Prakash V Bhave

Works (6)

Updated: April 5th, 2024 11:08

2024 journal article

Evaluation of PM<sub>2.5</sub> spatio-temporal variability and hotspot formation using low-cost sensors across urban-rural landscape in lucknow, India

ATMOSPHERIC ENVIRONMENT, 319.

By: S. Madhwal*, S. Tripathi*, M. Bergin*, P. Bhave n, B. Foy*, T. Reddy*, S. Chaudhry*, V. Jain*, N. Garg*, P. Lalwani*

author keywords: Hotspots; Low-cost sensors; Meteorology; Pollution sources; Spatio-temporal variation
UN Sustainable Development Goal Categories
11. Sustainable Cities and Communities (OpenAlex)
Source: Web Of Science
Added: March 25, 2024

2022 article

Aerosol Mass Spectral Profiles from NAMaSTE Field-Sampled South Asian Combustion Sources

Goetz, J. D., Giordano, M. R., Stockwell, C. E., Bhave, P. V., Puppala, P. S., Panday, A. K., … DeCarlo, P. F. (2022, November 3). ACS EARTH AND SPACE CHEMISTRY.

By: J. Goetz*, M. Giordano*, C. Stockwell*, P. Bhave*, P. Puppala*, A. Panday*, T. Jayarathne*, E. Stone*, R. Yokelson*, P. DeCarlo*

author keywords: South Asia; aerosol emissions; aerosol mass spectrometry; brick kiln; garbage burning; biomass burning
Source: Web Of Science
Added: November 28, 2022

2020 journal article

A model-ready emission inventory for crop residue open burning in the context of Nepal

ENVIRONMENTAL POLLUTION, 266.

By: B. Das*, P. Bhave n, S. Puppala*, K. Shakya*, B. Maharjan & R. Byanju*

author keywords: Gridded emission inventory; Emission factor; Crop residue open burning; Air quality; Health impacts
TL;DR: It is indicated that substantial reduction in open field burning would dramatically improve air quality in both the Terai region and other parts of Nepal and help reduce negative health impacts associated with the open burning of residue such as premature deaths, respiratory disease, and cardiovascular disease. (via Semantic Scholar)
Source: Web Of Science
Added: October 12, 2020

2020 review

Health effects from freshly emitted versus oxidatively or photochemically aged air pollutants

[Review of ]. SCIENCE OF THE TOTAL ENVIRONMENT, 704.

By: C. Weitekamp*, T. Stevens*, M. Stewart*, P. Bhave* & M. Gilmour*

author keywords: Air pollution; Mixtures; Photochemistry; Toxicology; Health effects; Comparison
MeSH headings : Air Pollutants / analysis; Air Pollution / statistics & numerical data; Aldehydes / analysis; Environmental Exposure / statistics & numerical data; Humans; Nitrogen Dioxide / analysis; Ozone; Particulate Matter / analysis; Volatile Organic Compounds / analysis
TL;DR: A more systematic approach with a greater emphasis on higher throughput screening and computational toxicology is needed to fully answer under what conditions oxidatively- or photochemically-transformed pollutants elicit greater health effects than primary emissions. (via Semantic Scholar)
UN Sustainable Development Goal Categories
3. Good Health and Well-being (Web of Science; OpenAlex)
Source: Web Of Science
Added: January 21, 2020

2020 journal article

Traffic Condition and Emission Factor from Diesel Vehicles within the Kathmandu Valley

AEROSOL AND AIR QUALITY RESEARCH, 20(3), 395–409.

By: E. Mool*, P. Bhave*, N. Khanal*, R. Byanju*, S. Adhikari*, B. Das*, S. Praveen*

author keywords: General servicing; Plume opacity; Tailpipe exhaust; Urban transportation; Roadside surveillance
Source: Web Of Science
Added: March 23, 2020

2018 journal article

Speciated online PM1 from South Asian combustion sources - Part 1: Fuel-based emission factors and size distributions

ATMOSPHERIC CHEMISTRY AND PHYSICS, 18(19), 14653–14679.

By: J. Goetz*, M. Giordano*, C. Stockwell*, T. Christian*, R. Maharjan*, S. Adhikari*, P. Bhave*, P. Praveen* ...

UN Sustainable Development Goal Categories
Source: Web Of Science
Added: October 29, 2018

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