Comments on: Coral Reefs Faced With Extinction? http://nsdl.library.cornell.edu/websites/expertvoices/connectingnews/archives/3172 The NSDL Middle School Portal 2 project is hosting this blog to encourage teachers to use current science news as teaching opportunities. The related middle level, grades 5-8 content standards of the National Science Education Standards are included as well as ideas for turning the news event into an inquiry-based lesson. Fri, 08 Mar 2013 18:00:59 +0000 http://wordpress.org/?v=2.3.3 By: Asbestos Attorney http://nsdl.library.cornell.edu/websites/expertvoices/connectingnews/archives/3172#comment-2945 Asbestos Attorney Mon, 13 Oct 2008 16:52:47 +0000 http://nsdl.library.cornell.edu/websites/expertvoices/connectingnews/archives/3172#comment-2945 Oh My God.. That's something awful. Indeed, nature is trying to say us that things are getting worst each day. And this is happening because of us, of course. Everything we do damages the whole nature and, in the end, our own health. Oh My God.. That’s something awful. Indeed, nature is trying to say us that things are getting worst each day. And this is happening because of us, of course. Everything we do damages the whole nature and, in the end, our own health.

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By: russ http://nsdl.library.cornell.edu/websites/expertvoices/connectingnews/archives/3172#comment-2944 russ Sun, 27 Jul 2008 04:25:24 +0000 http://nsdl.library.cornell.edu/websites/expertvoices/connectingnews/archives/3172#comment-2944 Carbon Dioxide Emissions Threaten An Ocean Calamity Many of us who love the ocean are likely reading with alarm the news reports on the impact of CO2 from the burning of fossil fuels that is creating ocean acidification and a survival crisis for our coral reefs. In most of those reports the emphasis is given to the threat to and ideas for saving the beautiful coral reefs by reducing emissions, our carbon footprint. While it is good to reduce the fossil fuel and other green house gas emissions we are all contributing, I beg to differ with the position that reducing our global carbon footprint will help save our ocean bathing beauties, the reefs. It's not that I don't fully support reducing our carbon footprint, I am rather more concerned about the more potent role of the deadly dose of anthropogenic (fossil) CO2 already in the air on its way to our surface ocean waters. Those hundreds of billions of tonnes of CO2 from the fossil fuel age burning, the bulk of which we've emitted in the past 75 years, is a massive carbon bomb already airborne and slowly but surely dissolving (exploding) into the surface ocean. By most accounts CO2 in the atmosphere takes on the order of 200 years to equilibrate with the surface ocean. As it dissolves in the surface ocean it makes the water more acidic. The pH (acidity) drop of 30% that we've been recording of recent is just the proverbial tip of the dry-iceberg. As the surface ocean absorbs the rest of this deadly dose, regardless of whether we emit more which we surely will do, the acidification process already destined to occur is more than sufficient to change ocean ecology in far wider and disastrous fashion than merely scalding the bathing beauty reefs at the shore. In fact the devastating effects CO2 has on the ocean is not proceeding only via acidification, H2O+CO2=H2CO3 (carbonic acid), there is a secondary pathway wherein CO2 is enhancing the greeness of the planets dry lands. This added greenery is is a major benefit our high and rising CO2 delivers to droughty grasses who are losing less water via evaporation and transpiration as they take CO2 from the enriched air, are remaining green and growing bushier each spring, and as such are superior ground cover thus reducing topsoil loss in the wind. Tragically that dust in the wind is the major source of vital mineral micronutrients for the open ocean. Prophetically it seems, all we really are is dust in the wind. So as our reef beauties cry out and dissolve like Dorothy's wicked witch in our acidifying oceans, the acidification will certainly continue for at least another century, unabated even if we never emit another molecule of fossil CO2 into the air. At the same time as the oceans suffer this chemical shock treatment, akin to those we give our swimming pools, they will continue as well to lose their phyto-plankton and photosynthetic capacity to counter this onslaught. The loss of net primary productivity (ocean greeness), NPP, is reportedly 17% in the North Atlantic, 26% in the North Pacific, and 50% in the sub-tropical tropical oceans. Last spring a scientific report of a transect of the Eastern Pacific between French Polynesia and Chile reported it found "the clearest water on Earth. In the middle of the Pacific the waters were of such clarity that they even exceeded the clarity of the former record holding lakes which lie beneath a mile of ice on the Antarctic continent, in the cold and dark for a million years. Clear water is lifeless water and while it may be a scientific curiosity under the Antarctic icecap it is a horrifying finding in what should be an ocean murky with an abundance of life. We can find the fundamental proof of the depth and breadth of this problem by considering it from the point of view of basic chemical thermodynamics. Indeed we have expended a hundred terrawatts or so burning fossil carbon to put that deadly dose of CO2 into our atmosphere and ocean. The present human energy use continues at about 12 terrawatts per year today. No trivial energy savings will serve to counter the certain first principals chemical effects of this burning of fossil carbon as it impacts the biggest and most sensitive ecosystem on this small blue planet, the oceans. We can still trust in what the Second Law of Thermodynamics teaches us in that one must balance chemical equations energetically. If we are to address a problem created by terrawatts of energy we must devote terrawatts of energy for the cure. In this case those curative terrawatts better be emission free or we are lost. So where is there a source of emission free terrawatts of curative power we can devote to saving the oceans and help restore the balance of Nature? It is of course ONLY available from ocean photosynthesis and therein lies the course we must chart to restore our oceans. We must not simply imagine the damage we've prescribed can be ignored by staring only ahead and not behind. We must not only take actions that assume the present mortally wounded state of the oceans is something we can't deal with. No mere conservation ethic or effort will suffice, we are far to far over the tipping point for that to work. We must replenish and restore ocean plant life and photosynthesis for there in the vast living ocean expanse the terrawatts of solar power, captured by living green plankton, can be found and used to compete with the H2O+CO2=H2CO3 reaction. There in lies our only hope if we act now to assist the ocean plants, phyto-plankton, to convert CO2+Sunlight in the ocean to life instead of death. Without replenished mineral micronutrients, without our determined efforts to administer the antidote, life in the oceans, and on this small blue planet, will surely not remain as it is. It will revert to the cyanobacterial; state the oceans were in 600 million years ago before green plants made abundant oxygen and higher life forms, including ourselves, evolved. My hope in writing to you with this information is to inspire your curiosity and perhaps engagement in this critical issue facing our environment. If you have any questions I would be happy to provide what answers I can. Planktos Science San Francisco www.planktos-science.com Carbon Dioxide Emissions Threaten An Ocean Calamity

Many of us who love the ocean are likely reading with alarm the news reports on the impact of CO2 from the burning of fossil fuels that is creating ocean acidification and a survival crisis for our coral reefs. In most of those reports the emphasis is given to the threat to and ideas for saving the beautiful coral reefs by reducing emissions, our carbon footprint. While it is good to reduce the fossil fuel and other green house gas emissions we are all contributing, I beg to differ with the position that reducing our global carbon footprint will help save our ocean bathing beauties, the reefs. It’s not that I don’t fully support reducing our carbon footprint, I am rather more concerned about the more potent role of the deadly dose of anthropogenic (fossil) CO2 already in the air on its way to our surface ocean waters. Those hundreds of billions of tonnes of CO2 from the fossil fuel age burning, the bulk of which we’ve emitted in the past 75 years, is a massive carbon bomb already airborne and slowly but surely dissolving (exploding) into the surface ocean. By most accounts CO2 in the atmosphere takes on the order of 200 years to equilibrate with the surface ocean. As it dissolves in the surface ocean it makes the water more acidic. The pH (acidity) drop of 30% that we’ve been recording of recent is just the proverbial tip of the dry-iceberg.

As the surface ocean absorbs the rest of this deadly dose, regardless of whether we emit more which we surely will do, the acidification process already destined to occur is more than sufficient to change ocean ecology in far wider and disastrous fashion than merely scalding the bathing beauty reefs at the shore. In fact the devastating effects CO2 has on the ocean is not proceeding only via acidification, H2O+CO2=H2CO3 (carbonic acid), there is a secondary pathway wherein CO2 is enhancing the greeness of the planets dry lands. This added greenery is is a major benefit our high and rising CO2 delivers to droughty grasses who are losing less water via evaporation and transpiration as they take CO2 from the enriched air, are remaining green and growing bushier each spring, and as such are superior ground cover thus reducing topsoil loss in the wind. Tragically that dust in the wind is the major source of vital mineral micronutrients for the open ocean. Prophetically it seems, all we really are is dust in the wind.

So as our reef beauties cry out and dissolve like Dorothy’s wicked witch in our acidifying oceans, the acidification will certainly continue for at least another century, unabated even if we never emit another molecule of fossil CO2 into the air. At the same time as the oceans suffer this chemical shock treatment, akin to those we give our swimming pools, they will continue as well to lose their phyto-plankton and photosynthetic capacity to counter this onslaught. The loss of net primary productivity (ocean greeness), NPP, is reportedly 17% in the North Atlantic, 26% in the North Pacific, and 50% in the sub-tropical tropical oceans. Last spring a scientific report of a transect of the Eastern Pacific between French Polynesia and Chile reported it found “the clearest water on Earth. In the middle of the Pacific the waters were of such clarity that they even exceeded the clarity of the former record holding lakes which lie beneath a mile of ice on the Antarctic continent, in the cold and dark for a million years. Clear water is lifeless water and while it may be a scientific curiosity under the Antarctic icecap it is a horrifying finding in what should be an ocean murky with an abundance of life.

We can find the fundamental proof of the depth and breadth of this problem by considering it from the point of view of basic chemical thermodynamics. Indeed we have expended a hundred terrawatts or so burning fossil carbon to put that deadly dose of CO2 into our atmosphere and ocean. The present human energy use continues at about 12 terrawatts per year today. No trivial energy savings will serve to counter the certain first principals chemical effects of this burning of fossil carbon as it impacts the biggest and most sensitive ecosystem on this small blue planet, the oceans. We can still trust in what the Second Law of Thermodynamics teaches us in that one must balance chemical equations energetically. If we are to address a problem created by terrawatts of energy we must devote terrawatts of energy for the cure. In this case those curative terrawatts better be emission free or we are lost.

So where is there a source of emission free terrawatts of curative power we can devote to saving the oceans and help restore the balance of Nature? It is of course ONLY available from ocean photosynthesis and therein lies the course we must chart to restore our oceans. We must not simply imagine the damage we’ve prescribed can be ignored by staring only ahead and not behind. We must not only take actions that assume the present mortally wounded state of the oceans is something we can’t deal with. No mere conservation ethic or effort will suffice, we are far to far over the tipping point for that to work. We must replenish and restore ocean plant life and photosynthesis for there in the vast living ocean expanse the terrawatts of solar power, captured by living green plankton, can be found and used to compete with the H2O+CO2=H2CO3 reaction. There in lies our only hope if we act now to assist the ocean plants, phyto-plankton, to convert CO2+Sunlight in the ocean to life instead of death. Without replenished mineral micronutrients, without our determined efforts to administer the antidote, life in the oceans, and on this small blue planet, will surely not remain as it is. It will revert to the cyanobacterial; state the oceans were in 600 million years ago before green plants made abundant oxygen and higher life forms, including ourselves, evolved.

My hope in writing to you with this information is to inspire your curiosity and perhaps engagement in this critical issue facing our environment. If you have any questions I would be happy to provide what answers I can.

Planktos Science

San Francisco

http://www.planktos-science.com

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