex tasks, offering transformative applications in artificial intelligence (AI). This detailed exploration will delve into the project's intricacies, its unique features, and the implications for the cryptocurrency domain. What is Agent S? Agent S stands as a groundbreaking open agentic framework, specifically designed to tackle three fundamental challenges in the automation of computer tasks: Acquiring Domain-Specific Knowledge: The framework intelligently learns from various external knowledge sources and internal experiences. This dual approach empowers it to build a rich repository of domain-specific knowledge, enhancing its performance in task execution. Planning Over Long Task Horizons: Agent S employs experience-augmented hierarchical planning, a strategic approach that facilitates efficient breakdown and execution of intricate tasks. This feature significantly enhances its ability to manage multiple subtasks efficiently and effectively. Handling Dynamic, Non-Uniform Interfaces: The project introduces the Agent-Computer Interface (ACI), an innovative solution that enhances the interaction between agents and users. Utilizing Multimodal Large Language Models (MLLMs), Agent S can navigate and manipulate diverse graphical user interfaces seamlessly. Through these pioneering features, Agent S provides a robust framework that addresses the complexities involved in automating human interaction with machines, setting the stage for myriad applications in AI and beyond. Who is the Creator of Agent S? While the concept of Agent S is fundamentally innovative, specific information about its creator remains elusive. The creator is currently unknown, which highlights either the nascent stage of the project or the strategic choice to keep founding members under wraps. Regardless of anonymity, the focus remains on the framework's capabilities and potential. Who are the Investors of Agent S? As Agent S is relatively new in the cryptographic ecosystem, detailed information regarding its investors and financial backers is not explicitly documented. The lack of publicly available insights into the investment foundations or organisations supporting the project raises questions about its funding structure and development roadmap. Understanding the backing is crucial for gauging the project's sustainability and potential market impact. How Does Agent S Work? At the core of Agent S lies cutting-edge technology that enables it to function effectively in diverse settings. Its operational model is built around several key features: Human-like Computer Interaction: The framework offers advanced AI planning, striving to make interactions with computers more intuitive. By mimicking human behaviour in tasks execution, it promises to elevate user experiences. Narrative Memory: Employed to leverage high-level experiences, Agent S utilises narrative memory to keep track of task histories, thereby enhancing its decision-making processes. Episodic Memory: This feature provides users with step-by-step guidance, allowing the framework to offer contextual support as tasks unfold. Support for OpenACI: With the ability to run locally, Agent S allows users to maintain control over their interactions and workflows, aligning with the decentralised ethos of Web3. Easy Integration with External APIs: Its versatility and compatibility with various AI platforms ensure that Agent S can fit seamlessly into existing technological ecosystems, making it an appealing choice for developers and organisations. These functionalities collectively contribute to Agent S's unique position within the crypto space, as it automates complex, multi-step tasks with minimal human intervention. As the project evolves, its potential applications in Web3 could redefine how digital interactions unfold. Timeline of Agent S The development and milestones of Agent S can be encapsulated in a timeline that highlights its significant events: September 27, 2024: The concept of Agent S was launched in a comprehensive research paper titled “An Open Agentic Framework that Uses Computers Like a Human,” showcasing the groundwork for the project. October 10, 2024: The research paper was made publicly available on arXiv, offering an in-depth exploration of the framework and its performance evaluation based on the OSWorld benchmark. October 12, 2024: A video presentation was released, providing a visual insight into the capabilities and features of Agent S, further engaging potential users and investors. These markers in the timeline not only illustrate the progress of Agent S but also indicate its commitment to transparency and community engagement. Key Points About Agent S As the Agent S framework continues to evolve, several key attributes stand out, underscoring its innovative nature and potential: Innovative Framework: Designed to provide an intuitive use of computers akin to human interaction, Agent S brings a novel approach to task automation. Autonomous Interaction: The ability to interact autonomously with computers through GUI signifies a leap towards more intelligent and efficient computing solutions. Complex Task Automation: With its robust methodology, it can automate complex, multi-step tasks, making processes faster and less error-prone. Continuous Improvement: The learning mechanisms enable Agent S to improve from past experiences, continually enhancing its performance and efficacy. Versatility: Its adaptability across different operating environments like OSWorld and WindowsAgentArena ensures that it can serve a broad range of applications. As Agent S positions itself in the Web3 and crypto landscape, its potential to enhance interaction capabilities and automate processes signifies a significant advancement in AI technologies. Through its innovative framework, Agent S exemplifies the future of digital interactions, promising a more seamless and efficient experience for users across various industries. Conclusion Agent S represents a bold leap forward in the marriage of AI and Web3, with the capacity to redefine how we interact with technology. While still in its early stages, the possibilities for its application are vast and compelling. Through its comprehensive framework addressing critical challenges, Agent S aims to bring autonomous interactions to the forefront of the digital experience. As we move deeper into the realms of cryptocurrency and decentralisation, projects like Agent S will undoubtedly play a crucial role in shaping the future of technology and human-computer collaboration.

824 Total ViewsPublished 2025.01.14Updated 2025.01.14

What is AGENT S

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