Differential behaviour of carbon release to the atmosphere by lupafilotaxia

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· @lupafilotaxia ·
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Differential behaviour of carbon release to the atmosphere
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<div class="text-justify">Greetings dear readers, continuing with the contributions of scientific environmental character, I will take this opportunity to socialize content on the effect that exerts the microbes of the ground, in the process of release of carbon of the biosphere to the atmosphere.</div>
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<div class="text-justify">According to studies carried out by Professor Andrew Nottingham and a group of researchers from the Smithsonian Tropical Research Institute in Panama, it is stated that as we descend from a mountain, the temperature tends to increase constantly, a response that has been associated with a greater release of carbon by microbes from warm soils, compared to those from colder soils.</div>
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<center><img src="https://cdn.pixabay.com/photo/2015/01/09/10/52/soil-593949_960_720.jpg"/></center>
<blockquote><div class="text-justify">Fig. 2 The soil micro fauna, during its physiological processes releases carbon into the atmosphere. Image of public domain, Author: <a href="https://pixabay.com/es/photos/del-suelo-vapor-calor-campo-593949/" rel="noopener" title="This link will take you away from steemit.com"> Republica, 2013</a></div></blockquote></div>
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<div class="text-justify">For Professor Nottingham, global warming creates a powerful energy release circuit, where microbes and enzymes that synthesize and thrive in warmer conditions release even more carbon from the soil into the atmosphere than microbes in cooler soils. However, research to substantiate these claims has yet to be conducted, primarily in lowland tropical forests, which tends to elucidate and make more precise this differential carbon release behavior.</div>
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<div class="text-justify">Another of the scientists involved, and also a representative of the Smithsonian Tropical Research Institute, is Ben Turner, who has participated as a co-author in the studies developed to date, and who considers it likely that tropical soils are a considerable source of carbon for the atmosphere, promoting further temperature increases.</div>
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<center><img src="https://cdn.pixabay.com/photo/2015/11/07/11/26/forest-floor-1031143_960_720.jpg"/></center>
<blockquote><div class="text-justify">Fig. 3 The tropical forests are catalogued as the vegetal lungs of the planet earth, responsible for purifying the air. Author: <a href="https://pixabay.com/es/photos/suelo-del-bosque-musgo-forestales-1031143/" rel="noopener" title="This link will take you away from steemit.com"> Free-P, 2015</a></div></blockquote></div>
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<div class="text-justify">In important, to emphasize that both arguments have generated mixed opinions, essentially because, the tropical forests are catalogued like the vegetal lungs of the planet earth, responsible for purifying the air, reason why, the hypotheses of Nottingham and Turner, put in question what until now was believed, situation that demands to develop new investigations, where the projections of carbon dioxide absorption are estimated, and to correlate them with the release of carbon that emits the microbes in tropical grounds.</div>
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<h3><center>BIBLIOGRAPHICAL REFERENCES CONSULTED:</center></h3>
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<div class="text-justify"><strong>[1] Nottingham A., Whitaker J., Ostle N., and Bardgett R.</strong> Microbial responses to warming enhance soil carbon loss following translocation across a tropical forest elevation gradient. Ecology Letters. 2019; 22: 11. <a href="https://www.researchgate.net/publication/335661417_Microbial_responses_to_warming_enhance_soil_carbon_loss_following_translocation_across_a_tropical_forest_elevation_gradient" rel="noopener" title="This link will take you away from steemit.com"> Article: Online access</a></div>
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<div class="text-justify"><strong>[2] Turner B., Lambers H., Condron L., and Cramer M.</strong> Soil microbial biomass and the fate of phosphorus during long-term ecosystem development. Plant and Soil. 2013; 367: 1-2. <a href="https://www.researchgate.net/publication/257639128_Soil_microbial_biomass_and_the_fate_of_phosphorus_during_long-term_ecosystem_development" rel="noopener" title="This link will take you away from steemit.com"> Article: Online access</a></div>
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<div class="text-justify"><strong>[3] Nottingham A., Whitaker J., Turner B., Salinas N., Zimmermann M., Malhi Y., and Meir P.</strong> Climate Warming and Soil Carbon in Tropical Forests. BioScience. 2015; 65; 9: 906-921. <a href="https://www.jstor.org/stable/90007356?seq=1" rel="noopener" title="This link will take you away from hive.blog"> Article: Online access</a></div>
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<p><center><h1>OBSERVATION</h1></center></p>
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<center><strong>✔</strong> The cover image was designed by the author: @lupafilotaxia, incorporating the background <a href="https://pixabay.com/es/photos/seca-%C3%A1rido-amarillo-naturaleza-856544/" rel="noopener" title="This link will take you away from steemit.com">Public domain image</a></em></center></p>
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<center><a href="https://steemit.com/trending/hive-175254" rel="noopener" title="This link will take you away from steemit.com"><sub> Original manuscript, uploaded from the Project HOPE community website</sub></a></center>
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@creativeblue ·
@tipu curate 3
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@lupafilotaxia ·
Thank you for your support.
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@carlos84 ·
It is always important to divulge these scientific aspects that make us always doubt what we classically consider to be true

Dear @lupafilotaxia and thank you for sharing
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@lupafilotaxia ·
It is correct, this type of hypothesis confirms that we can never take absolutely nothing for granted, since other variables always intervene, which can change behavior. Thanks for your visit, friend @carlos84.
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