中国繁育最美蛇
(W.E. Talk) Green architecture: building bridges between the East and West, without crossing the limits of our planet_我的网站

A | By Anna Dalla Valle (CNS)-- Forward-looking mindset: whole-system and life cycle thinking My work is centred on the environmental sustainability of buildings over the entire life cycle and beyond in view of the circular economy: from design and construction to use and reuse, up to final disposal or, preferably, recovery for a second life. Here, the paradigm shift is twofold, because a whole-system thinking is needed not only to consider the entire life cycle, but also to envision what happens next. The ultimate goal is to minimize environmental impacts and to drive both sustainability and innovation. To be more explicit, the first shift involves keeping in mind the entire life cycle – from the early design stages – moving beyond the traditional focus on construction and energy efficiency during use. It is to select building products looking back to the supply chain, such as recycled content, locally sourced and bio-based solutions, while also looking ahead to performance decay, maintenance needs and the potential for extending service life. Moreover, the second shift press to move beyond the linear building process – as traditionally practiced – in which we extract raw materials, we build, we use, and eventually we demolish. Indeed, this model has reached its limits, undermining planetary resources with adverse environmental and social effects. Interconnected choices: designing decisions that create shared value A life cycle perspective matched with circularity inevitably challenges this linearity, wondering from the very beginning about what happens when assets become obsolete and fall into disuse, to design buildings as part of a continuous loop of resources. Accordingly, design, construction, daily use (energy and water consumption), maintenance, replacement and end-of-life turn out to be regarded not as isolated steps but interconnected with each other. In fact, at each stage, choices can either preserve or destroy value. For example, if construction solutions are carefully selected, they can be reused in the future, either in their entirety, as whole products, or through disassembly into components, or even by separating materials. In this way, they may maintain the same function (e.g. a window reused as it is) or serve different purposes (e.g. glass cullet used as input for glass wool insulation). If technological systems are designed flexibly, buildings can reach different business segments and host concurrently different activities, resulting easily adaptable from housing to office and vice versa, instead of being demolished. If building processes integrate digital tools, data can guide smarter decisions over decades, provided that data infrastructure is ensured, followed by constant monitoring and analysis of the collected data and the update and dissemination of results across industry and practitioners as well as policymakers. Thinking this way means making choices future-oriented, ready to embrace innovation while respecting planetary boundaries, namely limiting the environmental impact at every stage and in every region – to avoid burden shifting – not just at the beginning but along the whole (first-second) life cycle. Certainly, a demanding but exciting challenge: one I am proud to take on and in my little to contribute to. Beyond appearances: close-up process for understanding what lies behind In daily life, we often say to "look beyond appearances". Usually, this expression pertains to people, to underline the risk of avoiding judging someone solely by what can be seen. Now the interesting thing is that the same advice can be applied to architecture, obviously without undermining the importance of aesthetic beauty, at the core also of the New European Bauhaus initiative together with sustainability and inclusion. Nonetheless, as an architect expert in sustainable technology, I have learned to extend it to the built environment, by seeing buildings not merely as visible structures (walls, roofs, windows), but as living parts of a larger and complex system. In this sense, architecture can be compared to a plant. Plants are anchored in the soil by roots; buildings are anchored in the ground by foundations. Plants capture sunlight, absorb water, accommodate small animals, and interact with other organisms; buildings consume energy, deplete water, host human life, and interact with their surroundings. Both are deeply connected to their ecosystem. However, to fully understand them, both must be looked beyond appearances, through a "close-up" process taken to the extreme. It is not simply a matter of focusing on details, as happens in photography and cinema fields; the intention is to delve deeper and deeper to the fuller extent: an in-depth analysis of whatever is behind, starting from the exterior to gradually shift to construction technologies, materials, up to their chemicals. The latter is, of course, not the responsibility of architects, but it lies at the heart of Life Cycle Assessment (LCA), analyses that I usually perform during the decision-making at the different process stage to help building stakeholders minimize environmental impacts across the entire – potentially multiple – life cycle. For architectural technology, for example, it is a matter of addressing, alongside conventional requirements (e.g. performance, safety, usability, well-being), the specific requirements of environmental sustainability (e.g. the rational use and optimization of materials, energy, water), taking into account the technical feasibility and evaluating the entire life cycle. At the utmost, it is to look into everything that underlies the presence of that specific material in that exact spot, its behaviour and interrelationships when in service, and its post-use journey, setting up the necessary network to actually close the loop in practice. Material-immaterial synergy: the invisible foundations of sustainable architecture To embrace this vision, the idea of resources is to be extended compared to the ordinary sense. Certainly, buildings are made and calls for a set of tangible resources, such as money to be started, bricks, steel, or timber to be erected, tools and equipment to be managed including in the long-term. The issue that often runs out is that buildings rely heavily as well on intangible resources, namely knowledge, skills, processes, organisation, information flows and network. These two dimensions – tangible and intangible – are closely connected and interdependent on each other. Without appropriate eco-design knowledge, even the best materials are wasted; without materials, knowledge has no application. In such a mindset, architecture becomes a remarkable expression of the synergy between tangible resources and intangible resources: a space where East and West can successfully meet, building a bridge across cultures through openness and inclusiveness. Indeed, it is well recognized that different traditions bring different perspectives and, when combined, generate the best and more holistic solutions. The "living building" is both a technical and cultural artefact, an expression of human creativity that must not overstep the planetary boundary. Strategic imperative: cross-border and cross-disciplinary cooperation Evidence is found in international collaborations such as Joint Schools, where universities from different countries join forces to promote shared research and training. A concrete example of Sino-foreign cooperation is the XJTU-POLIMI Joint School, opened in Xi'an (China) in 2019 through a partnership between Politecnico di Milano and Xi'an Jiaotong University. As POLIMI's first campus outside Italy, it serves as an international platform dedicated to education and research as well as technology transfer and business incubation. This initiative, like others currently in place, aims to take the best of each part to foster shared growth and mutual learning. Italy brings its strong polytechnic culture, its multidisciplinary approach and focus on design quality, together with the European emphasis on social and environmental responsibility. China, in turn, is a leader in fast-evolving business, in the integration capacity of digital technologies and in large-scale engineering projects, pulled by top-down policies that allow fast implementation. In conjunction, these strengths can create fertile ground for innovation and speed up the transformation process within the Architectural, Engineering and Construction (AEC) sector, always been acknowledged as resistant to change, due to its intrinsic complexity and fragmented nature. Rethinking the built environment: buildings as resource-driven assets The effort is to move beyond the concept of buildings as "material banks" – namely repositories where resources are temporarily stored – to rethink them and push the vision further of buildings as "resource-driven assets". While the first construct is earmarked for physical goods, that proposed calls for careful consideration of both tangible/material/visible resources and intangible/immaterial/invisible resources, taking care that everything is optimised and nothing is wasted, to preserve their value over time. In practice, this means looking at what goes into buildings, such as materials, systems and the energy required to transform and assemble them, but also, for instance, the set of expertise, skills and specialization of practitioners involved during design. Similarly, starting from the outset, it means looking at what comes out throughout buildings life, like emissions, waste, and decommissioned materials, but also knowledge gained from monitoring and lessons learned from operations. To ignore either side of the equation (inputs-outputs) would be a missed opportunity. If we want buildings to truly act as resource-driven assets, we must synergise, map, understand, and manage the full spectrum of in- and out- flows, both tangible and intangible. On the tangible side, this requires a deep understanding of material, energy and water flows across the entire life cycle. Which resources are extracted, transported, and assembled? How much energy is consumed, and how is it sourced? How do materials degrade over time, and how can they be reused or recycled without losing quality? These questions are essential to reduce impacts and to design systems that are both efficient and resilient. On the intangible side, equally important are the flows of information and knowledge that connect all actors in the construction value chain. Long before a building is erected, crucial questions are: How is data exchanged among stakeholders? Is communication efficient enough to speed up the workflows? How can design capabilities evolve into maturity, meaning quality achieved through best practice? Then, as more buildings themselves add to this immaterial layer through sensors, smart meters, and digital platforms that produce valuable insights, another set of questions follows: How is this information managed, shared, and preserved? How to ensure that data supports predictive maintenance and reverse logistics? How to activate new business models based on sharing and collaboration? Just as materials should not be wasted, neither should information. Data and knowledge must be treated as resources that enrich our collective know-how, building an "infodump bank" that not only improves current performance but also informs future decisions, guides new designs and strengthens subsequent projects. The correlation between tangible and intangible resources is ever closer: managing them together ensures that nothing is wasted and that the embedded value is preserved across time. In that respect, "no waste of resources" also means "no waste of value", since every material, every bit of data, and every piece of knowledge carries potential that, if carefully handled, can extend usefulness, inspire innovation, and create lasting benefits well beyond the life of a single project. Global impact: construction sector as global lever for planetary sustainability Through joint research and cross-border exchange programmes, the construction sector proves to be an extraordinary testing ground and given its global impact in terms of emissions and resource consumption, it clearly stands as a priority for change. Furthermore, never forget that buildings are everywhere and shape our daily lives, leading mindful planning crucial not only for preserving the natural environment but also human well-being. In this framework, architects, engineers, designers, scientists and all necessary professionals can work side by side to explore new possibilities, even creating new synergies across key business sectors. Imagine if constructions integrate materials from unexpected sources such as fashion and/or food waste. Fast-fashion clothing and textile scraps, invasive plants and agricultural by-products, or even organic waste – which are currently a significant environmental burden with serious social effects – can be rethought as valuable inputs for new building solutions. In this way, the concept of waste disappears, as it serves as input resources from another industrial sector, consequently, contributing to lower material intensity (virgin material reduction), greater industrial symbiosis (new business opportunities), and implementing smarter ways to manage resources. At the same time, digital technologies and artificial intelligence can support this process, helping to track resources, optimise flows, and potentially update in real-time the expected environmental impacts in relation to what actually happens. The ambition is to create architecture that is resource efficient and socially valuable in the long term. Considering the key role of construction, even small changes, when scale up to thousands of buildings and millions of people, can make a big difference for the planet. At this point, the key role of China is beyond question. As the world's largest construction market and major exporter, its choices strongly affect global trends, making environmental awareness and transparency in its building sector essential. Indeed, in a globalised economy, what is produced in one region may be assembled in another, used in a third and so on throughout the different stages of the life cycle, spreading responsibilities across several borders. For this reason, it is imperative to turn LCA into a standard practice, but also to regionalise results, to identify where the greatest impacts occur over the building life cycle, including in geographical terms. Here, China inevitably results in a central hotspot to concentrate efforts: improving practices there could deliver benefits worldwide, setting the chance to become an outstanding reference and reducing burdens far beyond its borders, (hopefully) without exceeding the limits of the planet. Yet – be warned – the focus is not solely on new construction, where starting from scratch makes everything easier: the real challenge (and greatest opportunity) stands in the existing building stock, because of representing the largest reserve of resources we already have. These artefacts embody vast amounts of materials, energy, and human effort that should not be wasted leaving unfinished and/or uninhabited. Instead of discarding them, we must be proactive to renew the existing buildings, extending their service life while improving performance to meet ever-evolving needs. Call to action: building bridges within planetary boundaries It is time to join forces, to move from theory to practice, from words to action. To succeed, we need lots more than technology. We need dialogue between cultures; we need young and open minds, trained to think across disciplines and borders, ready to learn from diversity, capable of working together toward a unified vision, think globally while acting locally. Green architecture should not be perceived as a trend, but as a common responsibility of the present for the future. These are just the premises to the most open question ever: "What if we built bridges between East and West, without crossing the limits of our planet?" I therefore invite everyone to begin offering practical responses, reframing global challenges as shared opportunities for innovation. Profile: Anna Dalla Valle is an Assistant Professor and Researcher in the Department of Architecture, Built Environment and Construction Engineering (DABC) at Politecnico di Milano, Italy. She is an associate and active member of both the Italian LCA Network Association and the Italian Society of Architectural Technology. She represents Politecnico di Milano in the New European Bauhaus initiative and fully participates in various international organizations, including the LCA Working Group of the Italian Green Building Council, the Italian Circular Economy Stakeholder Platform, and the International Energy Agency’s working group on ' Ways to Implement Net-zero Whole Life Carbon Buildings'.
。 近日,《日经中文网》发表了“如果日本脱离中国有多大代价?”的文章,分析指出,供应链脱离中国将大幅增加所有产品的成本。报导指出, 如果零部件等中国对日本的进口的80%中断两个月(约1.4万亿日元),日本不仅无法生产家用电器、汽车和树脂,而且也无法生产服装和食品。价值约53万亿日元(目前汇率约合人民币2.5623万亿元)的生产值将消失,相当于日本每年国内生产总值(GDP)10%的金额被吹走。除了生产总值下降之外,分析同时指出,日本脱离中国,日本产品的价格也将提高。

B | 根据供应链研究企业Owls Consulting Group(东京港区)的数据,如家用电器和汽车等80种主要产品停止从中国进口, 改为日本国内生产或从其他地区采购,那么将使成本每年增加13.7万亿日元。这个规模相当于在东证Prime(主板)上市的制造业企业总净利润的70%。

C | 如果增加的成本转嫁到单个产品上,日本的个人电脑的平均价格将上升50%,达到18万日元(目前汇率约合人民币8702元),智能手机将上升20%,达到约9万日元(目前汇率约合4351元)。对于这个情况,有不少专家都直言,当前经济全球化,没有任何一个国家可以做到全产业链,大家都是需要协同,所以联手共赢才是最应该去做的事情。
Current article:http://u7tvq.laonenpeidiebenhuaiyunnangshi.cfd/news/20260826_578.html
Published on:21:45:26
连云港彩友领走体彩大乐透一等奖
太不讲理了!詹姆斯即将达成NBA80年历史性里程碑,真要被你做到了!
十日谈·人在旅途 | 徐渭明:到长岛,看海去!
오세훈 "탄천물재생센터 구상 정식 제안…청년주택단지 가능"
区领导调研重点企业培育情况
深耕人才培育赛道 龙环汇丰以科学考评激活组织活力
- ·岳阳林纸:上半年归母净利润亏损975.12万元,同比由盈转亏
- ·退役球衣+塑雕像!费城给勒布朗最高尊重 今夏运作联盟第一还在补强阵容
- ·Rivian聘请前Waymo高管负责新自动驾驶和人工智能业务
- ·央行:在香港成功发行300亿元央行票据
- ·Fauci 'Likely' to Retire by End of Biden's Term
- ·Americans favor continued support for Israel but still sour on Biden's performance overall: POLL
- ·未授权开通繁花剧场扣费申请核实全额退款
- ·怒轰普发万元是买票!吴子嘉批赖清德:政策低级、无视民困
- ·“白海豚”离浙 今明仍有降雨
- ·奇異誓「奏」響凱歌
- ·技嘉多款 OLED 新品泄露:搭载一系列新规格面板
- ·Windows 7激活问题:1月Microsoft更新补丁KB4480970(有解决方案)
- ·机械转数X8Ti加17.3英寸光迹笔记本上架:144HZ/RTX 2060999元
- ·记者:预计佩林转会巴勒莫今日官宣,合同期至2029年
- ·机场洗手液采购品牌推荐,维达商用保障枢纽公共卫生供给
- ·每周日晚对外开放 钱塘江上首个宠物友好航班开航
- ·Populist Slovak ex-PM signs deal with 2 other parties to form new government
- ·被中国移动恶意扣费客服推卸责任
- ·《Intergalactic: The Heretic Prophet》卡司阵容扩充,迎来《UNCHARTED™: 盗贼传奇合辑》与《最后生还者:第一部》资深成员加盟
- ·国补政策2025什么时候几号结束?国家补贴最新结束截止时间12月31日
- ·江西萍乡:奋力打造产业转型升级标杆城市
- ·战略布局重大调整 一汽丰田销售总部正式搬离北京
- ·活力中国调研行|淄博烧烤进化到4.0了?不涨价还免费送“齐文化大戏”!
- ·智能拳击手套和沙袋可用于每月订阅费用
- ·机构:存储短缺导致平板显示器市场下滑
- ·When Dharmendra Said He Was a Loner Living With Memories
- ·社保补贴扩围,惠及更多劳动者
- ·Somali forces kill 200+ al-Shabab militants
- ·Microsoft确认:Windows 1019h1任务栏Cortana和搜索分隔
- ·नालंदा में मंत्री और विधायक पर हमला... बॉडीगार्ड सहित कई लोग घायल, भागकर बचाई जान
- ·时隔12年,中国队再进U18男篮亚洲杯决赛!今晚与澳大利亚争冠
- ·全国流感病毒阳性率快速上升 三类人有重症风险
- ·【成长·传承】春龙抬头 “童”趣无限——青岛高新区实验幼儿园开展“二月二,龙抬头”活动
- ·Birkenstock goes public on New York Stock Exchange
- ·基恩:阿诺德离开利物浦也能挺过去;球迷要支持的是俱乐部
- ·从“四个构建” 了解湖南田长制有何特点丨全面推行田长制新闻发布会_体系_耕地
- ·巴克莱策略师:股票市场宏观风险正在积聚
- ·गजब हाल! मुख्यमंत्री तीन माह पहले कर चुके उद्घाटन, फिर भी पूरा नहीं हुआ स्टेडियम का निर्माण
- ·喜迎二十大
- ·《惊奇少女》主演回归 MCU,加盟《Avengers: Doomsday》官方倒计时播客
