Team:York/Cake

From 2014.igem.org

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<h1>How would our project be used in practical applications?</h1>
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<h2>Sustainability</h2>  
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<p>In the future, we could imagine our bacteria inside of a semipermeable membrane in a river or water treatment plant with contaminated water flowing through. The high metal concentration would activate the system and our bacteria would start harvesting the pollutants. It could be coupled to a biosensor and then, when a Cadmium concentration threshold is reached the bacteria could change colour, from white to red. This colour change would indicate that it is time for “harvesting”. </p>
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<p>When this colour change is elicited, the cells could either be lysed by a chemical process or even induced to do it by a kill switch and the metal could then recovered and sold for commercial gain making decontaminating water profitable!</p><br><br>
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<p>Define: <b>Sustainable</b><br>
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<img class="img-responsive img-max-650" src="https://static.igem.org/mediawiki/2014/9/95/York_Spmembrane.png"><h4 class="center">A diagram of our proposed semi-permeable membrane apparatus</h4><br>
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<p>In the future, we wish to investigate chelating other metals that are also found in waste water that have greater monetary value. Vanadium for example, could be chelated in a similar process to our system outlined above and sold on.</p>
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ADJECTIVE: Able to be maintained at a certain rate or level<br></p>
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<p>The nature of democracy is one of fast but short-term improvement as policy makers have only a matter of a few years in which to prove themselves. This is reflective of human nature: we crave instant gratification at the cost of long-term improvement. However, today more than ever before it is clear how powerfully our actions impact our future. We need to build a more sustainable society.
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Our project aims to improve environmental sustainability of important industry by making the processes they use less environmentally damaging in the long run.
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However, part of what makes planning every project so challenging is that to be truly sustainable, it must be sustainable in every aspect. This is why our human practices are so important.</p>
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<h2>Cadmium in Global Waters</h2>
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<p>Cadmium in natural waters exists as either free/aquated cation (Cd<sup>2+</sup>/CdOH<sup>+</sup>)<sup>[1]</sup>  this is due to the competition of organic binding resulting in aluminium causing the almost complete displacement of cadmium.</p>
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<p>A large amount of cadmium pollution in water ways is due to either industrial waste or fertilizers produced from phosphate ores. In unpolluted natural waters the cadmium concentrations are usually below 1μg/l<sup>[2]</sup> however the maximum level ever recorded was in Rio Rimao in Peru at 100μg/l<sup>[3]</sup>.  The WHO have set the guideline level of cadmium in global drinking waters as 3μg/l<sup>[4]</sup> In 2007 UNEP stated these would be the parameters set for water quality as a global index<sup>[5]</sup>.
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<h3>References</h3><ol>
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<li>Posselt, H. S., Weber, W. J., (1974) Environmentla chemistry of Cd in aqueous systems. In. Rubin, A. J. (ed) Aqueous environmental chemistry of metals. Ann Arbor Science Publ. Inc., Ann Arbor, Michigan, p 255-289</li>
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<li>Friberg L, Nordberg GF, Vouk VB, eds. (1986) Handbook of the toxicology of metals.Vol. II. Amsterdam, Elsevier, pp. 130–184.</li>  
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<li>WHO/UNEP (1989) GEMS — Global fresh water quality Published on behalf of the World Health Organization/United Nations Environment Programme. Oxford, Blackwell Reference. </li>
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<li>WHO. (2004.) Guidelines for Drinking-water Quality. Third Edition Volume1:Recommendations. World Health Organisation, Geneva</li>
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<li>United nations environment programme global environment monitoring system (GEMS)/ water programme (2007) Global drinking water quality index development and sensitivity analysis report. Burlington p 7.</li></ol></p>
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<br>
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<h2>Cadmium Contamination Effects on Humans</h2>
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<p>The main issues with cadmium getting into waterways and food supplies are the affects that it will have on the people who ingest it. The effects of cadmium poisoning can be devastating as it is a known carcinogen and can consequently lead to death if ingested in large quantities. The other l effects of cadmium ingestion include:</p>
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  <li><p>Gastrointestinal effects such as nausea, vomiting, salivation, abdominal pain, cramps and diarrhoea<sup>[1]</sup></p></li>
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  <li><p>Anaemia due to the cadmium resulting in a lower level of iron intake in the gastrointestinal region, this is especially problematic if the affected individual already has low levels of iron intake in their diet<sup>[2]</sup></p></li>
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  <li><p>Kidney damage is a common symptom of cadmium toxicity which further leads to a decrease in production of vitamin D<sup>[3]</sup></p></li>
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  <li><p>Osteomalacis and osteoporosis both of which lead sufferers to have increased chance of bone fractures and lower bone density <sup>[4]</sup>. This may be as a result of the kidney damage giving way to decreased levels of vitamin D. <sup>[5]</sup></p></li>
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</ul>
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<br>
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<h3>References</h3>
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<ol><p>
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  <li>Buckler, H. M., Smith, W. D., Rees, W. D. (1986) Self poisoning with oral cadmium chloride. Br Med J. 292(6535), 1559–1560.</li>
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  <li>Kagamimiori, S., Watanabe, M., Nakagawa, H., Okumura, Y. (1986) Case- control study on cardiovascular function in females with a history of heavy exposure to cadmium. Bull Environ Contam Toxicol. 36 (4), 484-490.</li>
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  <li>Arisawa, K., Nakano, A., Saito, H. et al. (2001) Mortality and cancer incidence among a population previously exposed to environmental cadmium. Int Arch Occup Environ Health. 74, 255-262.</li>
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  <li>Shigematsu, I. (1984) The epidemiological approach to cadmium pollution in Japan. Ann Acad Med Singapore. 13, 231-236.</li>
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  <li>Kido, T., Nogawa, K., Yamada, Y., et al (1989) Osteopenia in inhabitants with renal dysfunction induced by exposure to environmental cadmium. Int Arch Occup Environ Health. 61, 271-276.</li>
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</p></ol>
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Revision as of 12:47, 16 October 2014

Team York 2014


Sustainability

Define: Sustainable
Line breaks: sus¦tain|able
ADJECTIVE: Able to be maintained at a certain rate or level

The nature of democracy is one of fast but short-term improvement as policy makers have only a matter of a few years in which to prove themselves. This is reflective of human nature: we crave instant gratification at the cost of long-term improvement. However, today more than ever before it is clear how powerfully our actions impact our future. We need to build a more sustainable society. Our project aims to improve environmental sustainability of important industry by making the processes they use less environmentally damaging in the long run. However, part of what makes planning every project so challenging is that to be truly sustainable, it must be sustainable in every aspect. This is why our human practices are so important.



Cadmium in Global Waters

Cadmium in natural waters exists as either free/aquated cation (Cd2+/CdOH+)[1] this is due to the competition of organic binding resulting in aluminium causing the almost complete displacement of cadmium.

A large amount of cadmium pollution in water ways is due to either industrial waste or fertilizers produced from phosphate ores. In unpolluted natural waters the cadmium concentrations are usually below 1μg/l[2] however the maximum level ever recorded was in Rio Rimao in Peru at 100μg/l[3]. The WHO have set the guideline level of cadmium in global drinking waters as 3μg/l[4] In 2007 UNEP stated these would be the parameters set for water quality as a global index[5].

References

  1. Posselt, H. S., Weber, W. J., (1974) Environmentla chemistry of Cd in aqueous systems. In. Rubin, A. J. (ed) Aqueous environmental chemistry of metals. Ann Arbor Science Publ. Inc., Ann Arbor, Michigan, p 255-289
  2. Friberg L, Nordberg GF, Vouk VB, eds. (1986) Handbook of the toxicology of metals.Vol. II. Amsterdam, Elsevier, pp. 130–184.
  3. WHO/UNEP (1989) GEMS — Global fresh water quality Published on behalf of the World Health Organization/United Nations Environment Programme. Oxford, Blackwell Reference.
  4. WHO. (2004.) Guidelines for Drinking-water Quality. Third Edition Volume1:Recommendations. World Health Organisation, Geneva
  5. United nations environment programme global environment monitoring system (GEMS)/ water programme (2007) Global drinking water quality index development and sensitivity analysis report. Burlington p 7.


Cadmium Contamination Effects on Humans

The main issues with cadmium getting into waterways and food supplies are the affects that it will have on the people who ingest it. The effects of cadmium poisoning can be devastating as it is a known carcinogen and can consequently lead to death if ingested in large quantities. The other l effects of cadmium ingestion include:

  • Gastrointestinal effects such as nausea, vomiting, salivation, abdominal pain, cramps and diarrhoea[1]

  • Anaemia due to the cadmium resulting in a lower level of iron intake in the gastrointestinal region, this is especially problematic if the affected individual already has low levels of iron intake in their diet[2]

  • Kidney damage is a common symptom of cadmium toxicity which further leads to a decrease in production of vitamin D[3]

  • Osteomalacis and osteoporosis both of which lead sufferers to have increased chance of bone fractures and lower bone density [4]. This may be as a result of the kidney damage giving way to decreased levels of vitamin D. [5]


References

  1. Buckler, H. M., Smith, W. D., Rees, W. D. (1986) Self poisoning with oral cadmium chloride. Br Med J. 292(6535), 1559–1560.
  2. Kagamimiori, S., Watanabe, M., Nakagawa, H., Okumura, Y. (1986) Case- control study on cardiovascular function in females with a history of heavy exposure to cadmium. Bull Environ Contam Toxicol. 36 (4), 484-490.
  3. Arisawa, K., Nakano, A., Saito, H. et al. (2001) Mortality and cancer incidence among a population previously exposed to environmental cadmium. Int Arch Occup Environ Health. 74, 255-262.
  4. Shigematsu, I. (1984) The epidemiological approach to cadmium pollution in Japan. Ann Acad Med Singapore. 13, 231-236.
  5. Kido, T., Nogawa, K., Yamada, Y., et al (1989) Osteopenia in inhabitants with renal dysfunction induced by exposure to environmental cadmium. Int Arch Occup Environ Health. 61, 271-276.