Published July 6, 2018 | Version v1

Climate Can Be Regulated by Effective Use of NOx and Waste Water NP

Authors/Creators

  • 1. The Institute of Physical and Chemical Research, 2-1 Hirosawa, Wakoshi Saitama, Japan

Description

Abstract

About 510 billion tone CO2 is produced by burning of fossil fuel and respiration of animal. CO2 142 billion tone increased in 2017. If we can increase fixing of CO2 by promotion of CO2 assimilation, global warming will be protected. To promote CO2 assimilation, supply of nutrient N and P is essential.14.4 billion tons.

NOx is produced when140 billion fossil fuel is burned. Many governments are eliminating NOx and NP in drainage as pollution substances. NOx and NP in drainage is promoter of CO2 assimilation, fertilizer of plant growth. Therefore these actions are promoting global warming. NOx elimination is giving bad effect on grain, fish production, electricity price, GDP growth rate. By effective use of NOx and waste water NP, we can increase plankton CO2 assimilation at sea. Stopping of NOx elimination and stopping of waste water purification is easy method to protect global warming and to regulate climate.

Notes

Biomedical Research and Reviews (ISSN:2631-3944)

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References

  • Shoichiro O. Recycle of nitrogen and phosphorous for the increase of food production. New Food Industry. 1993;35(10):33-39.
  • Shoichiro O. Methods to protect global warming. Adv Tech BiolMed. 2016;4:181.
  • Shoichiro O. Methods to protect global warming, Food production increase way. New Food Industry. 2016;58(8):47-52.
  • Shoichiro O. Global warming can be protected by promotion ofCO2 assimilation using NOx. Journal of Climatology & WeatherForecasting. 2016;4:1000171.
  • Shoichiro O. Global warming can be protected by promotion ofplankton CO2 assimilation. J Marine Sci Res Dev. 2016;6:213.
  • Ozaki Shoichiro. Method to protect global warming by promotionof CO2 assimilation and method to reactivate fish industry. NewFood Industry 2017 May;59(3):61-70.
  • Shoichiro O. NOx is Best Compound to Reduce CO2. Eur J Exp Biol.2017;7:12.
  • Shoichiro O. Protection of global warming and burn out of fossilfuel by promotion of CO2 assimilation. J Mar Biol Oceanogr.2017;6:2.
  • Shoichiro O. Promotion of CO2 assimilation suppoted by NOx is best way to protect global warming and food production. Artiv of Pet- Envilron Biotechnol. 2017;2:110.
  • Shoichiro O. Promotion of CO2 assimilation supported by NOx is best way to protect global warming. J Marine Biol Aquacult. 2017;3:2.
  • Shoichiro O. Stopping of NOx elimination is easy way to reduceCO2 and protect global warming. J Environ Sci Public Health.2017;1:24-34.
  • Shoichiro O. Effective uses of NOx and drainage are clever wayto protect global warming and to increase fish production.Oceanogr Fish. 2017;4:4.
  • Shoichiro O. NOx Elimination and Drainage NP Elimination should be stopped for the production of fish and for the protection of global warming. J of Fisheries and Aquaculture Development. 2017;5:125.
  • Ozaki Shoichiro. Let`s enjoy civilized life using limited amountof fossil fuel. Journal of Aquaculture & Marine Biology. 2017Sep;6(3).
  • Shoichiro O. Method to fit Paris agreement for protection ofglobal warming. International Journal of Waste Resources.2017;7:4.
  • Shoichiro O. Method to protect global warming and to produce much fish by promotion of plankton growth. New Food Industry. 2018;60(3):88-94.
  • Shoichiro O. Method to protect global warming by promotion of plankton CO2 assimilation. Rikuryou Science. 2018;61(23).
  • Shoichiro O. Effect of NOx elimination on electricity price, fishproduction,GDP and protection of global warming InternationalJ of Waste Resources. 2018;8:1-328.
  • Shoichiro O. How to fix carbon dioxide same amount as emissionfor the protection of global warming Research & Developmentin Material Science. 2018;3:5.
  • Shoichiro O. Stop of NOx elimination and stop of wast water purification are easy methods to protect global warming. J of Immunology and Information Diseases Therapy.
  • Falkowski PG. The role of phytoplankton photosynthesisin global biogeochemical cycles. Photosyntheis Research.1994;39:235-258.
  • Falkowski PG, Ziemann D, Kolber Z, Bienfang PK. Nutrient pumping and phytoplankton response in a subtropical mesoscale eddy. Nature. 1991;352:52-58.
  • Falkowski PG, Wilson C. Phytoplankton productivity in theNorth Pacific ocean since 1900 and implications for absorptionof anthropogenic CO2. Nature. 1992;358:741-743.
  • Charlson RJ, Lovelock JE, Andreae MO, Warren SG. Oceanicphytoplankton, atmospheric sulphur, cloud albedo and climate.Nature. 1987;326:655-661.
  • Quinn PK, Bates TS. The case against climate regulation via oceanicphytoplankton sulphur emissions. Nature. 2011;480:51-56.
  • Klausmeier CA, Litchman E, Daufresne T, Levin SA. Optimalnitrogen-to-phosphorus stoichiometry of phytoplankton.Nature. 2004;429:171-174.
  • Boyce DG, Lewis MR, Worm B. Global phytoplankton declineover the past century. Nature. 2010;466:591-596.
  • Schiermeier Q. Ocean greenery under warming stress. Nature. 2010.
  • Schiermeier Q. Ocean greenery under warming stress. Nature.
  • Behrenfeld MJ, O'Malley RT, Siegel DA, McClain CR, Sarmiento JL,et al. Climate-driven trends in contemporary ocean productivity.Nature. 2006;444:752-755.
  • Cox PM, Betts RA, Jones CD, Spall SA, Totterdell IJ. Acceleration of global warming due to carbon-cycle feedbacks in a coupled climate model. Nature. 2000;408:184-187.
  • Arrigo KR. Marine microorganisms and global nutrient cycles. Nature. 2005;437:349-355.
  • Brunner DW, van Velthoven P. Evaluation of Parameterizations of the Lightning Production of Nitrogen Oxides in a Global CTM against Measurements. 1999;22.
  • Jourdain L, Hauglustaine DA. The global distribution of lightning NOx simulated on-line in a general circulation model. Phys. Chem. Earth. 2001;26:585-595.
  • Schumann U, Huntrieser H. The global lightning-induced nitrogenoxides source. Atmos. Chem. Phys. 2007;7:3823,
  • Taylor PG, Townsend AR. Stoichiometric control of organiccarbon-nitrate relationships from soils to the sea. Nature2010;464:1178-1181.
  • Shoichiro O. Chemical approach to signal transduction by inositoltrisphoaphate. Bioengineering & Biomedical Science. 2014;4:133.