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A publicação pode ser exportada nos seguintes formatos: referência da APA (American Psychological Association), referência do IEEE (Institute of Electrical and Electronics Engineers), BibTeX e RIS.

Exportar Referência (APA)
Justino, E. & Belchior-Rocha, H. (2025). Empowering Human Rights Through Green Chemistry and Renewable Energy in a Climate-Challenged World. 5th Edition of International Conference on Green Chemistry and Renewable Energy.
Exportar Referência (IEEE)
E. R. Justino and H. M. Rocha,  "Empowering Human Rights Through Green Chemistry and Renewable Energy in a Climate-Challenged World", in 5th Edition of Int. Conf. on Green Chemistry and Renewable Energy, Itália, 2025
Exportar BibTeX
@misc{justino2025_1776961407367,
	author = "Justino, E. and Belchior-Rocha, H.",
	title = "Empowering Human Rights Through Green Chemistry and Renewable Energy in a Climate-Challenged World",
	year = "2025",
	howpublished = "Digital",
	url = "https://magnusconferences.com/green-chemistry/speakers/2025"
}
Exportar RIS
TY  - CPAPER
TI  - Empowering Human Rights Through Green Chemistry and Renewable Energy in a Climate-Challenged World
T2  - 5th Edition of International Conference on Green Chemistry and Renewable Energy
AU  - Justino, E.
AU  - Belchior-Rocha, H.
PY  - 2025
CY  - Itália
UR  - https://magnusconferences.com/green-chemistry/speakers/2025
AB  - The confluence of green chemistry and renewable energy presents a significant opportunity to address the dual challenges posed by climate change and human rights. As the global community grapples with the escalating impacts of climate change, the imperative for sustainable and equitable solutions becomes increasingly urgent. This abstract explores the transformative potential of green chemistry and renewable energy technologies in fostering a future where human rights are upheld, and environmental sustainability is achieved.
Green chemistry, with its emphasis on minimizing hazardous substances and promoting the utilization of renewable feedstocks, provides a framework for the development of processes and products that are environmentally benign. Green chemistry contributes to the mitigation of climate change and the preservation of natural resources by reducing the ecological footprint of chemical manufacturing. Consequently, this supports the realization of fundamental human rights, such as the right to a healthy environment, clean water, and air.
Renewable energy technologies, including solar, wind, and bioenergy, play a pivotal role in the transition away from fossil fuels and the reduction of greenhouse gas emissions. The implementation of these technologies not only addresses the underlying causes of climate change but also fosters energy security and accessibility. Consequently, the provision of affordable and clean energy through renewable technologies can alleviate energy poverty, enhance economic opportunities, and improve the quality of life for millions of individuals globally.
However, the integration of green chemistry and renewable energy into mainstream practices faces several challenges, including technological barriers, economic constraints, and the need for supportive policies and regulations. Overcoming these obstacles requires a concerted effort from governments, industry, and civil society to foster innovation, invest in research and development, and implement policies that incentivize sustainable practices.

ER  -