Air pollution and climate gradients in western Oregon and Washington indicated by epiphytic macrolichens.

Environ Pollut

US Department of Agriculture/Forest Service, Pacific Northwest Region Air Program, PO Box 1148, Corvallis, OR 97330, USA.

Published: January 2007

AI Article Synopsis

  • - Human activities are negatively impacting air quality and climate in the US Pacific Northwest, prompting a study using advanced modeling techniques to understand these effects on lichen communities across 1,416 forest plots.
  • - The study identified that the worst air quality scores were found in urban-industrial and agricultural areas, contributing to significant changes in lichen populations, such as the absence of sensitive species and an increase in nitrophilous lichens.
  • - Future temperature projections for 2040 suggest the creation of new climate zones that don't currently exist, and the model developed can help track ongoing changes in air quality and climate by scoring future measurements.

Article Abstract

Human activity is changing air quality and climate in the US Pacific Northwest. In a first application of non-metric multidimensional scaling to a large-scale, framework dataset, we modeled lichen community response to air quality and climate gradients at 1416 forested 0.4 ha plots. Model development balanced polluted plots across elevation, forest type and precipitation ranges to isolate pollution response. Air and climate scores were fitted for remaining plots, classed by lichen bioeffects, and mapped. Projected 2040 temperatures would create climate zones with no current analogue. Worst air scores occurred in urban-industrial and agricultural valleys and represented 24% of the landscape. They were correlated with: absence of sensitive lichens, enhancement of nitrophilous lichens, mean wet deposition of ammonium >0.06 mg l(-1), lichen nitrogen and sulfur concentrations >0.6% and 0.07%, and SO(2) levels harmful to sensitive lichens. The model can detect changes in air quality and climate by scoring re-measurements.

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Source
http://dx.doi.org/10.1016/j.envpol.2006.03.024DOI Listing

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