Pollution in Canada

{{Short description|Overview of pollution in Canada}}

{{Lead too short|date=April 2022}}

{{Use dmy dates|date=November 2021}}

File:Leduc oil.jpg

Pollution is an environmental issue in Canada. It has posed health risks to the Canadian population and is an area of concern for Canadian lawmakers. Air, water and soil pollution as well as the associated health effects are prominent points of contention in modern Canadian society.

Air pollution

{{main|Air Pollution in Canada}}

Air pollution in Canada is caused by industrial and vehicle emissions, agriculture, construction, wood burning, and energy production.{{cite web|url=http://www.world-weather-travellers-guide.com/air-pollution-in-canada.html|title=Air Pollution in Canada – Is It Possible?|publisher=World Weather Travelers Guide.com|access-date=27 November 2011}} Ongoing monitoring of Canada's Air Pollutant Emissions Inventory shows that 14 of the 17 of the air pollutants monitored are decreasing compared to historical levels. Data of 2019 shows that Canada is expected to meet or exceed its emission reduction commitments for 2020, as per the amended Gothenburg Protocol.{{cite web |title=Canada's Air Pollutant Emissions Inventory Report |url=https://publications.gc.ca/collections/collection_2021/eccc/En81-30-2019-eng.pdf |website=Government of Canada |publisher=Government of Canada |access-date=9 March 2022}}

=Oil sands pollution=

{{further|Athabasca oil sands#Environmental impacts}}

While overall pollution levels have dropped, it was found that oil sand pollution has increased by 20% since 2009.{{cite news|title=Canada leaves out rise in oil sands pollution from UN report|url=http://business.financialpost.com/2011/05/30/canada-leaves-out-rise-in-oilsands-pollution-from-un-report/|access-date=21 October 2012|newspaper=The National Post|date=30 May 2011}}{{cite journal|last=Timoney|first=Kevin|author2=Peter Lee|title=Does the Alberta Tar Sands Industry Pollute? The Scientific Evidence|journal=The Open Conservation Biology Journal|year=2009|volume=3|pages=65–81|url=https://www.researchgate.net/publication/228662176|doi=10.2174/1874839200903010065|doi-access=free}} [http://cahr.uvic.ca/nearbc/documents/2009/Alberta-Tar-Sands-Industry-Pollute.pdf mirror] Tar sands facilities were found to be among the top four highest polluters of volatile organic compounds (VOCs)- a major air contaminant. VOCs and other air contaminants are set to increase in the future as a result of continued output from the oil sands. Oil sand pollution is not only set to increase VOCs, but also, acid rain.{{cite web|title=Oilsands to exceed Alberta's new pollution limits, say documents|url=https://www.cbc.ca/news/canada/edmonton/oilsands-to-exceed-alberta-s-new-pollution-limits-say-documents-1.1254418|work=CBC|publisher=The Canadian Press|date=11 September 2012}} Acid rain is rain that has been contaminated by airborne chemicals, making it acidic.{{cite web|url=http://www.ec.gc.ca/eau-water/default.asp?lang=En&n=FDF30C16-1|title=Acid Rain|publisher=Environment Canada|access-date=27 November 2011}} Two major causes of acid rain are sulphur dioxide and nitrogen oxide.{{cite web|last=Briney|first=Amanda|title=Causes, History and Effects of Acid Rain|url=http://geography.about.com/od/globalproblemsandissues/a/acidrain.htm|publisher=About|access-date=5 November 2012|archive-date=18 November 2012|archive-url=https://web.archive.org/web/20121118170748/http://geography.about.com/od/globalproblemsandissues/a/acidrain.htm|url-status=dead}} Acid rain can cause damage to soil, water, wildlife, plants and buildings. Additionally, the airborne particles that cause acid rain can also contribute to smog. In recent years progress has been made in reducing acid rain, however, Alberta's oil sands may soon set back this progress.

=Pollution from oil wells=

In southeastern Saskatchewan, air pollution from oil production has breached provincial air quality standards hundreds of times since 2014.{{cite news |last1=Cribb |first1=Robert |last2=Sonntag |first2=Patti |last3=Wrobel |first3=Michael |last4=Elliot |first4=P.W. |title='Off the chart' air quality readings in Saskatchewan's southeast raise new concerns – but little public warning |url=https://www.thestar.com/news/investigations/2018/10/16/air-quality-readings-in-saskatchewans-oil-producing-southeast-raise-new-concerns-but-little-public-warning.html |access-date=17 October 2018 |work=The Star |date=16 October 2018}}

=Canada/United States transboundary pollution=

In recent years, the Canada-United States Air Quality Agreement, signed on 13 March 1992, has improved air quality by reducing sulfur dioxide and nitrogen oxide emissions in both countries.{{cite web|url=https://2001-2009.state.gov/g/oes/env/83011.htm|title=U.S. Canada Air Quality Agreement (AQA)|date=12 April 2007|publisher=U.S. Department of State|access-date=27 November 2011}} The agreement was meant to address the issue of transnational air pollution between the two countries. The agreement was expanded in 2000 to also include goals of reducing emissions of volatile organic compounds and levels of ground-level ozone. Ground-level ozone is caused by reactions between nitrogen oxides and VOCs in the presence of sunlight. Ozone is a contributor to smog and is known to cause numerous respiratory diseases.{{cite web|url=http://www.epa.gov/glo/basic.html|title=Ground-level Ozone Basic Information|publisher=United States Environmental Protection Agency|access-date=27 November 2011}} The 2012 Canada-United States Air Quality Agreement Progress Report found that "Canada's total emissions of sulfur dioxide have decreased by 57% from 1990 levels while the U.S. has reduced total sulfur dioxide emissions from covered sources by 67% from their 1990 emission levels. Between 2000 and 2010, Canada reduced total emissions of nitrogen oxides by 40% in the transboundary ozone region while U.S. total nitrogen oxide emissions decreased by 42% in the region".{{cite web|title=Canada-United States Air Quality Agreement Progress Report 2012|url=http://www.ec.gc.ca/Publications/default.asp?lang=En&xml=D9D6380B-4834-41C4-9D36-B6E3348F1A39|publisher=Environment Canada|access-date=8 November 2012}}

While transnational pollution between the United States and Canada has decreased many Canadians still say they contend with polluted air as a result of drifting pollution from the U.S. Approximately 70% of the air pollution in Canada comes from the United States.{{Cite journal|url=https://www.nature.com/articles/news050808-10|doi=10.1038/news050808-10|title=Acid rain still hurting Canada|year=2005|last1=Hopkin|first1=Michael|journal=Nature|url-access=subscription}} In 2006 the government of Ontario announced that "5,000 premature deaths caused by smog in the province every year can be attributed to air pollution that crosses the Canada-U.S. border."{{cite news|title=Canadian cities petition U.S. to curb air pollution|url=https://www.cbc.ca/news/canada/canadian-cities-petition-u-s-to-curb-air-pollution-1.589035|access-date=6 November 2012|newspaper=CBC|date=1 November 2006}} Additionally, the then (2006) mayor of Halifax, Peter Kelley, also proclaimed "over 50 per cent of air pollutants over New Brunswick and Nova Scotia are from the U.S. For us, we're trying to deal with what's coming our way, but also what we generate here as well." In an attempt to combat the pollution a petition was created. In 2006 the petition was filed by thirteen Canadian municipalities to the U.S. Environmental Protection Agency calling for a reduction in coal-fired plants.

=''Climate Change Accountability Act''=

The Climate Change Accountability Act called for greenhouse gas emissions to be 25% below 1990 levels by 2021, and 80% below 1990 levels by 2050. Although the bill was passed by the House of Commons, the bill was defeated by the Senate. Environment Minister Jim Prentice stated in early 2010 that the new goal for greenhouse gas emissions would be 17% below 2005 levels by 2020, the equivalent of a 3% increase from 1990.{{cite web|url=http://www.canadians.org/campaignblog/?p=2793|archive-url=https://wayback.archive-it.org/all/20100203170118/http://www.canadians.org/campaignblog/?p=2793|url-status=dead|archive-date=3 February 2010|title=Prentice pledges emissions cuts 2.5% above 1990 levels|date=1 February 2010|publisher=The Council of Canadians|access-date=11 December 2011}}

Water pollution

{{main|Water pollution (Canada)}}

While most of Canada's surface and ground water is generally clean there is some local and regional water pollution that can be caused by "industrial and municipal discharge, runoff, spills, and deposition of airborne pollutants".{{Cite web|work = Government of Canada| series = Environment and Climate Change| title = Water pollution: causes and effects| access-date =25 March 2021| date = 30 November 2010| url = https://www.canada.ca/en/environment-climate-change/services/water-overview/pollution-causes-effects.html}} Contaminated water can result in a myriad of serious consequences for human health.

=Oil sands pollution=

As previously stated, Alberta's oil sands are set to cause growing levels of acid rain consequentially leading to an increase in water contamination in the area. Acid rain will cause Canada's lakes and rivers to become further acidified. This is a problem as it decreases levels of surface water calcium. This lower concentration of calcium is already having particularly adverse effects on plant life, as can be seen with the Daphnia species-an important food source for aquatic species and marine life.{{cite journal|url=https://www.science.org/doi/full/10.1126/science.1164949|title=The Widespread Threat of Calcium Decline in Fresh Waters|date=28 November 2008|journal=Science|doi=10.1126/science.1164949 |access-date=11 December 2011|last1=Jeziorski |first1=Adam |last2=Yan |first2=Norman D. |last3=Paterson |first3=Andrew M. |last4=Desellas |first4=Anna M. |last5=Turner |first5=Michael A. |last6=Jeffries |first6=Dean S. |last7=Keller |first7=Bill |last8=Weeber |first8=Russ C. |last9=McNicol |first9=Don K. |last10=Palmer |first10=Michelle E. |last11=McIver |first11=Kyle |last12=Arseneau |first12=Kristina |last13=Ginn |first13=Brian K. |last14=Cumming |first14=Brian F. |last15=Smol |first15=John P. |volume=322 |issue=5906 |pages=1374–1377 |pmid=19039134 |s2cid=24907037 |url-access=subscription }}

A recent study at the University of Alberta found levels of metals like arsenic, lead and mercury to be considerably higher than national guidelines in water downstream from Albertan oil sites.{{cite web|title=Canada tar sands industry ignoring toxic river pollution|url=http://www.theecologist.org/News/news_round_up/581400/canada_tar_sands_industry_ignoring_toxic_river_pollution.html|publisher=The Ecologist|access-date=21 October 2012}} This pollution could potentially result in harmful health implications for fish and other wildlife. The study further discerned that their findings were "contrary to claims made by industry and government" who purported that "pollutants are from natural sources and not from the expanding production of oil from tar sands."

Other than contributing to acid rain and high levels of metals in water, sites of oil production can also cause significant damage by human error and runoff. A prominent example is the 2007 case involving the Athabasca River. Due to human error, energy magnate Suncor spilled 9.8 million liters of oil sands waste water into the river causing adverse effects for people and wildlife in the area. The Athabasca River can also be used as an example of oil sands runoff. It was found that the Athabasca's waters, which are downstream from the oil sands, had higher concentrations of pollutants as a result of runoff.{{cite web|last=Prebble|first=Peter|title=Elevated Levels of Toxins Found Downstream of Oil Sands Operations|url=http://www.environmentalsociety.ca/main/blog-posts/elevated-levels-of-toxins-found-downstream-of-oil-sands-operations/|publisher=Saskatchewan Environmental Society|access-date=8 November 2012|url-status=dead|archive-url=https://web.archive.org/web/20130113085257/http://www.environmentalsociety.ca/main/blog-posts/elevated-levels-of-toxins-found-downstream-of-oil-sands-operations/|archive-date=13 January 2013}} High concentrations of pollutants can have serious consequences for wildlife and humans. Recently, it was reported that there were significant increases in fish deformities as well as an increase in cancer rates in a Native community downstream from the Athabasca.{{cite news|last=Hume|first=Mark|title=Fearing water pollution, NWT towns call for oil sands slowdown|url=http://m.theglobeandmail.com/news/national/fearing-water-pollution-nwt-towns-call-for-oil-sands-slowdown/article1154313/?service=mobile|access-date=8 November 2012|newspaper=The Globe and Mail|date=23 August 2012}}

=Great Lakes pollution=

Pollution of the Great Lakes, the world's biggest bodies of fresh water,{{cite web|title=Ontario's Natural Resources-Water and}} continue to be a significant problem for both Canada and the United States. According to Derek Stack, executive director of Great Lakes United, "High pollution levels in the Great Lakes basin continue to take an apparent toll on the air and water quality of the ecosystem."{{cite journal|title=Canada Pollutes More Than Its Share|journal=Enviromation|year=2006|volume=37|pages=258–259}}

In 2002, it was reported that the Great Lakes basin was home to 45% of all toxic air pollution in Canada, in turn affecting the Great Lakes' water.{{cite journal|title=NEW REPORT SHOWS GREAT LAKES BASIN GENERATES MORE THAN 1 BILLION KILOGRAMS OF AIR POLLUTION|journal=Enviromation|date=June 2005|volume=33|pages=241–242}} An even more recent report suggests that the Alberta oil sands' impact could reach as far as the Great Lakes.{{cite journal|last=Mittelstaedt|first=M|title=Oil Sands Will Pollute Great Lakes, Report Warns|journal=Rachel's Democracy and Health News|year=2008|issue=980|pages=1}} The report warns that "[oil] refineries will be using the Great Lakes 'as a cheap supply' source for their copious water needs and the area’s air 'as a pollution dump'."

Sulphur dioxide emissions have also contributed to the acidity in Canada's Lakes. The thousands of lakes in Canada (including the Great Lakes) have an average pH of 5, which is harmfully acidic for aquatic life in these lakes.

In September 2012, the United States and Canada signed an amended version of the Great Lakes Water Quality Agreement.{{cite web|title=United States and Canada Sign Amended Great Lakes Water Quality Agreement|url=http://www.ec.gc.ca/default.asp?lang=En&n=714D9AAE-1&news=5A95C196-43F9-450D-97F1-7364665DDD3F|publisher=Environment Canada|access-date=16 November 2012}} The overarching purpose of the Agreement is to "restore and maintain the chemical, physical and biological integrity of the waters". Significant amendments made to the Agreement include "address[ing] aquatic invasive species, habitat degradation and the effects of climate change, and support continued work on existing threats to people's health and the environment in the Great Lakes Basin such as harmful algae, toxic chemicals, and discharges from other vessels". However, some people contend that the changes made to the Agreement while good in principle, lack the "hard number goals, and actions to reach them."{{cite news|last=Bruce|first=James P|url=https://www.thestar.com/opinion/editorialopinion/article/1257210--canada-u-s-great-lakes-water-quality-one-step-forward-two-steps-back|access-date=16 November 2012|newspaper=The Star|author2=Chris Wood|title=Canada-U.S. Great Lakes water quality: One step forward, two steps back|date=16 September 2012}}

=Arctic waters pollution=

Under the 1970 Arctic Waters Pollution Prevention Act, the Canadian government established a document to prevent pollution of Canadian Arctic waters. However, in recent years Arctic waters have become increasingly polluted. It was recently found that due to pollution some waters have levels of lead that are higher than the Canadian guidelines.{{cite journal|title=Land-Based Pollution in the Arctic Ocean: Canadian Actions in a Regional and Global Context|journal=Arctic|year=2008|volume=61|issue=5|pages=111–121|doi=10.14430/arctic106|last1=Canada|first1=Environment|last2=Canada|first2=Fisheries and Oceans|last3=Canada|first3=Indian and Northern Affairs|hdl=10535/5556|hdl-access=free}}

Coastal communities that emit waste also contribute to arctic pollution. Arctic coastal communities do not presently have the infrastructure necessary to properly deal with their waste, this could lead to greater pollution in the future as these communities continue to grow in size. Other than coastal communities, waste and litter from the rest of the world continues to be a significant issue in the Arctic, with waste levels doubling in the past ten years.{{cite news|title=Arctic Ocean Pollution Doubled in 10 Years|url=http://www.upi.com/Science_News/2012/10/23/Arctic-Ocean-pollution-doubled-in-10-years/UPI-70701351013668/|access-date=24 October 2012|newspaper=UPI|date=23 October 2012}} The most significant types of litter found are plastic items and plastic bags.

=Pollution from sewage=

The Guidelines for Canadian Drinking Water Quality are guidelines for drinking water quality standards in Canada developed by Health Canada. These guidelines set forth recommendations for the maximum concentrations of various substances in drinking water. Provinces and territories are responsible for enforcing these guidelines, as there is no national regulatory body for drinking water.{{cite web|url=http://www.safewater.org/PDFS/PurposeofDrinkingWaterQualityGuidelinesRegulations.pdf|title=What is the Purpose of Drinking Water Quality Guidelines/Regulations?|publisher=Safe Drinking Water Foundation|access-date=11 December 2011|url-status=dead|archive-url=https://web.archive.org/web/20111006230543/http://www.safewater.org/PDFS/PurposeofDrinkingWaterQualityGuidelinesRegulations.pdf|archive-date=6 October 2011}} Water pollution by sewage is one of the main culprits involved in polluting drinking water.{{cite web|last=Nakate|first=Shashank|title=Sewage Water Pollution|url=http://www.buzzle.com/articles/sewage-water-pollution.html|archive-url=https://web.archive.org/web/20090706030551/http://www.buzzle.com/articles/sewage-water-pollution.html|url-status=usurped|archive-date=6 July 2009|access-date=24 October 2012}} Advocacy group Ecojustice estimates overall raw sewage dumping in Canada to be around 200 billion litres a year.{{cite news|last=MacQueen|first=Ken|title=Many cities still dump raw sewage|url=http://www.macleans.ca/2009/04/30/many-cities-still-dump-raw-sewage/|access-date=29 October 2012|newspaper=Maclean's|date=30 April 2009}} The Canadian government recently announced waste water regulations that would allow for sewage to be dumped into Canadian waters until 2040.{{cite web|title=Harper Government Moves to Protect Canada's Water Quality|url=http://www.ec.gc.ca/default.asp?lang=En&n=56D4043B-1&news=A4B71B09-7A14-4546-BD48-5041D81B8DA8|publisher=Environment Canada|access-date=29 October 2012}} Proper measures for waste water disposal will not immediately be put in place, rather, they will be implemented gradually from 2020 to 2040. However, in the meantime, Canadian municipalities may continue to pollute their waters by dumping sewage. This can prominently be viewed with Halifax, Nova Scotia. In Halifax, human waste is dumped directly into the Halifax harbour. This dumping can mainly be attributed to a failure in their sewage treatment infrastructure. Victoria, British Columbia also follows a similar practice by getting rid of their untreated waste into the ocean. However, the government has plans to open operational treatment facilities for 2016.

Water pollution resulting from sewage can also be attributed to error in sewage facilities. A recent example can be evidenced with Ottawa. In 2004 Ottawa experienced a 190 million liter raw sewage spill into the Ottawa River.{{cite news|last=Rennie|first=Steve|title=Millions of litres of pollutants dumped in cities: analysis|url=https://www.thestar.com/news/canada/article/823043--millions-of-litres-of-pollutants-dumped-in-cities-analysis|access-date=27 October 2012|newspaper=The Star|date=13 June 2010}} Similarly, Winnipeg, released "partially treated sewage water into the Red River for seven weeks" in 2011.{{cite news|last=Owen|first=Bruce|title=City charged for putting partially treated sewage into Red River in 2011|url=http://www.winnipegfreepress.com/breakingnews/City-charged-for-putting-partially-treated-sewage-into-Red-River-in-2011--175843071.html|access-date=27 October 2012|newspaper=Winnipeg Free Press|date=25 October 2012|author2=Bartley Kives}} However, in this case, the city was actually charged for their pollution. Numerous other places like Richmond B.C and Calgary A.B, have experienced significant sewage spills in their native waters.

Soil pollution

{{see also|Soil contamination}}

While soil pollution is present in Canada, it is not yet an area of great national concern. Some of the main causes of soil pollution include chemical/oil spills into the ground, road salt, excessive pesticide use by farmers, acid rain, and polluted water.{{cite web|last=Gresham|first=Tom|title=Brief Introduction to Water and Soil Pollution|url=http://greenliving.nationalgeographic.com/brief-introduction-water-soil-pollution-2137.html|publisher=National Geographic|access-date=29 October 2012|url-status=dead|archive-url=https://web.archive.org/web/20120622120553/http://greenliving.nationalgeographic.com/brief-introduction-water-soil-pollution-2137.html|archive-date=22 June 2012}}

=Soil degradation/pollution=

Acid Deposition is a leading cause of soil degradation. The acidic particles from pollutants become part of soil, harming the pH with such low acidity and therefore harming the organisms that live within the soil.{{Cite web|url=https://www.soils.org/news/science-news/forest-soils-recovering-effects-acid-rain/|title = Forest soils recovering from effects of acid rain | Soil Science Society of America}} As Environment Canada mentions "soil degradation degrades the land and places significant stress on ecologically sensitive biota and flora".{{cite web|title=Protecting Canada's Boreal Forests and Northern Ecosystems:Developing Biological Methods to Assess and Preserve Canada's Soil Environments of the North|url=http://www.ec.gc.ca/scitech/default.asp?lang=En&n=4B40916E-1&xsl=privateArticles2,viewfull&po=3AB28EB3|publisher=Environment Canada|access-date=29 October 2012}} Soil degradation in Canada's biologically sensitive forests as a result of pollution, is one of the most significant cases of degradation in the country. One study found that 12% of Alberta's forests' soils are over their acid carrying capacity.{{cite news|last=Weber|first=Bob|title=Oilsands pollution exceeds official estimates:study|url=https://www.thestar.com/news/canada/article/735399--oilsands-pollution-exceeds-official-estimates-study|access-date=28 October 2012|newspaper=The Star|date=7 December 2009}} This rise in acidity is attributed to the continual extraction of fossil fuel from the Alberta oil sands. Oil refinery sites, like those found in Alberta, have become some of the most dominant contributors to Canadian soil pollution. A further example can be witnessed in Calgary, where a neighbourhood built on an old Imperial Oil refinery needed their soil replaced due to contamination.{{cite journal|title=Alberta Demands Imperial Oil Replace Soil|journal=Daily Commercial News and Construction Record|year=2002|volume=75|issue=147|pages=4}}

=Road salt pollution=

As a result of Canada's icy winters, salt is needed in order to deice slippery roads. The primary ingredient of road salt is sodium chloride.{{cite web|last=Swan|first=David|title=Does Road Salt Pollute The Soil|url=http://greenliving.nationalgeographic.com/road-salt-pollute-soil-20074.html|publisher=National Geographic|access-date=30 October 2012|url-status=dead|archive-url=https://web.archive.org/web/20130303013645/http://greenliving.nationalgeographic.com/road-salt-pollute-soil-20074.html|archive-date=3 March 2013}} Road salt, while helping cars and people to gain traction in the winter, can have serious consequences for soil. As National Geographic found, "Road salt can pollute soil at every stage in the deicing process." This pollution is a result of numerous factors such as runoff, application and spray from vehicles. In Canada, there has been research that shows that "salt run-off from roads can increase local chloride levels to between 100 and 4,000 times normal levels."{{cite news|title=When the Ice Clears, Where Does All the Road Salt Go?|newspaper=The Times [London]|date=13 February 2009}} Salt can have adverse effects on soil and soil composition. Significant levels of chloride (one of the main components in salt) can "alter the soil 's pH chemistry and elevate levels of heavy metal pollutants, while at the same time causing a loss of soil structure and killing off micro-organisms". These effects can have dire consequences for plants rendering them unable to grow or stunting their growth.

=PCB pollution=

Salt and oil refineries are not the only contaminants of soil. Polychlorinated biphenyls or PCBs also pollute the soil. PCBs are released into the environment through "spills, leaks from electrical and other equipment, and improper disposal and storage".{{cite web|last=Quinn|first=Pat|title=Polychlorinated Biphenyls (PCBs)|url=http://www.idph.state.il.us/cancer/factsheets/polychlorinatedbiphenyls.htm|publisher=Illinois Department of Public Health|access-date=31 October 2012}} However, recently it was found that household weeds were able to remove PCBs from contaminated soil. A study found that "the weeds stored PCBs in their shoots and could be harvested for disposal cutting the need to expensively remove and incinerate contaminated soil".{{cite news|title=Weeds Remediate Contaminated Soil|url=http://www.lexisnexis.com/lnacui2api/results/docview/docview.do?docLinkInd=true&risb=21_T15916081734&format=GNBFI&sort=BOOLEAN&startDocNo=1&resultsUrlKey=29_T15916081740&cisb=22_T15916081739&treeMax=true&treeWidth=0&selRCNodeID=141&nodeStateId=29243001en_US56E8257609904D94976F126743B5E1E9,1&docsInCategory=768&csi=235906&docNo=13|access-date=31 October 2012|date=30 June 2010}}

Plastic pollution

The Canadian federal government formed a current institution that protects marine areas; this includes the mitigation of plastic pollution. In 1997, Canada adopted legislation for oceans management and passed the Oceans Act.{{cite web |author=Government of Canada |date=2014 |title=Oceans Act: Governance for sustainable marine ecosystems |url=http://www.dfo-mpo.gc.ca/oceans/management-gestion/integratedmanagement-gestionintegree/Governance-eng.htm |website=Government of Canada |publisher=Government of Canada}} Federal governance, Regional Governance, and Aboriginal Peoples are the actors involved in the process of decision-making and implementation of the decision. The Regional Governance bodies are federal, provincial, and territorial government agencies that hold responsibilities of the marine environment. Aboriginal Peoples in Canada have treaty and non-treaty rights related to ocean activities. According to the Canadian government, they respect these rights and work with Aboriginal groups in oceans management activities.

With the Oceans Act made legal, Canada made a commitment to conserve and protect the oceans. The Oceans Act underlying principle is sustainable development, precautionary and integrated management approach to ensure that there is a comprehensive understanding in protecting marine areas. In the integrated management approach, the Oceans Act designates federal responsibility to the Minister of Fisheries and Oceans Canada for any new and emerging ocean-related activities. The Act encourages collaboration and coordination within the government that unifies interested parties. Moreover, the Oceans Act engages any Canadians who are interested in being informed of the decision-making regarding ocean environment.

In 2005, federal organizations developed the Federal Marine Protected Areas Strategy. This strategy is a collaborative approach implemented by Fisheries and Oceans Canada, Parks Canada, and Environment Canada to plan and manage federal marine protected areas. The federal marine protected areas work with Aboriginal groups, industries, academia, environmental groups, and NGOs to strengthen marine protected areas. The federal marine protected areas network consists of three core programs: Marine Protected Areas, Marine Wildlife Areas, and National Marine Conservation Areas. The MPA is a program to be noted because it is significant in protecting ecosystems from the effects of industrial activities. The MPA guiding principles are Integrated Management, ecosystem-based management approach, Adaptive Management Approach, Precautionary Principle, and Flexible Management Approach. All five guiding principles are used collectively and simultaneously to collaborate and respect legislative mandates of individual departments, to use scientific knowledge and traditional ecological knowledge (TEK) to manage human activities, to monitor and report on programs to meet conservation objectives of MPAs, to use best available information in the absence of scientific certainty, and to maintain a balance between conservation needs and sustainable development objectives.

In 2021, the government of Canada officially added plastic manufactured items to a list of toxic substances under the Canadian Environmental Protection Act, 1999.{{Cite web |last=Government of Canada |first=Public Works and Government Services Canada |date=2021-05-12 |title=Canada Gazette, Part 2, Volume 155, Number 10: Order Adding a Toxic Substance to Schedule 1 to the Canadian Environmental Protection Act, 1999 |url=https://gazette.gc.ca/rp-pr/p2/2021/2021-05-12/html/sor-dors86-eng.html |access-date=2021-05-19 |website=gazette.gc.ca}} Later in 2021, the government moved forward on regulations to ban single-use plastics, namely checkout bags, cutlery, foodservice ware made from or containing problematic plastics, ring carrier, stir sticks and most straws.{{cite web |date=December 21, 2021 |title=Government of Canada moving forward with banning harmful single-use plastics |url=https://www.canada.ca/en/environment-climate-change/news/2021/12/government-of-canada-moving-forward-with-banning-harmful-single-use-plastics0.html |publisher=canada.ca}}

Health effects of pollution

Pollution is associated with numerous negative health effects in humans.

=Air pollution=

Air pollution has been shown to negatively effect humans' cardiovascular and respiratory systems.{{cite web|title=Health Effects of Air Pollution|url=http://www.hc-sc.gc.ca/ewh-semt/air/out-ext/effe/health_effects-effets_sante-eng.php|publisher=Health Canada|access-date=14 November 2012|url-status=dead|archive-url=https://web.archive.org/web/20121227094216/http://www.hc-sc.gc.ca/ewh-semt/air/out-ext/effe/health_effects-effets_sante-eng.php|archive-date=27 December 2012}} Lung tissue can be damaged with direct exposure to air pollutants such as ozone, potentially causing lung inflammation and impairment of lung function. As Environment Canada mentions "impacts from exposure can range from "minor breathing problems to premature death".{{cite web|title=Impacts of Air Pollution|url=http://www.ec.gc.ca/indicateurs-indicators/default.asp?lang=en&n=D189C09D-1|publisher=Environment Canada|access-date=14 November 2012}} Some of the main respiratory diseases caused by air pollution include asthma, chronic obstructive pulmonary disease, and lung cancer.{{cite web|last=Hughes|first=Martin|title=Diseases Caused by Air Pollution|url=http://www.livestrong.com/article/176670-diseases-caused-by-air-pollution/|publisher=Livestrong|access-date=15 November 2012}} Specific cardiovascular disease and problems caused by air pollution include heart attack, hypertension, inflammation around the heart, stroke and arrhythmias.{{cite web|title=Air Pollution and Heart Disease, Stroke|url=http://www.heart.org/HEARTORG/Conditions/More/MyHeartandStrokeNews/Air-Pollution-and-Heart-Disease-Stroke_UCM_442923_Article.jsp|publisher=American Heart Association|access-date=15 November 2012}}

Health Canada estimates that 5,900 Canadians die every year from air pollution.{{cite web|url=https://www.cbc.ca/news/science/air-pollution-kills-thousands-each-year-health-canada-1.548582|title=Air pollution kills thousands each year: Health Canada|date=2 May 2005|publisher=CBC News|access-date=11 December 2011}} A 2008 study by the Canadian Medical Association estimated that almost 3,000 Canadians die annually from short-term exposure to air pollution, while another 18,000 die annually due to long-term effects of polluted air. The study estimated the economic impact of air pollution to be at $8 billion, including lost productivity, health care costs, deaths and a decrease in quality of life.{{cite web|url=http://www.cma.ca/multimedia/CMA/Content_Images/Inside_cma/Office_Public_Health/ICAP/CMA_ICAP_sum_e.pdf|title=No Breathing Room: National Illness Costs of Air Pollution|date=August 2008|publisher=Canadian Medical Association|access-date=11 December 2011|archive-url=https://web.archive.org/web/20160320195941/https://www.cma.ca/multimedia/cma/content_images/inside_cma/office_public_health/icap/cma_icap_sum_e.pdf|archive-date=20 March 2016|url-status=dead}}

= Soil pollution =

Soil pollution also causes numerous diseases. Some of the most prominent are cancer, kidney disease, liver disease, dysentery, skin infections, and stomach infections.{{cite web|last=Bichu|first=Divya|title=Diseases Caused by Soil Pollution|url=http://www.buzzle.com/articles/diseases-caused-by-soil-pollution.html|archive-url=https://web.archive.org/web/20111005220732/http://www.buzzle.com/articles/diseases-caused-by-soil-pollution.html|url-status=usurped|archive-date=5 October 2011|date=10 April 2011}}

See also

References

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