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中方在仙宾礁“填海造地”?外交部:菲方造谣_我的网站

钢铁侠3

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Francesco Faiola
    Francesco Faiola
Editor's Note:
Ahead of the opening of the 2026 World AI Conference and High-Level Meeting on Global AI Governance, Chinese AI start-up Moonshot AI released its Kimi K3 large language model. As the world's largest open-source model by parameter count to date, this launch marks a significant step forward in the development of China's artificial intelligence models.
From the C919 airliner soaring into the skies to Unitree's humanoid robots stealing the show; from DeepSeek pushing the AI frontier to Moonshot AI's landmark unveiling of Kimi K3 - China's wave of homegrown innovations has dominated global headlines in recent years, delivering a steady stream of breakthroughs.
At a meeting in Beijing that brought together the national science and technology award conference, the general assemblies of the members of the Chinese Academy of Sciences (CAS) and the Chinese Academy of Engineering (CAE), and the 11th national congress of the China Association for Science and Technology in July, Chinese President Xi Jinping, also general secretary of the Communist Party of China (CPC) Central Committee and chairman of the Central Military Commission, stressed that the 15th Five-Year Plan period (2026-2030) is a critical phase for tackling tough challenges in building up the country's strength in science and technology.
"We must seize the historic opportunity, rise to the challenges of the times, accelerate efforts to achieve high-level self-reliance and strength in science and technology, and make steady progress toward the 2035 goal of becoming a leading country in science and technology," he said.
In the article "Strive for Greater Strength and Self-Reliance in Science and Technology" included in the fourth volume of Xi Jinping: The Governance of China, Xi pointed out, "Through years of endeavor, our country's overall strength in science and technology has improved substantially. We therefore have a solid foundation, and are fully confident in our ability to seize the opportunities offered by the new revolution in science, technology and industry to achieve greater results." The article also mentioned that "We should participate to the full in global science and technology governance, contribute Chinese wisdom, and shape a philosophy of technology for good purposes, so that science and technology better serve human wellbeing, and enable China's science and technology industry to contribute more to building a global community of shared future."
In the 27th installment of the special series "Decoding the Book Xi Jinping: The Governance of China," the Global Times, along with the People's Daily Overseas Edition, continues to invite Chinese and foreign scholars, translators of Xi's works, practitioners with firsthand experience, and international readers to focus on the theme of striving for greater strength and self-reliance in science and technology. Together, they share views on China's tech growth, governance principles, and global cooperation in science and technology.
In the 27th article of the "Readers' Reflections" column, Global Times (GT) talked to Francesco Faiola (Faiola), an Italian professor at the Research Center for Eco-Environmental Sciences with Chinese Academy of Sciences and recipient of the Chinese Government Friendship Award.
GT: Chinese President Xi Jinping delivered a keynote speech at the opening ceremony of the 2026 World AI Conference and High-Level Meeting on Global AI Governance on July 17. He said that as a responsible major country, China is always committed to providing international public goods relating to AI. In the article "Boost Basic Research and Achieve Greater Strength and Self-Reliance in Science and Technology" included in the fifth volume of Xi Jinping: The Governance of China, Xi said, "It is important that we adopt a more open-minded approach to international exchange and cooperation in research to create an open, globally competitive innovation ecosystem." Amid the current complex global landscape, China remains firmly committed to keeping its doors open to international scientific collaboration. In your view, where does China's confidence in this commitment come from?
Faiola: I think China's confidence in staying open comes from a deep shift in mindset. The Chinese people, especially the scientific community, now really believe they are not inferior to Westerners. For a long time, even many people here thought top science had to happen at a Western address. When I first came, I believed that too. The US and Europe seemed like the only serious places for breakthroughs. Now that idea is changing, and moving toward China, because the evidence of leadership is everywhere: stem cell standards, artificial intelligence (AI) efficiency, green manufacturing. It's undeniable. China knows it has everything needed to attract and keep international talent. It's no longer a developing country playing catch up. It's a place that's helping set the global agenda.
That self-assurance is the bedrock of openness. When you truly believe you have unique strengths, like a huge organoid screening capability or a community of scientists who think deeply, you don't fear open doors. You want colleagues from everywhere to walk through so the science moves faster. My own lab works with European centers as equals. That parity is real. But we also know not everyone abroad gets this transformation yet. A lot of people still imagine Chinese science as just following others. That's exactly why China is pushing openness harder: funding lines for foreign principal investigators, open innovation hubs in Beijing, active participation in setting international standards. These aren't defensive moves. They're proof of a country confident enough to invite the world in, show what it can do, and create knowledge together.
On a deeper level, the confidence is also just rational. The big challenges - environmental problem, pandemic preparedness and precision medicine - are global. If China closed itself off, the data and validation its own regulators need would get weaker. So, the open door isn't charity. It's the smart recognition that scientific greatness today gets multiplied when you share it.
GT: In the article "Strive for Greater Strength and Self-Reliance in Science and Technology" included in the fourth volume of Xi Jinping: The Governance of China, Xi pointed out, "Through years of endeavor, our country's overall strength in science and technology has improved substantially. We therefore have a solid foundation, and are fully confident in our ability to seize the opportunities offered by the new revolution in science, technology and industry to achieve greater results." From the domestically built large passenger jet to DeepSeek, Unitree Robotics, and Moonshot AI's Kimi K3, China's innovation achievements have been making headlines. How do you assess China's achievements in sci-tech innovation in recent years? 

Faiola: I measure China's innovation success in a very personal way. My parents are old, living in a small Italian town. They don't speak English. They don't understand molecular biology. They can't read a scientific paper. But over the past few years, they've called me up more than once, excited, telling me about a Chinese airplane or a humanoid robot or some AI breakthrough they saw on Italy's main TV news or in the newspapers.
That tells me something deep. These aren't niche stories for tech insiders. They are real global news, landing in the living rooms of retirees who barely use a smartphone. I'm not bragging to them about China's progress. They are telling me. When achievements get that far into everyday European life, it's a sign China is doing something the world finds worth talking about.
The C919 plane, DeepSeek, Unitree Robotics - these aren't one-off hits. They prove China can now conceive, design, and build complex, original systems on its own, whether it's an airliner, an advanced AI model, or an agile robot. That takes deep integration across different fields, aerodynamics, materials, real time control, and AI.
DeepSeek's whole philosophy, doing more with less, is exactly how we created affordable organoid screening tools. And the quiet shift from rule taker to rule maker in chemical safety standards, that mirrors the C919's ambition to compete globally on certification. All this shows China is blending manufacturing, digital smarts, and biology into one force. But my real proof is what I hear from my students. They don't just apply discoveries from papers anymore. They question the assumptions behind them. That intellectual confidence, and the fact it echoes all the way back to a small Italian town, is why I'm sure China will fully seize this moment.
GT: President Xi said that AI development should not be a solo performance by a single country, but a symphony of international cooperation. Having conducted research in China for many years, you are not only a witness but also a driving force behind China-Europe scientific exchanges. Looking ahead, how can both sides deepen complementary advantages and achieve mutually beneficial empowerment to jointly address global challenges such as climate change and health? Over the next five years, which specific sectors should China-Europe science and technology collaboration prioritize?
Faiola: I grew up in Italy and now I lead a lab in Beijing while working with colleagues all over Europe. So, China-Europe teamwork isn't some abstract idea to me. It's how my week actually looks. The old cliché, European basic research plus Chinese scale and speed, is already outdated. Both sides now generate novel insights. The relationship has to become genuine two-way cocreation.
I see three practical things that would deepen it. First, we need truly joint funding: one grant, one integrated team, maybe a Max Planck group and a Chinese Academy of Sciences group, with a single scientific plan and students who genuinely rotate between the labs. Second, we need to harmonize regulations and ethics for organoid technologies. Europe has advanced thinking on governance. China has manufacturing scale and the drive to get things into clinics. If we co-develop shared quality and ethical standards for organoid testing, we basically set the global benchmark. A liver organoid made in Europe could then be used directly for a toxicity screen in China without repeating all the validation. Third, we need deliberate talent circulation, not a zero-sum competition. Joint PhD programs where a student naturally moves between continents.
The science doesn't care about borders. If we build the shared tools now, China and Europe can show the world a model where shared knowledge beats division.
GT: Recently, some Western media and think tanks are peddling "China Shock 2.0," claiming that China is achieving fast development in high-tech sectors such as renewable energy and AI and relies on foreign markets to absorb its overcapacity, thus reducing the market share of developed countries and sending more serious shock waves to the global economy compared with the era of traditional manufacture industry. What's your comment on this? In your view, does this represent a new pretext for Western protectionism, or is it an unavoidable external misunderstanding amid China's industrial upgrading?

Faiola: I'm a bench scientist, not a political analyst. I stick to what I can see and measure in my own work. So, I'm not going to guess what the media or think tanks intend. I'll just tell you what the facts show me, and from my lab, the "China Shock 2.0" story just doesn't match up.
In my field of stem cell toxicology, the world is desperate for human relevant safety tests to replace animal testing. Tens of thousands of chemicals still don't have proper hazard data. When Chinese labs turn out high throughput organoid platforms at a fraction of the old cost, that's not dumping "overcapacity" into a full market. It's filling a huge shortage. A researcher in Brazil or Kenya suddenly gets access to a toxicity screen that never existed for them before. Demand is skyrocketing, not standing still. Meeting that demand is a service, not a shock.
With AI, it's the same pattern. DeepSeek's efficiency makes it cheaper and easier for biomedical researchers around the world to use these tools. It's helping create new markets, not stealing a fixed pie. Sure, any big shift causes some dislocation. The answer to that is domestic support and transition policies, not blocking technologies that help solve planetary problems.
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南海局势紧张,需要造一个不沉航母压压惊。这句略带调侃的玩笑话,如今似乎又要变成现实了,数十艘中国舰船涌向南海仙宾礁,开启新一轮填海造岛工程。美菲对此大为紧张,宣称侵犯了菲律宾的所谓“主权”,要求中方立即停止相关行为。
对此中方回应,美菲方面的指责是“徒劳”的,中方不会接受美菲毫无根据的指责和造谣。
中国外交部在5月13日发布消息,回应菲律宾方面有关中国在仙宾礁,建造人工岛屿的指责,外交部发言人汪文斌强调,菲方的指责毫无根据纯属造谣。中方表示,菲方近期多次散布谣言,蓄意抹黑中方,试图误导国际社会,这种行径是徒劳的。
据了解,菲律宾总统马科斯的办公室在一份声明中宣称,菲律宾海岸警卫队出动一艘船只,监视中国所谓建造“人工岛”的非法活动,并说另有两艘船正在该海域轮流部署。
菲律宾方面声称,在仙宾礁发现“碎珊瑚倾倒在沙洲上的行为”,并对几十艘中国舰船出现在仙宾礁表示“震惊”,其中包括科考船和海军舰艇。菲律宾海岸警卫队将带领海洋科学家前往该地,以确定碎珊瑚是自然现象还是人为导致,并阻止中方的填海造岛活动。
综合中非双方的说法来看,仙宾礁海域应该是发现了用碎珊瑚填充岛礁的情况,对于这一情况,美国和菲律宾方面认为是中国干的,并警告中方立即停止,宣称会出手阻止填海造岛行为。

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首先是中方在进行小规模的填海造岛,巩固仙宾礁的礁石,方便渔船停靠和科考作业。至于最终目的是否会大规模开发,造南海第四艘不沉航母还有待观察。
其次这也可能是菲律宾方便自导自演的闹剧,他们自己用碎珊瑚礁填充仙宾礁,然后诬赖给中方,借机炒作局势。
无论这两种可能是哪一种,其实都在提醒我们,对仙宾礁在内的一众中国南海岛礁,我们只有真正进行填海造岛了,才能打到美菲的痛处。
目前南海地区,中国有三艘不沉航母,想必大家都知道,也就是永暑岛—渚碧岛—美济岛。这三座岛礁在南海呈现互为掎角之势,因此也被军事圈里叫做“南海小三角”。
在过去一段时间,我们实现了“南海小三角”的打造后,一度没有在南海进行填海造陆的开发。
这其中有两个原因,第一个原因,正如我外交部一直在强调的,过去很长一段时间,南海地区的局势整体保持稳定,即便有摩擦也并未演变成武装对峙,在外交上也没有持续的风波。因此,没有必要对新的岛礁进行开发,激化地区整体局势。
另一方面,一口气吃不成胖子,在南海开发的大战略上,我们的开发进度应当与自身实力相对匹配。这主要体现在空军和海军的战略投射能力上,另外也牵扯到海警海事等执法单位的现代化规模。
那么我们反过来讲,目前南海地区的局势演变,和我国海上力量的发展,给我们新一轮填海造岛提供了现实基础。

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菲律宾马科斯政府抛弃杜特尔特政府时期的务实路线,在南海问题上奉行激进政策,配合美国搅乱南海局势。同时,日本、澳大利亚等域外国家也宣布全面介入,南海局势朝着失控演变。
客观来说,我们对美菲军事同盟的升级并没有太好办法,总不能直接对菲律宾宣战。
这时候,面对仁爱礁、黄岩岛等菲律宾主攻的地点,我们采取坚守底线的策略,同时对仙宾礁这样的有开发条件的岛礁,进行填海造陆活动,不失为一种良策。
“你打你的,我打我的”,毛主席的兵法精髓之一,在南海开发战略上完全适用。将精力聚焦在仁爱礁这种棘手的问题上,不如低调的多多开发岛礁。
对于福建已经完成第一轮海试的中国海军而言,我们不介意南海再多一座不沉航母。

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Published on:01:01:20


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