Showing posts with label tree. Show all posts
Showing posts with label tree. Show all posts

Thursday, January 19, 2017

Do Trees in Cities Help or Harm Our Health?

Air pollution: outdoor air quality and health (National Institute for Health and Care Excellence, Dec.1, 2016)

Also discussed here: Trees could make urban pollution even worse (quartz, Dec.6, 2016)

And here: Neighborhood greenspace and health in a large urban center (Nature, Scientific Reports, Jul. 9, 2015)

Today we review a guide about urban air pollution that looks into the role that street trees play with respect to reducing air pollution. The overall conclusion was that trees are unlikely to reduce air pollution and could add to it, especially if the trees reduce ventilation of air currents. This is true also of the more recent use of green walls. It is also acknowledged [in a Toronto study]that urban trees can improve health – as much as a $10,000 raise or feeling 7 years younger. Pine trees are singled out as a particular contributer to urban pollution through their emissions of volatile organic compounds (VOC) which combine with the NO2 in car emissions to produce low level ozone, one of a handful of pollutants harmful to health.

 tree-area-toronto  

Key Quotes:

Street trees were unlikely to reduce air pollution in most street designs and could worsen it in some cases,” “Leaves and branches slow air currents, causing pollutants to settle out.”

Urban trees and plants can improve mental and physical health - an average of 10 extra trees per block made people living there feel like they would be much healthier—as much as a $10,000 raise or being seven years younger would”

“not all trees are equal. The pungency of a cedar, eucalyptus, or pine woodland, to name a few examples, comes from a blend of volatile organic compounds (VOC) in these species. When these VOCs interact with the nitrogen oxide that is in car emissions, in the presence of sunlight, they produce ozone—at ground level, the pollutant can be harmful enough to cause heart disease.”

“having 10 more trees in a city block, on average, improves health perception in ways comparable to an increase in annual personal income of $10,000 and moving to a neighborhood with $10,000 higher median income or being 7 years younger. … having 11 more trees in a city block, on average, decreases cardio-metabolic conditions in ways comparable to an increase in annual personal income of $20,000 and moving to a neighborhood with $20,000 higher median income or being 1.4 years younger.”

“In 2010 the total mortality burden of human-produced PM2.5 in London was 9 52,630 life-years lost and of long-term exposure to NO2 was up to 88,113 life-years 10 lost …The health impact of PM2.5 pollution from human activities in the UK is estimated to 15 cost between £8.5 billion and £18.6 billion a year “

“Where solid barriers are planned alongside major roads (sometimes 10 used to protect local people from noise) consider whether action is 11 needed to mitigate any adverse effects on air quality…Take into account the effect that trees can have on street ventilation, based on where they are planted and how they are maintained, to avoid creating areas of poorer air quality.”

 “Evidence showed that street trees and green walls or roofs have a mixed effect on 20 street air quality – in some cases they restrict street ventilation causing poorer air 21 quality, in others they improve it “

“Leaves and branches slow air currents, causing pollutants to settle out. They may also act as 'sinks' for particulates and chemicals that may have direct or indirect effects on air quality (in particular, volatile organic compounds [VOCs]). The extent to which this is the case depends on factors such as species, time of year and growing conditions.”

 “air quality might deteriorate at street level near vehicle sources if ventilation were restricted, while improving near first floor windows above the canopy. Although it is important to avoid the possible negative”

Tuesday, April 26, 2016

The Environmental and Health Benefits of Trees in Cities– a Literature Review

Lost Ecosystem Services and Vanishing Ecologic...
Lost Ecosystem Services and Vanishing Ecological Roles. Forest ecosystems in the tropics and subtropics are being quickly replaced by industrial crops and plantations. This provides large amounts of goods for national and international markets, but results in the loss of crucial ecosystem services mediated by ecological processes. In Argentina and Bolivia, the Chaco thorn forest (A) is being felled at a rate considered among the highest in the world (B), to give way to soybean cultivation (C). (Photo credit: Wikipedia)
Health and climate related ecosystem services provided by street trees in the urban environment (17 page pdf, Environmental Health, Mar. 8, 2016)

Today we review an extensive literature review (with 156 references) of research concerned with the role of trees in an urban ecosystem services (ESS) framework and how that affects the environment, health and climate change mitigation for cities. Past studies have focused not only on the health benefits of trees, but also the conditions where trees can lead to lower air quality.

The paper describes the physical role of trees in allowing for more moisture to be released from the soil to the atmosphere as well as the effectiveness of some trees (with large leaves) to capture air pollutants while at the same time reducing the ventilation and dilution of pollution along tree-lined streets. Pollen from trees causes asthma and allergies in as much as half the population of some cities. The authors suggest that a systems dynamics approach might help to consider the many dynamic processes involved in order to improve urban planning into the use of trees.

 Key Quotes:

“current scientific understanding of the impact of street trees on human health and the urban environment has been limited by predominantly regional-scale reductionist approaches which consider vegetation generally and/or single out individual services or impacts without considering the wider synergistic impacts of street trees on urban ecosystems. “

Key Points:
  1. “the diversity in ESS for urban street trees, as well as
  2. the importance of tree species, density and location in service provision for any given location, and
  3. the implications and potential health and societal effects of optimising for a singular service
“in Bangalore, India ..afternoon ambient air temperatures were 5.6 °C lower in roads lined with trees, and road surface temperatures 27.5 °C lower than those measured in comparable tree-less streets “

“The potential impact of street trees on air quality remains one of the most poorly understood aspects of the studied ecosystem services and benefits …Most studies at regional or city scales show a modest modelled reduction in pollution concentration of less than 5 % resulting from urban vegetation”

Trees absorb CO2 and gaseous pollutants such as O3, NO2, SO2 primarily by uptake via leaf stomata or surface, and accumulate airborne particulates (by interception, impaction or sedimentation) more effectively than other urban surfaces“

“Trees emit biogenic volatile organic compounds (bVOCs) as a reaction to stress in their environment, such as high light intensities and/or temperatures or low water availability .. Isoprene is the most abundantly emitted bVOC [92]. In the presence of NOx and sunlight, isoprene contributes to ozone formation“

“Exposure to allergenic pollen from trees is associated with a range of health effects, including allergic rhinitis, exacerbation of asthma in susceptible individuals, and eczema.. Estimates of the levels of tree pollen allergies in the population range from around 5 % to over 50 % in Europe”

“systems dynamics approaches could also be used to capture the complexity and dynamic interactions occurring within urban systems, and has been used previously to integrate information from different disciplines and sectors whilst maintaining a health focus.”

Wednesday, July 24, 2013

How Many Particulates Can Trees Remove from the Air?

Modeled PM2.5 removal by trees in ten U.S. cities and associated health effects(Abstract, David J. Nowaka, Satoshi Hirabayashib, Allison Bodineb, Robert Hoehna, Environmental Pollution, July 2013)

Also discussed here: Urban Trees Remove Fine Particulate Air Pollution, Save Lives(Science Daily, Jun. 19, 2013)

Today we review research into the amount of fine particulate matter [PM 2.5] removed from the air by urban trees and what this means in terms of economic benefit from human health cost savings. Results from 10 US cities indicate that trees improved air quality by 0.05 to0.24% which appears small but when applied to a city as large as New York translates into 7.6 premature deaths avoided or delayed and over $60 M saved.

Centre ville d'Atlanta, Géorgie, Etats-Unis
Centre ville d'Atlanta, Géorgie, Etats-Unis (Photo credit: Wikipedia)

Key Quotes:
"This research clearly illustrates that America's urban forests are critical capital investments helping produce clear air and water; reduce energy costs; and, making cities more livable. Simply put, our urban forests improve people's lives."

“estimated how much fine particulate matter is removed by trees in 10 cities, their impact on PM2.5 concentrations and associated values and impacts on human health”

"Trees can make cities healthier…While we need more research to generate better estimates, this study suggests that trees are an effective tool in reducing air pollution and creating healthier urban environments."

“Mortality reductions were typically around 1 person yr−1 per city, but were as high as 7.6 people yr−1 in New York City. Average annual percent air quality improvement ranged between 0.05% in San Francisco and 0.24% in Atlanta”

“The total amount of PM2.5 removed annually by trees varied from 4.7 metric tons in Syracuse to 64.5 metric tons in Atlanta, with annual values varying from $1.1 million in Syracuse to $60.1 million in New York City. Most of these values were dominated by the effects of reducing human mortality; the average value per reduced death was $7.8 million”

Reduction in human mortality ranged from one person per 365,000 people in Atlanta to one person per 1.35 million people in San Francisco.”
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Monday, November 12, 2012

How Do Trees in Cities Affect Mortality?

Urban nature: Human psychological and community health(22 page pdf, Matsuoka, R. & Sullivan, W.C., In Douglas, I. & Goode, D., Houck, M., & Wang, R. (Eds), The Routledge handbook of urban ecology, 2011)

Also discussed here: Trees Are a Matter of Life and Death(The Dirt, American Society of Landscape Architects (ASLA), Nov. 1, 2012)

Some people link the presence of trees in cities with improved health because they assume a positive link with reducing high air pollution levels- which others find questionable, citing research that coniferous trees near traffic emit hazardous pollutants. Today we review an article that points to more substantive evidence that urban forests and parks reduce mortality especially among lower income groups because of beneficial
 social impacts lowering stress and reducing crime.

 
   

Key Quotes:

 “Everyday exposure to trees enhances your health now and promotes health across your entire lifespan,”

 “Social ties are what glues us together. And people with stronger social ties have better health outcomes.”

 “ social support buffers stress hormones, reduces blood pressure, increases chances of adopting healthy patterns, all of which lead to reduced mortality and morbidity rates and healthier lives”

 “Smaller spaces with trees were a big predictor of people hanging out.”

“[in Chicago] there was 52 percent less crime in high-tree density areas”

“For medium income group, the presence of trees means they “are less likely to die.” For low-income residents, green spaces means they are “much less likely to die.”

 “While big central parks matter, they are not enough. Too many people live in barren landscapes. A 30-40 percent tree cover adds a lot to health. We need trees at every doorstep.”
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Wednesday, October 31, 2012

Using Lichens to Find Air Pollution Hot Spots

Lichen Training Manual 2010/2011(Good Neighbour Campaign/GNC, Environment Hamilton, 2010)

Also discussed here: Tree Lichen Monitoring - The Quick How-To Video (6 min You-Tube video, GNC)




And here: Arboreal Lichens:Preliminary Indicators of Hamilton Air Quality(48 page pdf, Dan McCarthy and Hague Vaughan, Upwind / Downwind Air Quality Conference, Hamilton, Ontario, 2004)

And here: Students Take Lead in City-Wide Pollution Study (MediaDesk, Hamilton-Wentworth District School Board, Jun. 6, 2011)

And here: Anthropogenic Environmental Aerosols:Measurements and Biological Implications(350 page pdf, Pierre Madl, PhD dissertation, University of Salzburg, Oct. 2009)

And here: Highway exhaust aerosols and their effects on alpine lichen populations(1 page pdf, Abstract, E. Heinzelmann, P. Madl and W. Hofmann, Anthropogenic Environmental Aerosols: Measurement and Biological Implications, 2009)

And here: Ecological Effects of Roads - A review(40 page pdf, Andreas Seiler, Introductory Research Essay No 9, Department of Conservation Biology, SLU, Uppsala, 2001)

 And here: Air Quality and Lichens - A Literature Review(Jenifer Hutchinson, Debbie Maynard, and Linda Geiser USDA Forest Service, Pacific Northwest Region Air Resource Management Program, Dec. 16,1996)

Today we review a project to analyse the air quality in a neighbourhood of Hamilton, Ontario, using a technique developed by George Sorger from McMaster University to link growth in two forms of lichen on maple or ash trees to air pollution levels. The preliminary results show the potential for identifying concentrations of air pollutants in an urban environment year by year without the need for expensive equipment or highly skilled technicians which are usually required.  

Key Quotes:

 “Our goal is to cover a great deal of the city in order to gain a greater understanding of the city’s pollution hotspots”

“Students used the methods of McMaster University biology professor emeritus Dr. George Sorger. Testing Ash and Maple trees, Sorger noted a link between lichen growth – specifically of greyish Physcia Millegrana and yellowish Candelaira Colcolor – and Sulphur Dioxide (SO2) and Nitrogen Dioxide (NO2) levels.”

“Areas with high SO2 and NO2 had low to non-existent levels of lichen; areas with low levels of SO2 and NO2 had high levels of lichen”

“Lichens are exposed to air pollutants at all times and, without any leafy bits that fall off, they cannot avoid the accumulation of pollutants. Without roots, lichens depend heavily on the air. This makes some lichen species great biomonitors of air quality and – because they grow slowly – monitoring is only required once a year.”

 “The process:
  1. Indicate the street boundaries in which you will be canvassing.
  2. Start to identify Maple and Ash Trees (see pg. 7-8) . Record their location.
  3. Hold the wired quadrants up against the middle of the tree so that it is at eye level . The bottom being approximately1m above ground.
  4. Beginning with one of the quadrants, check to see if the Millegrana species present. Use the scale of 0-3 to indicate the level that you see. Repeat for the rest of the 3 quadrants.
  5. Repeat the same process for all cardinal directions/sides of the tree (North, East, South and West).
  6. You should now have numbers for 16 quadrants (4 per side). Calculate the average and find the standard deviation. Repeat this process on the same tree for the Candelaria species.
  7. Once done canvassing your area, take the average of all the trees and use that to find the standard error. Repeatfor the Candelaria species.
  8. Send your information to the GNC Coordinator”
“results found lichen growth to be sparser in the industrial north end of the city, and more robust as monitors approached the Niagara Escarpment…The two different lichen species differed in their growth levels at the same sites; there were only modest levels of lichen in leafy Dundas, which may be due to a small sample size; and the Keith neighbourhood has little to no lichen, indicating a contaminated air shed”
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Monday, September 3, 2012

How Much Do Pine Trees Pollute?

Aging of biogenic secondary organic aerosol via gas-phase OH radical reactions(Abstract, Neil M. Donahuea, Kaytlin M. Henry, Thomas F. Mentel, Astrid Kiendler-Scharr, Christian Spindler, Birger Bohn, Theo Brauers, Hans P. Dorn, Hendrik Fuchs, Ralf Tillmann, Andreas Wahner, Harald Saathoff, Karl-Heinz Naumann, Ottmar Möhler, Thomas Leisner, Lars Müller, Marc-Christopher Reinnig, Thorsten Hoffmann, Kent Salo, Mattias Hallquist, Mia Frosch, Merete Bilde, Torsten Tritscher, Peter Barmet, Arnaud P. Praplan, Peter F. DeCarlo, Josef Dommen, Andre S.H. Prévôt, and Urs Baltensperger, Jul. 4, 2012)

 Also discussed here: Pine Trees One of Biggest Contributors to Air Pollution: Pine Gases Chemically Transformed by Free Radicals (ScienceDaily, Aug. 9, 2012)

Today we review research that established a link between the aerosols or tiny particles that are emitted by a number of sources both natural and man-made and the chemical process with the pollutant, alpha-pinene, released by pine trees. The result is three times more particulates than what was originally emitted – and three times the health impact on humans.

   

Key Quotes:

  “aerosols.. tiny liquid or solid particles come from hundreds of sources including trees, volcanoes, cars, trucks and wood fires”

 "There's a very, very strong body of data that establishes that fine particles in the air we breathe have a significant bad effect on people. What is less well understood is how the size and chemical composition of those particles influences that effect,"

 “OH [hydroxyl] ages the particles, altering their properties and concentrations and producing three times more particulate matter than what was originally released into the atmosphere

 "The trees emit the stuff, but since human activity changes the chemistry taking place in the atmosphere, those changes can affect the amount and properties of the natural aerosols”

“OH ages the particles, altering their properties and concentrations and producing three times more particulate matter than what was originally released into the atmosphere”
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Wednesday, August 8, 2012

Can Plants Reduce Urban Pollution?

Effectiveness of Green Infrastructure for Improvement of Air Quality in Urban Street Canyons (Abstract, Thomas A. M. Pugh, A. Robert MacKenzie, J. Duncan Whyatt, and C. Nicholas Hewitt, Environ. Sci. Technol., Jun. 4, 2012)

Also discussed here: Green Plants Reduce City Street Pollution Up to Eight Times More Than Previously Believed (ScienceDaily, Jul. 18, 2012)

The question whether trees reduce or add to urban pollution is frequently debated with the answer seeming to be that in a highly polluted atmosphere, some coniferous trees add aromatic gases to the mix. Today we review an interesting article that suggests that foliage (not trees) will absorb pollution through their plant surface which is more effective than the hard surfaces that make up street canyons – with reductions of 40-60% in terms of the concentrations of NO2 and PM.


 

Key Quotes:

“Street-level concentrations of nitrogen dioxide (NO2) and particulate matter (PM) exceed public health standards in many cities, causing increased mortality and morbidity”

 “Both NO2 and PM are deposited onto surfaces at rates that vary according to the nature of the surface; deposition rates to vegetation are much higher than those to hard, built surfaces”

“increasing deposition by the planting of vegetation in street canyons can reduce street-level concentrations in those canyons by as much as 40% for NO2 and 60% for PM”

“The authors even suggest building plant-covered "green billboards" in these urban canyons to increase the amount of foliage”

 “Trees were also shown to be effective, but only if care is taken to avoid trapping pollutants beneath their crowns”
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