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Once a cycling and walking city, Erode’s mobility infrastructure leaves much to the imagination

15th July 2026 by admin


One day. Three commuters. 

5:30 AM: Selvi, a 23- year-old walks 20 minutes to a bus stop with no light as streetlights are not planned to illuminate walking paths. 

8:00 AM: A few hours later, Rajeshwari, a 35-year-old  is dropping her son to school by foot. She’s seen walking on a tightrope of the dusty road edge as large trucks zoom by, as school streets are also commercial and industry access streets. 

5:00 PM: Muthusamy is exhausted by the end of his work shift. However now a longer wait awaits him, for a bus that may not come. He’s seen squatting on the road, as the narrow concrete bench at the shelter is already occupied. 

Erode’s mobility crisis is not abstract. It is lived, daily, by hundreds of thousands. 

Figure 1: A mobility baseline of Erode

Erode is a city presenting a striking paradox. While on one hand, 63% of daily trips rely on sustainable modes of transport, in sharp contrast, city lacks essential pedestrian infrastructure, adequate public transport coverage, and safe, comfortable access to transit. At the same time, vehicle ownership continues to rise, intensifying competition for limited road space and contributing to congestion, pollution, and increasing urban heat. 

These challenges are not unique to Erode. Across many Tier-2 cities in Tamil Nadu, decades-old road networks are struggling to accommodate rapid motorisation, often at the expense of pedestrians, bus users, women, and other vulnerable groups. In one of India’s hottest cities, the impacts are compounded by rising temperatures and climate risks. 

To better understand these gaps and identify targeted solutions, ITDP India, under the UK PACT-supported Climate-Resilient, Sustainable and Inclusive Urban Mobility project, undertook a detailed assessment of Erode’s streets, bus stops, and transit accessibility. The findings reveal not only where the city is falling short, but also how it can build a more inclusive, climate-resilient, and sustainable mobility future.  

Where are the pedestrians of Erode?

Figure 2: Footpath network of Erode city

People like Rajeshwari walk in Erode to the bus stops, markets, schools, temples and other public places –  either as a primary mode or as a last-mile mode of travel. However, this walk is unsafe as there’s no footpath. 

Figure 3: Analysis framework to assess pedestrian access 

At least 40 kms of the road network in Erode has a width greater than 12m RoW, making it feasible to implement adequate footpath infrastructure; however, the city has currently built only around 10.7 kms of footpaths, serving just 3 of 74 Corporation schools and 42 out of 225 bus stops. 

The nature of the footpath was assessed using a framework of analysis, combining infrastructure audits, user perception surveys with 300 citizens, as well as speed surveys. The data revealed that  the existing infrastructure hardly helps where needed most. 

Figure 4: From top to bottom: 1. Absence of defined footpath,  2. Obstructed footpath, 3. Absence of footpath on most roads

Figure 5: Results from perception surveys and footpath audits

Walking should be the easiest and most natural way to get around a city. Yet, for many people in Erode, the lack of continuous, safe, and comfortable footpaths leaves them with little choice but to walk on the carriageway, exposing people to speeding traffic, air pollution, and extreme heat.

Residents are clear about what they want: safer, cooler streets and well-connected footpaths linking homes, schools, workplaces, and bus stops. Their aspirations highlight an opportunity to reimagine Erode’s streets around people, creating a comprehensive pedestrian network that is safer, more inclusive, and climate-resilient.

Is bus transport a better option?

If walking is difficult, perhaps the bus offers relief—but ITDP India’s analysis suggests otherwise. As shared above, bus users like Muthuswamy and Selvi almost end up waiting for prolonged times in unsafe and unprotected situations.

Although the Erode bus network boasts a daily ridership of 6 lakh passengers, the city’s public transit network is currently limited to major arterial corridors totalling 55.56 km, supported by 225 bus stops, 725 TNSTC buses, and 38 private buses. But this means that there are only 25 buses per lakh population, as against the 60 prescribed by MoHUA, indicating a significant overall deficit in the bus network.

Access to public transport was assessed using an analytical framework that combined PNT, bus stop infrastructure audits, and user perception studies. How was this done?

Figure 6: Analysis framework to assess access to public transport

The PNT Analysis is an overlay of the city’s transit network, its land uses and population. This revealed that the bus network is accessible within a 5-minute walking distance only for 44% of the population!  However, if we consider access to Frequent Transit (FT), that is, routes that consist of buses every 5 minutes, only 14% of the population can access it within walking distance. This percentage is much less when it comes to access to buses for schools, institutional areas, or slums, at just 18.6%, 9.3% and 1.7%, respectively.    

Left Figure 7: Bus transit shed (only TNSTC) and Right Figure 8: Frequent transit shed (only TNSTC)

Figure 9: From left to right: 1. Absence of safe crossing at bus stops, 2. Absence of bus shelter, 3. Inadequate seating at bus shelters 

Figure 10: Results from bus user surveys and bus stop audits

The results of the survey and audits reveal a lack of, as well as poor quality infrastructure provided at bus stops, resulting in 99% of audited bus stops falling under Level of Service (LoS) C, which is the lowest scoring category used in the study. 

Therefore, bus shelter infrastructure and buses require comprehensive upgrades to improve safety, comfort, accessibility, and information. Bus users have highlighted the need for panic buttons, help lines, and CCTV in buses and bus stops; low-floor buses; better lighting and more seating; and an increase in bus frequency as top priorities.  

These findings also establish the need for optimising existing routes, developing secondary and tertiary routes served by mini-buses or Intermediate Public Transport (IPT) services like autos, physical integration of bus stops with IPT stops, adding modern buses (Electric and petrol/diesel/CNG) to the fleet, and installing modern bus shelters connected to the footpath, enabling pedestrian access. 

How can Erode move towards sustainable transport?

Erode’s upcoming Master Plan 2041 presents a unique opportunity to build a city that works for everyone. Safe footpaths, comfortable bus stops, reliable and affordable public transport, and essential amenities such as lighting, seating, shade, drinking water, and restrooms are not just infrastructure investments—they are the foundations of dignity, inclusion, and resilience. 

Ultimately, Erode’s progress will be measured not by the roads it builds, but by how safely and comfortably its people can move. The choices made today can help create a more equitable, connected, and climate-resilient city for the future because for Rajeshwari, for Selvi waiting in the dark, for every child who nearly gets hit—there is no more time to waste.  

Those who wish to read through detailed insights, kindly refer to the publication. 

Written by Sanchana S, Senior Associate, Healthy Streets 

Edited by Donita Jose, Deputy Manager, Communications


Frequently Asked Questions

  1. What is PNT analysis? 
    People Near Transit (PNT) Analysis is a method that overlays a city’s public transport network with land-use and population data to understand how many people can access public transport within a walkable distance. In Erode, it was used to identify areas and population groups that lack sufficient access to bus services and frequent transit. 
  1. How extensive is Erode’s public transport network? 

Erode’s public transport network currently consists of: 

  • 55.56 km of bus corridors along major arterial roads
  • 225 bus stops  
  • 725 TNSTC buses  
  • 38 private buses  

Around 6 lakh daily passenger trips . However, the PNT analysis found that only 44% of Erode’s population can access the bus network within a 5-minute walk, and only 14% can access Frequent Transit services (buses every 5 minutes) within walking distance. 

  1. How many roads in Erode have footpaths? 

Erode currently has only 10.7 km of roads with footpaths, despite having at least 40 km of roads wider than 12 metres where adequate footpath infrastructure could be provided. 

  1. How many schools in Erode have access to footpaths? 

Out of 74 Corporation schools in Erode, only 3 schools are currently served by footpaths. Additionally, among the 10 most populated Corporation schools, where 40% of students and teachers walk to school, footpaths adequately serve only 2 schools. 

  1. What are GEDSI principles? 

GEDSI stands for Gender Equality, Disability and Social Inclusion. GEDSI principles ensure that transport and urban infrastructure are designed to be: 

  • Safe and accessible for women, children, older adults, and persons with disabilities  
  • Inclusive of marginalised and vulnerable communities  
  • Equitable in providing access to mobility, services, and opportunities  
  1. What is the UK PACT Project about in Erode? 

The UK PACT-supported Climate-Resilient, Sustainable and Inclusive Urban Mobility Project in Erode aims to improve walking and public transport conditions while supporting low-carbon urban development. As part of the project, ITDP India: 

  • Conducted a People Near Transit (PNT) Analysis  
  • Audited 21 km of footpaths and 30 bus stops  
  • Surveyed 300 pedestrians (including 150 students)

Filed Under: Sustainable transport, Walking and cycling Tagged With: Bus accessibility, Bus stop infrastructure, Climate-resilient cities, Climate-resilient mobility, Erode mobility, Footpath infrastructure, Gender Equality Disability and Social Inclusion (GEDSI), Healthy Streets, Inclusive mobility, Non-motorised transport (NMT), Pedestrian safety, People Near Transit (PNT), Public Transport, Sustainable mobility Erode, Sustainable Transport, Transit accessibility, urban mobility, Urban transport planning, Walkability, Walkable streets, Walking infrastructure

From Scrapyard to Supply Chain, Tamil Nadu is Bringing Circularity in its Clean Mobility Transition 

10th April 2026 by admin


As India works towards its climate and clean air goals, efforts are focused on making the shift to cleaner vehicles happen faster. However, for this transition to succeed, two equally important challenges need to be addressed. 

The first is moving older, more polluting vehicles off the road. In 2025, around 12 million vehicles across India were eligible for scrappage, yet between 2022 and 2025, fewer than 3% of them were actually scrapped. This is a serious problem because older vehicles do not just pollute a little more — they can pollute many times more. In fact, one BS4 truck or bus can emit as much pollution as around 14 BS6 vehicles, while one BS4 car can be equivalent to nearly 11 newer BS6 cars in terms of emissions. If cleaner mobility is to become a reality, this shift away from ageing, high-emission vehicles needs to happen at scale. 

The second challenge is what happens once these vehicles begin to leave the system. Tamil Nadu alone is expected to see around 1.56 crore vehicles enter the scrapping market by 2030. At the same time, as EV adoption increases, the state will also begin to see a rise in battery waste over the coming years. This means that a sustainable transition is not only about bringing cleaner vehicles onto the road. We need to deal responsibly with the old vehicles, tyres, vehicle components, and batteries that this shift will leave behind. Without proper systems in place, end-of-life vehicles (ELVs) and batteries can create environmental and public health risks. 

At the same time, vehicle components and batteries are valuable resources that contain valuable resources that can be recovered and reused, and should not be simply discarded. Critical minerals and rare earth elements used in EV batteries are limited, expensive, and highly import-dependent. Discarding what can be recovered works against the very idea of a sustainable transition. 

Hence, the next phase for a Greener Tamil Nadu needs to go beyond adoption. It must help people move away from older, polluting vehicles, while also creating a responsible and circular pathway for the materials and components they leave behind. In many ways, this is what will determine whether the transition is truly clean. 

The vision for a Greener Tamil Nadu 

The manufacturing sector, including vehicle manufacturing, forms the backbone of Tamil Nadu’s economic growth story. As the state works towards becoming a trillion-dollar economy by 2030, the demand for materials and resources to support this growth will also rise significantly. In the mobility sector, this raises an important question: how can Tamil Nadu continue to move towards cleaner transport without creating a new burden of old vehicles, EV batteries, tyres, and parts that are left unmanaged? 

Tamil Nadu’s recent policy direction – the Vehicle Scrappage Policy, implemented through G.O. Ms. No. 451, and the Tamil Nadu Circular Economy Investment Policy 2026, together address three parts of the transition:  

  1. Moving people away from older, polluting vehicles;  
  2. Preparing for the rise in end-of-life components and battery flows; and 
  3. Reducing the pressure on limited and expensive raw materials through reuse, recycling, and second-life applications. 

What Tamil Nadu’s Vehicle Scrappage Policy Means 

Tamil Nadu’s Vehicle Scrappage Policy does more than create a process for scrapping old vehicles. It puts in place a more organised system for retiring vehicles that are old, unfit, damaged, or no longer economical to repair, while also linking scrappage to cleaner mobility goals. 

For citizens, the policy creates a formal and digitally tracked pathway to scrap eligible vehicles through authorised Registered Vehicle Scrapping Facilities (RVSFs). By moving the process to the Vahan portal and authorised scrapping facilities, the policy seeks to make scrappage more transparent, accountable, and easier to navigate than informal channels. 

The policy also lays down a method for determining scrap value, allowing vehicle owners to recover some value from an ageing vehicle through an authorised scrapping facility. It also provides a Certificate of Deposit, which can be used to access benefits when purchasing a new vehicle. 

Image source: Tata motors

Beyond citizens, the policy also has implications for the scrapping and recycling ecosystem itself. By shifting vehicle retirement into a more formal and regulated system, it creates the possibility for the sector to gradually move away from unsafe and environmentally harmful dismantling practices towards safer, more standardised, and traceable methods. For workers and enterprises in this space, formalisation can also mean clearer processes, more predictable pricing, and stronger integration with authorised recycling and recovery industries. While much of the sector still operates informally today, policies like this begin to lay the groundwork for a more organisedecosystem over time. 

At the same time, the policy recognises that this transition cannot rest on citizens alone. It requires the government itself to lead by example by phasing out vehicles in its own fleet that are older than 15 years. In Tamil Nadu, this applies to 11,908 government-owned vehicles, including those belonging to State Transport Undertakings and local bodies, which are to be disposed off through RVSFs. The policy also empowers the state to build the supporting ecosystem by enabling the establishment of scrapping facilities and automated testing stations, both of which are essential for making this shift work in practice. 

Together, these provisions make the policy larger than a scrappage rule. It is both a citizen-facing and system-facing reform.  

How the Circular Economy Investment Policy 2026 Strengthens the Clean Mobility Transition 

If the Vehicle Scrappage Policy focuses on helping older vehicles exit the system more responsibly, the Tamil Nadu Circular Economy Investment Policy 2026 looks at what happens next. The policy identifies the automobile sector as a major part of the state’s greener industrial future and focuses on three linked areas: end-of-life vehicles, EV batteries, and tyres. 

One of the clearest signals in the policy is that Tamil Nadu is preparing for scale. With 1.56 crore vehicles expected to enter the scrapping market by 2030, there is a need to build the industries and systems needed to recover value from them. The state is facilitating the development of Registered Vehicle Scrapping Facilities (RVSFs) and associated infrastructure, aligning with the national Voluntary Vehicle Fleet Modernisation Program (VVMP).  

There is a major focus on advanced-chemistry cells and battery recycling, which is increasingly important as EV adoption rises. From a 3.94% adoption rate in 2022, Tamil Nadu reached 7.85% EV adoption in 2025, with over five lakh registered EVs as of February 2026. While this is a positive sign for cleaner mobility, it points to a challenge that is going to emerge. Since EV batteries typically last up to ten years, a large number of batteries will be reaching their end-of-life in the coming decade.  

Instead of seeing used batteries only as a disposal challenge, the policy treats them as a source of valuable materials such as lithium, nickel, and cobalt that can be recovered and fed back into future manufacturing. This is particularly important for India, which remains heavily dependent on imports for these critical minerals — entirely so in the case of lithium and cobalt, and significantly for nickel and rare earth elements. Today, a large share of battery-related waste is either exported or lost to informal channels, representing not only an environmental concern but also economic loss and a resource security risk.  

Image source: Tata World

By creating systems to recover these materials from old batteries in a more robust and localised way, Tamil Nadu can help reduce future import dependence while building a more resilient EV ecosystem. To support this, the policy focuses on the entire battery value chain, including collection, diagnostics, dismantling, recycling, and material recovery. It also encourages second-life uses for batteries, such as for energy storage, backup power, and support for EV charging infrastructure. 

The third component looks at tyres, which are among the most frequently replaced parts of a vehicle due to constant exposure and wear. A tyre typically lasts only one-fifth of a vehicle’s life, which means that the number of tyresreaching the end of their use is far greater than the number of vehicles. This becomes especially important in a country like India, which is the world’s third-largest automobile market, with the tyre manufacturing sector reaching a total production of 217 million units. Tamil Nadu plays a significant role in this ecosystem, contributing to nearly to 25% of the country’s total tyre exports, while also having the third largest vehicle fleet registrations in the country. Together, this means the state is likely to see a substantial volume of used tyres over time. In this context, the policy encourages more circular ways of handling used tyres, from recycling and retreading to creating downstream uses in other industries. This helps position circularity not only as an environmental response, but also as an industrial opportunity. 

To make this ecosystem viable, the policy also introduces financial and institutional support. It offers incentives for new recycling and circular economy businesses, support for skilling and employment, and added assistance for smaller enterprises. It also proposes enabling infrastructure such as low-carbon green industrial parks, digital platforms to connect waste generators with authorised recyclers, and climate-focused funding mechanisms. 

By supporting the recovery, recycling, and repurposing of old vehicle components, tyres, and batteries, Tamil Nadu is not only addressing an environmental challenge but also opening up new opportunities for investment in industries that can bring these materials back into productive use. This is especially relevant for EV batteries, where second-life applications and material recovery can create value beyond the vehicle’s first use. 

Along with reducing carbon emissions, the Circular Economy Investment Policy 2026 focuses on building the industries, recovery systems, and material loops needed to make the transition from ICE vehicles more sustainable over time. 

Tamil Nadu’s two recent reforms mark an important shift in how the clean mobility transition is being approached 

Having these policies in place is, in itself, a positive start. At a time when vehicle registrations continue to rise across India – now at 42 crore – and Tamil Nadu alone accounts for over 3.5 crore registered vehicles, these reforms are a logical next step in preparing for the long-term realities of a growing and changing mobility ecosystem. The state’s vehicle registration has also continued to expand steadily in recent years, increasing by 6.98% in 2024 and 8.44% in 2025, underlining the need to think not only about cleaner vehicles entering the system, but also about how older vehicles, batteries, and materials exit it 15 years down the line.  

At the same time, it is important to keep in mind that the EV ecosystem is still in a nascent stage, and the real promise of these reforms will depend on how effectively the government is able to build the supporting infrastructure, strengthen implementation, and translate policy intent into systems that work on the ground. 

Written by Shreesha Arondekar, Senior Associate, Development and Communications, with inputs from Pavithiran R , Associate, Transport Systems and Electric Mobility and Sooraj E M Program Manager, Transport Systems and Electric Mobility 

Edited by Donita Jose, Deputy Manager, Communications 

Filed Under: Chennai, news Tagged With: auto recycling, automotive sector, battery recycling, circular economy, clean air, clean mobility, climate action, electric vehicles, end-of-life vehicles, energy transition, EV adoption, EV batteries, future of mobility, green policy, green transport, industrial policy, low emissions, recycling ecosystem, resource efficiency, sustainability, sustainable development, tyre recycling, urban mobility, vehicle scrappage

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