Sanjeevi Nagalingam

@sanjeevin.bsky.social

Postdoctoral researcher at UC Irvine. Research interests: plant volatiles, atmospheric chemistry, biosphere-atmosphere interactions

Postdoc opening: airborne NH3 measurements Join our team! The UMN atmospheric chemistry group is recruiting a postdoc to collect and analyze airborne NH3 measurements as part of NASA FarmFlux. See z.umn.edu/aw67 for details, & contact Julieta (junco004@umn.edu) and I (dbm@umn.edu) with questions!

PostdocAd-FarmFlux

Postdoctoral Associate: aircraft-based measurements of atmospheric ammonia Join our team! The atmospheric chemistry group at the University of Minnesota (UMN) seeks applications for a Postdoctoral A...

z.umn.edu

❗Job altert!❗ @voltcenter.bsky.social is #hiring a #LabManager /Lab specialist. Are you familiar with PTR-TOF-MS and GC-MS? You'll coordinate lab&field activities, QC&calibration, solve problems, assist with tech installations, and provide tech support to researchers employment.ku.dk/all-vacancie...

Laboratory manager or laboratory specialist position at the Center for Volatile Interactions, Department of Biology, University of Copenhagen

employment.ku.dk

Check out the latest research from our group at UC Irvine. We show that some plants (e.g., sedges and cypresses) can significantly increase their volatile emissions during a heatwave and adversely impact air quality. #BVOC @huiwangisop.bsky.social ps.uci.edu/news/3258

When Green Turns Gray: How Heatwaves Turn Plants into Unexpected Polluters

New UC Irvine research reveals how extreme heat events can make everyday greenery a hidden contributor to air pollution.

ps.uci.edu

Check out our collaborative perspective in @EnvSciTech on "hibernating" chemicals in #permafrost and their potential awakening under #ClimateChange. Congratulations to our postdoc Yi Jiao! pubs.acs.org/doi/10.1021/...

Awakening: Potential Release of Dormant Chemicals from Thawing Permafrost Soils under Climate Change

Permafrost is a crucial part of the Earth’s cryosphere. These millennia-old frozen soils not only are significant carbon reservoirs but also store a variety of chemicals. Accelerated permafrost thaw due to global warming leads to profound consequences such as infrastructure damage, hydrological changes, and, notably, environmental concerns from the release of various chemicals. In this perspective, we metaphorically term long-preserved substances as “dormant chemicals” that experience an “awakening” during permafrost thaw. We begin by providing a comprehensive overview and categorization of these chemicals and their potential transformations, utilizing a combination of field observations, laboratory studies, and modeling approaches to assess their environmental impacts. Following this, we put forward several perspectives on how to enhance the scientific understanding of their ensuing environmental impacts in the context of climate change. Ultimately, we advocate for broader research engagement in permafrost exploration and emphasize the need for extensive environmental chemical studies. This will significantly enhance our understanding of the consequences of permafrost thaw and its broader impact on other ecosystems under rapid climate warming.

pubs.acs.org

My review on volatile compounds in Arctic ecosystems was just published in Annual Reviews. It's a must-read if you're curious about why tundra plants smell strongly on sunny days & which gases besides CO2 and methane are released from thawing permafrost. go.shr.lc/3X1j8QX

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Dear colleagues, I would like to use my first Bluesky post to share our highlighted paper in PNAS about the discovery of a strong temperature response, with a Q10 over 7, for isoprene emissions from sedges and their role in affecting air quality during heat waves. www.pnas.org/doi/abs/10.1...

Heat waves may trigger unexpected surge in aerosol and ozone precursor emissions from sedges in urban landscapes | PNAS

Biogenic isoprene emissions from herbaceous plants are generally lower than those from trees. However, our study finds widespread isoprene emission...

pnas.org