Showing posts with label water quality. Show all posts
Showing posts with label water quality. Show all posts

Thursday, 12 July 2012

Pain in the Drain

 This article was written by Heather Hunter and published in the Summer 2012 edition of 'Between the Issues', the Ecology Action Centre's quarterly publication. Thanks for covering this important topic, Heather. The full BTI can be downloaded here.


The last time you were caught in a downpour, jumping over sidewalk rivulets and trying not to get splashed by passing cars, perhaps your thoughts didn’t automatically jump to where does all this water go? What contaminants might be in it?  But stormwater, the rainwater and melted snow that runs off roads, lawns, roofs and other hard surfaces, is an area where some real environmental action is needed. Storm water often contains motor oil, gasoline, sediment, fertilizer and other contaminants which damage natural aquatic habitats.  Without proper stormwater management practices, serious environmental and economic consequences can occur such as erosion and loss of habitat.

Cameron Deacoff, an Environmental Performance Officer with the Halifax Regional Municipality, took some time to explain why we should be giving this issue some major consideration and steps that we can take at individual and municipal levels to improve our storm water management practices.

Why you should care about storm water management
On earth there is a finite amount of water.  Fortunately, water is efficiently conserved through the hydrological cycle – including the processes of evaporation, transpiration, condensation, precipitation, surface runoff & percolation. This natural water cycle is disrupted by human intervention.  In urban landscapes in particular, impervious surfaces such as roofs, roads and parking lots render the land unable to absorb water. Instead, stormwater runs over streets and sidewalks and along the way becomes polluted with oil, garbage, fertilizers, pesticides and other contaminants.  In fact, studies have shown that storm water conveys up to 600 pollutants, many of which may be harmful to both humans and the environment.  Unlike sewage wastewater, stormwater is often not treated before it enters our waterways.

While good stormwater management has always been important, it is now being seen as more of a “hot button” issue as people are gaining a better understanding of the impact on environments, including erosion, removal or destruction of fish and wildlife habitat, and pollution causing direct damage to fish and other aquatic organisms.  We are understanding that stormwater needs to be managed - efforts should be made to reduce contaminants in street run-off, and there should be some treatment before stormwater joins up with natural waterways.  In addition, there is an understanding that we should avoid directing stormwater into wastewater systems (i.e. sewers that handle wastewater from toilets, tubs, laundry etc) because wastewater systems are not designed to treat stormwater flows. During heavy rainfall events, treatment processes can fail as throughput exceeds the capacity of treatment facilities, resulting in untreated overflows. Other risks associated with poor stormwater management include flooding, basement backups, and associated property and financial losses.

The importance of stormwater management is not going to decline any time soon.  Cameron explains that aging infrastructure is making the issue more serious today. “Much of the infrastructure in the ground was put there several decades ago,” he says, “and maintenance and replacement needs are ramping up”. He adds that “climate change is also having an impact on the issue, because our weather patterns are changing, resulting in increasing volumes of precipitation, and increasing intensity of rainfall events. Winters have been milder, resulting in less storage of precipitation as snow and ice, making for shifting hydrological patterns for which stormwater management systems were neither designed nor constructed.”

What you can do
To enhance your individual stormwater management practices, Cameron provided the following tips:
  • Retain as much natural land cover on your property as possible (i.e., do not cover the ground with asphalt, concrete, etc. unless necessary).
  • Disconnect your downspouts (eaves troughs, foundation drains, sump pumps, etc.) from your house onto the surface of your property for drainage into the ground; or at least ensure that they are not connected to the wastewater sewer system.
  • Store and manage waste materials properly so that they do not flow into storm sewers, swales, etc., during a storm. This includes covering dirt piles, removing litter and pet waste.
  • Landscape your property with plants and other materials that are native to where you live. These have fewer needs for fertilizers and pesticides, which should be used sparingly if at all.
  • Support fees for storm water management. These services benefit you and the environment.

At a municipal policy level, there are many steps that cities and towns in NS can be taking to improve stormwater management practices.  Some recommendations include:
  • Having your town or city conduct a review of water-related issues within their jurisdictions, and those shared with neighbouring municipalities.
  • Ensuring that municipal urban design & planning jointly consider water quality and water quantity along with land use and transportation.
  • Devote some attention to retrofitting issues in older urban areas, not all towards improving development practices in new "greenfield" areas.
Some municipalities such as the City of Cambridge in Massachusetts and Victoria BC have begun implementing progressive by-laws to counter stormwater pollution.  In Cambridge, significant investments in catch basin cleaning, street sweeping, and urban forestry programs have been made.   

In Victoria, bylaws have been passed for businesses as well as construction and development sites. Businesses must be fitted with a “Storm Water Rehabilitation Unit”, which is a generic term for any system designed to remove targeted contaminants. In general, any system that removes solids such as gravel, sand and silt, and floating materials like oils and trash should be adequate. At construction sites, regulations prevent construction waste water from being directly joined to drainage systems or sewer systems, hazardous wastes are tightly controlled with spill plans in place, and after construction has finished the site must be cleaned up to prevent excess gravel, dirt and pollutants from entering natural waterways.

Stormwater management practices may vary across municipalities, and depending on existing infrastructure, different levels of investment may be required. However, the first step is to raise our level of awareness about this issue.   To reduce harm to our natural waterways, and our overall ecological footprint, stormwater management must become a permanent part of our “environmental consciousness”.

Friday, 6 July 2012

Lawn care and stormwater pollution

Photo: www.inharmony.com

Pesticides and fertilizers are among the many common pollutants found in stormwater runoff that can impact water quality. When pesticides wash into local waters they contaminate the water and poison aquatic life. Fertilizers contain nutrients such as phosphorus and nitrogen. These nutrients can overload natural water bodies and result in the growth of algal blooms which use up the water's oxygen and impact fish and other aquatic organisms. 

To protect water quality of lakes, rivers and streams it is strongly recommended that property owners reduce or eliminate the use of cosmetic pesticides and fertilizers. You can still have a healthy, happy lawn without the use of chemicals. Here are some tips to protect your lawn and the surrounding environment:
  •  Vinegar is one of the most easily accessible and safest ways to kill weeds. The acetic acid in vinegar breaks down plant cells and kills the top growth.  But, because it does not kill the roots, you’ll have to reapply.   
  • Corn gluten meal, found at lawn and garden centres, acts as both a fertilizer and an all-natural herbicide that is effective at preventing the growth of dandelions and other weeds.  It can be applied to an established lawn in early spring before the weeds germinate.

  • Kitchen compost and lawn waste make excellent natural fertilizer for your lawn. Or better yet, brew your own compost tea!

  • Mow high (6-7 cm) and leave grass clippings on the lawn, which adds nutrients to the soil. The shade of tall, dense grass will overcrowd weeds and reduce growth.
  • Aeration is the best fertilizer. Use an aerator to pull plugs of grass out of your lawn to allow more air to reach the roots. This promotes a healthy lawn and results in vigorous new growth.
  •  Landscape with native species that will have less need for fertilizers and pesticides.
  • Also, remember to pick up after your pets. Pet waste carries numerous bacteria which finds its way into the storm sewer system and ultimately into streams, rivers and lakes.

Wednesday, 20 June 2012

Thermal pollution

When we think of how stormwater impacts lakes, rivers and streams, we tend to think of sediment and other contaminants that degrade water quality. We rarely think of how elevated runoff temperatures, known as thermal pollution, can greatly alter the temperature regime of natural water bodies. On hot days, impervious surfaces, such as parking lots and roofs, absorb and emit heat.  When it rains, heated runoff that flows over these surfaces can potentially increase the temperature of receiving waters. Increased temperatures can negatively impact coldwater fish populations by interfering with spawning and migration patterns, decreasing dissolved oxygen levels and even resulting in fish kills.

Stormwater Best Management Practices have an effect on runoff temperature, and the University of New Hampshire's Stormwater Centre has been researching the effectiveness of various BMPs in regulating thermal pollution from stormwater runoff.

They found that surface systems, such as retention ponds, that are exposed to direct sunlight provide little no reduction of high runoff temperatures and can potentially increase already elevated summer runoff temperatures. Various infiltration and filtration systems were best able to moderate runoff temperatures by thermal exchange with cooler subsurface materials. Systems with a large subsurface area had the greatest ability to buffer runoff temperatures. The full report titled 'Examination of Thermal Impacts from Stormwater Best Management Practices' can be found here

Brook Trout. (Photo: Source)

Tuesday, 12 June 2012

Pioneer Park Stormwater Management Project


The Town of Richmond Hill, Ontario, created a stormwater management park to collect and treat runoff as well as provide flood and erosion protection to neighbouring communities. Originally built in the 1980's, Pioneer Park treated runoff from 26 ha of residential development. Redesigned in 2009/2010, the improved stormwater management park now provides water quality and quantity services to a 740 ha catchment area.

The park consists of a wet pond to treat runoff from everyday rain events, a dry pond to collect and treat runoff from major, intense rainfall events, an oil grit separator for pre-treatment and a channel for fish passage. This project was a 2010 winner of Insurance Bureau of Canada's Watershed Awards.

gallery_image_128.jpg
The completed stormwater management park. Photo: www.rmconstruction.ca
gallery_image_130.jpg
Under construction in 2010. Photo: www.rmconstruction.ca
Check out this great video to learn more about how Pioneer Park was created and the many environmental and economic benefits it provides to the Town of Richmond Hill. This video was provided by Insurance Bureau of Canada.

Friday, 18 May 2012

12,000 rain gardens

The Puget Sound region of Washington State is tackling water quality issues with a new campaign to install 12,000 rain gardens by 2016. Once completed, these rain gardens will soak up 160 million gallons of polluted stormwater runoff each year. This innovative campaign offers financial incentives and comprehensive educational materials to neighbourhoods as a way to encourage individuals to do their own part to reduce the amount of pollutants entering the environment while solving drainage problems around their own homes. By encouraging individuals to become neighbourhood champions and recruit others, entire neighbourhoods are coming together to learn about and install rain gardens.The campaign currently has 706 raingardens installed.

Check out the website to find some great resource materials and learn more about the program.

Thursday, 2 February 2012

Continuous Deflection Separation (CDS)


This week we wanted to find out more about stormwater quality treatment technologies, so we contacted The Shaw Group. They have installed over 150 Continuous Deflection Separation (CDS) systems across the Maritimes. CDS units improve water quality of stormwater runoff by removing sediment, floatables, oil and grease. 

CDS unit (image:www.shawpipe.com)
CDS units have a screen filter that removes all floatable materials and a separate treatment chamber which captures sediment and hydrocarbons. Due to potential high volumes of trapped pollutants, maintenance on these systems is very important. At a minimum they should be maintained twice per year, which includes sucking out the floatable debris and sediment with a vacuum truck.

We went to visit Portland Hills Estates, a large development surrounding Russell Lake, where several CDS units are installed at different stormwater outfalls around the Lake. We saw a ‘56/40 unit’, the largest CDS system which can filter up to 56 cubic feet of water per second.  This system is designed to capture the 1 in 25 year storm (as opposed the 1 in 100 year storm), and as a result it functions very effectively 80% of the time. The other 20% of the time surplus flows through a by-pass valve. 

Let's life the lid and see what is inside!

Wow! Tennis balls, water bottles and several other floatables from the development and neighbouring school are trapped by the CDS. These items would otherwise eventually end up in Russell Lake.
The stormwater outfall is virtually garbage-free!
The impetus for filtering stormwater came from the Russell Lake community group who were concerned about how the Portland Hills Estates development would impact lake water quality. This concern lead to the developer, Clayton Development, including the purchase and installation of these systems into the development agreement. Using these CDS systems is now common practice for Clayton Development.