Air Pollution Control Project/Inspire Award Winning Project/Electrical Project For Final Year/Diploma Engeering Project For Students

Objective: To mitigate air pollution by capturing vehicle emissions and converting them into usable ink.
Technology Used: Carbon filters integrated into vehicles to capture emitted smoke particles.
Conversion Process: Smoke particles trapped by filters are processed to extract carbon-based materials suitable for ink production.
₹4,999.00 Original price was: ₹4,999.00.₹3,750.00Current price is: ₹3,750.00.
In the relentless battle against pollution, innovative solutions are indispensable. Imagine a world where every vehicle that traverses our roads not only serves its transportation purpose but also becomes a contributor to environmental sustainability. Introducing our revolutionary project: a pollution mitigation system ingeniously integrated into the very infrastructure of our roads.
In this visionary endeavor, we have conceptualized and implemented a groundbreaking solution to address the rampant issue of vehicular pollution. Our project ingeniously harnesses the emissions expelled by vehicles on roads and transforms them into a resource for positive environmental impact.
At the heart of our innovation lies the Smoke Absorber, strategically positioned along the thoroughfare. Equipped with state-of-the-art IR Sensor modules, this absorber springs into action upon detecting the approach of any vehicle. Triggered by the IR Sensor’s signal, the relay mechanism activates, powering the absorber’s motors to commence its pivotal task.
As vehicles traverse the road, their emissions are swiftly captured and drawn into the Smoke Absorber’s chamber. Here, the pollutants are contained and channeled towards a secondary absorber unit, which directs them through a series of carbon filters. These filters, meticulously designed and implemented, efficiently trap the harmful pollutants while allowing clean air to pass through.
Notably, our pollution mitigation system operates with optimal efficiency and minimal energy consumption. By employing intelligent sensor technology, it remains dormant until a vehicle’s presence activates it, ensuring that energy resources are utilized sparingly and effectively.
The captured pollutants, now securely confined within the carbon filters, undergo a transformative process. Through innovative techniques, these pollutants are converted into a valuable resource: ink. This ink, derived from the very emissions that once polluted our atmosphere, symbolizes our project’s commitment to sustainability and resourcefulness.
Furthermore, our project exemplifies a symbiotic relationship between transportation infrastructure and environmental preservation. By seamlessly integrating pollution mitigation mechanisms into the fabric of our roads, we pave the way for a cleaner, healthier future.
Join us as we embark on this journey towards a greener tomorrow, where every mile traveled contributes not only to progress but also to the restoration of our planet’s precious ecological balance. Together, let us redefine the notion of vehicular impact and pave the way for a sustainable future.
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How It Works: Traffic Light Sequence: Our setup uses BC547 transistors to control the traditional red, yellow, and green traffic lights, allowing them to operate in a seamless sequence.
Blue LED Congestion Indicator: The key feature of our system is the blue LED, which lights up to indicate traffic congestion.
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Relay Modules: Each IR sensor is connected to a relay module. When all three sensors detect vehicles simultaneously, they activate their respective relays.
Congestion Detection: Once all the relay modules are active, the blue LED lights up, indicating that the road is congested. If any one of the relay modules is inactive, it means there is space on the road, and the blue LED remains off, indicating that traffic is flowing smoothly.
Benefits: This project provides real-time traffic updates, helping drivers make informed decisions and allowing authorities to manage traffic more efficiently.
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The Cow Drone Safety system is a cutting-edge technology designed to improve the safety and well-being of cattle on farms. By utilizing drones equipped with advanced sensors and monitoring capabilities, this system aims to revolutionize the way farmers manage their livestock. In this project, we will explore the design, functionality, and potential benefits of the Cow Drone Safety system.
Renewable Energy Storage Solution: Gravity battery is a sustainable energy storage solution for, designed to store excess energy generated from renewable sources like solar or wind.
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The Problem: Electrical poles, being integral components of power distribution networks, are susceptible to various faults, including short circuits. These faults pose significant dangers to both nearby individuals and the infrastructure itself. However, identifying when a pole is experiencing a fault, especially during adverse weather conditions like rain, can be challenging.
The Solution: Our project introduces a visual indicator system designed to promptly notify observers when a fault occurs in an electrical pole. This system consists of a small strip affixed to the pole, divided into two distinct colors: green and red. During normal operating conditions, when no fault is present, the strip remains green, indicating that the pole is functioning safely. However, when a fault such as a short circuit occurs, the strip promptly changes its color from green to red, si
How it Works: The indicator strip is equipped with sensors capable of detecting abnormal electrical activity, such as an increase in current flow due to a short circuit. Upon detecting such an anomaly, the sensor triggers the color change mechanism, causing the strip to transition from green to red. This visual change serves as an immediate warning sign to anyone in the vicinity that the pole is experiencing a fault and should be avoided.
Benefits: Enhanced Safety: By providing a clear visual indication of faults, the system helps prevent accidents and injuries caused by inadvertent contact with electrified poles. Timely Response: Prompt identification of faults enables swift corrective action, minimizing downtime and potential damage to the electrical infrastructure. User-Friendly: The simplicity of the color-changing indicator strip ensures that it is easily understandable by individuals of all backgrounds and levels of expert
Welcome to our Smart Inverter Project tutorial! In this video, we’ll show you how to build a DIY inverter that provides an automatic power backup solution for your home. If you’re looking for a continuous power supply during outages, this inverter with battery storage will keep your lights on even when the main power goes out.
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Automatic Switching: Learn how the inverter automatically switches to battery power during outages and back to AC power when available.
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This floating house project is a great idea for those interested in science experiments, civil engineering projects, or innovative disaster management solutions. Whether you’re a student, a science enthusiast, or someone looking for unique school projects, this video will help you understand the concept of a floating house and its potential use in real life. Watch the full video to see how you can make this project at home and learn about flood-resistant house designs.













Rajkumar –
Vvvvvvvvvvvvvvvvv good idea
[...]Rajendra saket –
Very good
[...]