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How safe are our buildings

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One crack, a tremor, a loud sound??nd Collapse! Buildings fall. This is true to India, And the string of accidents reported in recent Years is testament to this. Consider this: last September, five people were killed after an Apartment block collapsed in delhi; months earlier, A six-storey building collapsed on the outskirts of Delhi, killing nine; in march, a four-storey, underconstruction Building collapsed at dharwad in north Karnataka. These are just some recent mishaps ??Unfortunately, there have been more.

In fact, millions of indians live in dilapidated Buildings at the risk of collapse during the rains. Recent reports have indicated some statistics from The busy cities: mumbai has 4,299 dilapidated buildings, Of which, 633 come under the c1 ??xtremely Dilapidated??category; the bruhat bengaluru Mahanagara palike has so far identified 52 structures That are in a dilapidated state and run the risk of Collapsing; last year, Kolkata Municipal corporation Issued notices to 52 old and dilapidated buildings Located in different areas under its jurisdiction. What?? More, the condition and quality of the indian building Stock is poor when it comes to seismic performance And fire-outbreaks.

What leads to a collapse? The reasons are often related to planning, design And material. The use of inferior construction material Is believed to be the root cause that reduces the life Of a building. Some common causes for collapse Today, according to Dr Paresh Shah, professor and Dean, faculty of technology, cept university, Are ??mproper geotechnical investigation; poor quality Rcc construction practices; and improper formwork Practices, inadequate stripping time, lack of re-shoring Or shoring to lower floors.??/p>

According to Dr Pramod Kumar Gupta, professor, Structural engineering, department of Civil Engineering, IIT-Roorkee, ??n planning, we have To check the load transfer mechanism. Here, the External load, which may be owing to gravity or Earthquake, should be transmitted to the foundation Without creating any structural damage to the structural Elements. The foundation should be strong and stiff Enough to transfer the load to the soil or earth. So, An appropriate structural form may address this Issue.??/p>

Dr gupta adds that before designing any structure, An analysis is carried out, where reactive forces and Associated deformations in different structural elements Are determined using appropriate techniques. Thereafter, the design of elements is carried out by Choosing a suitable material. ??hoice and quality Of material are key parameters these days and properquality control should be ascertained when it comes To material,??affirms Dr Gupta. In his view, if all These steps are followed with due care, it would be Near on impossible for any structure to collapse before Reaching its age.

Building a strong foundati on A building?? foundation performs a number of Functions, such as bearing the load of the building, Anchoring it against natural forces, and isolating it From ground moisture. Thus, a poorly constructed Foundation can be hazardous for the occupants. ??he primary function of a building?? foundation Is to form the basis and hold the structure together,??Avers Shabbir Kanchwala, Senior Vice President, K Raheja Corp. ?? house anchored to its foundation Will retain its structure better and be less likely to be Swept away in a natural disaster.??/p>

And, Dr Niranjan Hiranandani, Founder & Managing director, Hiranandani group and President, Naredco, shares, ??n accurate Geotechnical investigation helps to build a strong Foundation. Selecting the correct type of foundation ??pile or open foundation ??and ensuring the most Appropriate founding strata are other important Factors.??he believes the concrete foundation should Be properly vibrated to ensure voids in the concrete Have refrained.

??tructural consultants and civil contractors have A significant role to play,??says Deepak Suvarna, Chief projects officer-head projects, Mahindra Lifespaces developers. ??xpertise in concrete Technology is a prerequisite. Also, exhaustive soil Investigation and effective designing of foundation Systems as per soil conditions are essential. Waterprone Areas are best avoided and a detailed subsoil Drainage system helps to ensure foundation strength.??/p>

A strong foundation can withstand natural disasters Or shocks and take adequate loads in most eventualities. ??esigning a building foundation is done in a Way that the weight of the entire structure is distributed Evenly to prevent the subsoil from spreading,??says Samyak Jain, Director, Siddha Group. ??t is crucial To assess the soil type; loam, rock, sand and gravel Are good as foundation-friendly soil. To get a stronger Base, concrete need to be poured in deeper trenches Dug in the soil till a hard surface is reached.??For his part, Rohit Poddar, Managing Director, Poddar Housing and Development, and joint Secretary, Nardeco Maharashtra, lays down Various steps: ??irst, you need thorough soil Investigation; then half-meter contour. After this, You need to slightly overdesign the load-bearing capacity of the foundation; strengthen the foundation Through a continuous pour process; give sufficient Time and use a modern curing compound; and provide Anti-termite treatment and waterproofing treatment According to international standards.Material advantage Concreting operations such as mixing, transporting, Placing, compaction and curing are important to Deliver optimal quality. The complete strength of a Structure is directly proportional to the properties And quality of materials and the quality of construction. Samyak Jain refers to two types of concrete that Construction companies use: ready-mix concrete (rmc) and site-mixed concrete. ??he quality of Both types is dependent on the number of formulas And steps,??he says. While application of rmc is Recommended for construction of high-rise structures, Especially during lack of proper logistical support, The quality of concrete mixed on site can be enhanced With stricter supervision and correct inputs.

That said, Prof Manu Santhanam, Department Of civil engineering, IIT-Madras, Avers, ??MC Has an advantage in terms of the quality of the blend Used, compared to site-mixed concrete.??further, Speaking from his experience over the years and data Analysis, Dr Hiranandani believes mixed concrete On site that has been produced with a scientific and Systematic way along with appropriate r&d helps Establish a system in place that ensures better quality. ??urther, the ??arbage-in, garbage-out??concept also Applies to the production of concrete,??he contends. ??ence, it is important to set criteria for the right. ??roper cover to Rebars and durable Concrete are key for a Safe structure.??- Dr. Niranjan Hiranandani, Founder & Managing Director, Hiranandani Hroup and National president, Naredco ?? house anchored to Its foundation is less Likely to sweep away In a natural disaster.??/p>

– Shabbir Kanchwala, Senior vice president, K Raheja Corp

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Concrete

Molecor Renews OCS Europe Certification Across Spanish Plants

Certification reinforces commitment to preventing microplastic pollution

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Molecor has renewed its OCS Europe certification for another year across all its production facilities in Spain under the Operation Clean Sweep (OCS) voluntary initiative, reaffirming its commitment to sustainability and environmental protection. The renewal underlines the company’s continued focus on preventing the unintentional release of plastic particles during manufacturing, with particular attention to safeguarding marine ecosystems from microplastic pollution.

All Molecor plants in Spain have been compliant with OCS Europe standards for several years, implementing best practices designed to avoid pellet loss and the release of plastic particles during the production of PVC pipes and fittings. The OCS-based management system enables the company to maintain strict operational controls while aligning with evolving regulatory expectations on microplastic prevention.

The renewed certification also positions Molecor ahead of newly published European regulations. The company’s practices are aligned with Regulation (EU) 2025/2365, recently adopted by the European Parliament, which sets out requirements to prevent pellet loss and reduce microplastic pollution across industrial operations.

Extending its sustainability commitment beyond its own operations, Molecor is actively engaging its wider value chain by informing suppliers and customers of its participation in the OCS programme and encouraging responsible microplastic management practices. Through these efforts, the company contributes directly to the United Nations Sustainable Development Goals, particularly SDG 14 ‘Life below water’, reinforcing its role as a responsible industrial manufacturer committed to environmental stewardship and long-term sustainability.

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Concrete

Coforge Launches AI-Led Data Cosmos Analytics Platform

New cloud-native platform targets enterprise data modernisation and GenAI adoption

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Coforge Limited has recently announced the launch of Coforge Data Cosmos, an AI-enabled, cloud-native data engineering and advanced analytics platform aimed at helping enterprises convert fragmented data environments into intelligent, high-performance data ecosystems. The platform strengthens Coforge’s technology stack by introducing a foundational innovation layer that supports cloud-native, domain-specific solutions built on reusable blueprints, proprietary IP, accelerators, agentic components and industry-aligned capabilities.

Data Cosmos is designed to address persistent enterprise challenges such as data fragmentation, legacy modernisation, high operational costs, limited self-service analytics, lack of unified governance and the complexity of GenAI adoption. The platform is structured around five technology portfolios—Supernova, Nebula, Hypernova, Pulsar and Quasar—covering the full data transformation lifecycle, from legacy-to-cloud migration and governance to cloud-native data platforms, autonomous DataOps and scaled GenAI orchestration.

To accelerate speed-to-value, Coforge has introduced the Data Cosmos Toolkit, comprising over 55 IPs and accelerators and 38 AI agents powered by the Data Cosmos Engine. The platform also enables Galaxy solutions, which combine industry-specific data models with the core technology stack to deliver tailored solutions across sectors including BFS, insurance, travel, transportation and hospitality, healthcare, public sector and retail.

“With Data Cosmos, we are setting a new benchmark for how enterprises convert data complexity into competitive advantage,” said Deepak Manjarekar, Global Head – Data HBU, Coforge. “Our objective is to provide clients with a fast, adaptive and AI-ready data foundation from day one.”

Supported by a strong ecosystem of cloud and technology partners, Data Cosmos operates across multi-cloud and hybrid environments and is already being deployed in large-scale transformation programmes for global clients.

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Concrete

India, Sweden Launch Seven Low-Carbon Steel, Cement Projects

Joint studies to cut industrial emissions under LeadIT

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India and Sweden have announced seven joint projects aimed at reducing carbon emissions in the steel and cement sectors, with funding support from India’s Department of Science and Technology and the Swedish Energy Agency.

The initiatives, launched under the LeadIT Industry Transition Partnership, bring together major Indian companies including Tata Steel, JK Cement, Ambuja Cements, Jindal Steel and Power, and Prism Johnson, alongside Swedish technology firms such as Cemvision, Kanthal and Swerim. Leading Indian academic institutions, including IIT Bombay, IIT-ISM Dhanbad, IIT Bhubaneswar and IIT Hyderabad, are also participating.

The projects will undertake pre-pilot feasibility studies on a range of low-carbon technologies. These include the use of hydrogen in steel rotary kilns, recycling steel slag for green cement production, and applying artificial intelligence to optimise concrete mix designs. Other studies will explore converting blast furnace carbon dioxide into carbon monoxide for reuse and assessing electric heating solutions for steelmaking.

India’s steel sector currently accounts for about 10–12 per cent of the country’s carbon emissions, while cement contributes nearly 6 per cent. Globally, heavy industry is responsible for roughly one-quarter of greenhouse gas emissions and consumes around one-third of total energy.

The collaboration aims to develop scalable, low-carbon industrial technologies that can support India’s net-zero emissions target by 2070. As part of the programme, Tata Steel and Cemvision will examine methods to convert steel slag into construction materials, creating a circular value chain for industrial byproducts.

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