Abstract
The quantitative studies for oxygen, carbon dioxide and water protolysis functional activity reveal multiply
generated Self-Organization Attractors: water [H2O]=55.3 mol/Liter concentration, pH=7.36, enzyme Carbonic Anhydrase reactivity, air oxygen level 20.95 %, osmolar concentration 0.305 M, ionic strength 0.25 M, temperature 310.15 K degree etc.[1] High rate protolysis in water make oxygen fire safe , functionally activate CO2aqua for Life Homeostasis. In 2023rd have to note hundred years since Brønsted - Lowry protolysis, which high rate protonation stay at equilibria while other reactions continues as much more slower. Arterial dissolute oxygen concentration [O2aqua]=6*10-5 Makes safe Bioenergetic sustaining isooxia with air oxygen level 20.95 % is the Attractor 500 MYears. [6,14]
The perfect order irreversible non-equilibrium reactions of Homeostasis are created by activation with high rate protolysis Attractors, which stay at equilibrium and activate molecules for progress of Homeostasis. Those indispensably are for irreversible continuing Homeostasis. Homeostasis generates bioenergetic concentration gradients for transport down and for osmosis against the gradients, which as Brownian molecular engines drive the organism Homeostasis for evolution and for survival. [2,3,4] Deviation from high rate protolysis Attractors values disorder the Self-Organization perfect reaction order of Homeostasis. The nascent Chaos disorders and stops the Homeostasis which disappears as extinct from Biosphere. Zero energy Ge-=GH2O=GCO2gas=0 kJ/mol to free electrons e-, for water H2O and CO2gas bases on Hydrogen GH2gas=85.6 kJ/mol in water GH2aqua=103 kJ/mol and metal GH(Pt)=51 kJ/mol. [8]
generated Self-Organization Attractors: water [H2O]=55.3 mol/Liter concentration, pH=7.36, enzyme Carbonic Anhydrase reactivity, air oxygen level 20.95 %, osmolar concentration 0.305 M, ionic strength 0.25 M, temperature 310.15 K degree etc.[1] High rate protolysis in water make oxygen fire safe , functionally activate CO2aqua for Life Homeostasis. In 2023rd have to note hundred years since Brønsted - Lowry protolysis, which high rate protonation stay at equilibria while other reactions continues as much more slower. Arterial dissolute oxygen concentration [O2aqua]=6*10-5 Makes safe Bioenergetic sustaining isooxia with air oxygen level 20.95 % is the Attractor 500 MYears. [6,14]
The perfect order irreversible non-equilibrium reactions of Homeostasis are created by activation with high rate protolysis Attractors, which stay at equilibrium and activate molecules for progress of Homeostasis. Those indispensably are for irreversible continuing Homeostasis. Homeostasis generates bioenergetic concentration gradients for transport down and for osmosis against the gradients, which as Brownian molecular engines drive the organism Homeostasis for evolution and for survival. [2,3,4] Deviation from high rate protolysis Attractors values disorder the Self-Organization perfect reaction order of Homeostasis. The nascent Chaos disorders and stops the Homeostasis which disappears as extinct from Biosphere. Zero energy Ge-=GH2O=GCO2gas=0 kJ/mol to free electrons e-, for water H2O and CO2gas bases on Hydrogen GH2gas=85.6 kJ/mol in water GH2aqua=103 kJ/mol and metal GH(Pt)=51 kJ/mol. [8]
Original language | English |
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Title of host publication | 9th ICNTC Proceedings Book |
Editors | Sakar Dasdan |
Place of Publication | İstanbul |
Publisher | ICNTC Secretariat |
Pages | 14-19 |
Number of pages | 6 |
ISBN (Electronic) | 978-605-73406-2-7 |
Publication status | Published - 19 May 2023 |
Event | 9th International Conference on New Trends in Chemistry (ICNTC) - North Macedonia, Skopje, Macedonia, The Former Yugoslav Republic of Duration: 19 May 2023 → 21 May 2023 Conference number: 9 http://www.icntcconference.com/ |
Conference
Conference | 9th International Conference on New Trends in Chemistry (ICNTC) |
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Abbreviated title | ICNTC |
Country/Territory | Macedonia, The Former Yugoslav Republic of |
City | Skopje |
Period | 19/05/23 → 21/05/23 |
Internet address |
Keywords*
- Biochemistry
- Physical Chemistry
- Thermodynamics
- Protolysis
- Attractors
Field of Science*
- 1.4 Chemical sciences
- 1.6 Biological sciences
Publication Type*
- 3.2. Articles or chapters in other proceedings other than those included in 3.1., with an ISBN or ISSN code