Research Grants 23/05907-6 - Poluição atmosférica, Automóveis - BV FAPESP
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Multi-user equipment granted by process 2017/26931-1: portable gas analyzer by laser measurement with FTIR technology, with heated sampling line

Grant number: 23/05907-6
Support Opportunities:Multi-user Equipment Program
Start date: August 01, 2023
End date: July 31, 2030
Field of knowledge:Engineering - Transportation Engineering
Principal Investigator:Flavio Guilherme Vaz de Almeida Filho
Grantee:Flavio Guilherme Vaz de Almeida Filho
Host Institution: Escola Politécnica (EP). Universidade de São Paulo (USP). São Paulo , SP, Brazil
Associated research grant:17/26931-1 - Developing a portable emissions measurement system for flex vehicles, AP.PITE

Abstract

Due to the importance of vehicles as source of atmospheric pollutants, the United States and Europe, and later also Brazil, have adopted programs of control of vehicular pollution emission based on vehicle type-approval through laboratory tests which, however, are considered to be few representative in comparison to the "real world" and subject to frauds. In order to overcome this difficult, Europe has since 2017 adopted an additional test, where the vehicle runs streets and roads attached to a Portable Emission Measurement System (PEMS) and must comply with the legal emissions limits. This methodology of emissions testing is in the way to be introduced in several countries, including Brazil. But there is an important constraint that PEMS is a 100% imported and very expensive technology; the user only has access to a closed package ("turn-key") which measure only CO2, CO, NOx and HC; besides it is a large and heavy system which makes it difficult to be coupled to compact vehicles. The objective of this multidisciplinary, interdepartmental project is to develop, with CETESB support, a smaller and less expensive PEMS than the imported similar one, able to measure pollutants from light vehicles and motorcycles moved by petrol, ethanol or flexfuel. The gases measurements will be conducted by a laser analyzer working together with exhaust flow measurement, GNSS positioning and data acquisition from the engine electronic central unit, resulting in relevant data about vehicle emission produced in real world conditions. This system will be a useful tool to USP, CETESB, manufacturers and academic researchers for emissions regulations and atmospheric pollution studies. (AU)

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