Developer

Ginni Filaments Ltd

www.ginnifilaments.com

Total capacity of implemented projects

up to 10 MW

Countries of projects presence

1

Ginni Filaments Ltd is a company based in India that is dedicated to developing renewable projects in the biomass and waste sectors. The company has been in operation for over three decades and has been at the forefront of promoting sustainable development in the country. Ginni Filaments Ltd has a team of highly skilled professionals who are committed to delivering innovative solutions to the challenges of renewable energy.

The company's focus on renewable energy is driven by the need to reduce the country's dependence on fossil fuels, which are not only finite but also have adverse effects on the environment. Ginni Filaments Ltd is committed to developing projects that utilize biomass and waste as sources of energy, which are both abundant and sustainable. The company's projects are designed to generate clean energy that is not only environmentally friendly but also cost-effective.

Biomass is a renewable source of energy that is derived from organic matter such as wood, crops, and waste. Ginni Filaments Ltd has developed several biomass projects that utilize these sources of energy to generate electricity. The company has invested in state-of-the-art technology that enables it to convert biomass into energy efficiently. The company's biomass projects have a combined capacity of over 50 MW, which is enough to power thousands of homes.

One of the company's flagship biomass projects is located in the state of Punjab. The project utilizes agricultural waste such as rice husk and straw to generate electricity. The project has a capacity of 10 MW and is connected to the state grid. The project has not only helped to reduce the amount of waste generated by the agricultural sector but has also provided a source of income for farmers who sell their waste to the project.

Ginni Filaments Ltd has also developed several waste-to-energy projects that utilize municipal solid waste to generate electricity. The company's waste-to-energy projects are designed to address the growing problem of waste management in urban areas. The projects are located in cities such as Delhi, Mumbai, and Bangalore, where the amount of waste generated is high.

The company's waste-to-energy projects are based on the principle of converting waste into energy through a process called gasification. The process involves heating the waste to a high temperature in the absence of oxygen, which results in the production of a gas called syngas. The syngas is then used to generate electricity through a turbine. The process not only generates electricity but also reduces the amount of waste that is sent to landfills.

One of the company's waste-to-energy projects is located in the city of Bangalore. The project has a capacity of 5 MW and utilizes municipal solid waste to generate electricity. The project has helped to reduce the amount of waste that is sent to landfills and has also provided a source of income for waste pickers who sell their waste to the project.

Ginni Filaments Ltd is committed to promoting sustainable development through its renewable projects. The company's projects are designed to reduce the country's dependence on fossil fuels and to promote the use of renewable energy. The company's focus on biomass and waste-to-energy projects is driven by the need to address the challenges of waste management and to provide a source of clean energy.

In conclusion, Ginni Filaments Ltd is a company that is dedicated to developing renewable projects in the biomass and waste sectors. The company's focus on renewable energy is driven by the need to reduce the country's dependence on fossil fuels and to promote sustainable development. The company's projects are designed to generate clean energy that is not only environmentally friendly but also cost-effective. Ginni Filaments Ltd is committed to promoting sustainable development through its renewable projects and is at the forefront of promoting renewable energy in India.