Поддерживать
www.wikidata.ru-ru.nina.az
Proterozojskij eon proterozoj dr grech proteros pervyj starshij zwh zhizn geologicheskij eon ohvatyvayushij period ot 2500 do 538 8 0 2 mln let nazad Prishyol na smenu arheyu i smenilsya fanerozoem Samyj dlitelnyj eon v istorii Zemli dlivshijsya 1961 mln let Chast geologicheskoj istorii ZemliProterozojskij eon sokr Proterozoj2500 539 mln let nazad K Arhej Proterozoj FPo ryadam sleva napravo Guronskoe oledenenie v rezultate Kislorodnoj katastrofy poyavlenie eukariotov v tom chisle pervyh vodoroslej Zemlya snezhok vsya Zemlya pokryta sloem lda Ediakarskaya biota odni iz samyh rannih zhivotnyhGeohronologicheskie dannyeSupereon DokembrijKol vo er 3Dlitelnost 1961 mln letSostoyanie FormalnyjPodrazdeleniyaPaleoproterozojMezoproterozojNeoproterozoj Rossijskaya shkalaKarelijRifejVendArhejFanerozojGeohronologicheskaya shkala mln let nazadEon Era Period 0F a n e r o z o j Kajnozoj Chetvertichnyj 2 58Neogen 23Paleogen 66Mezozoj Mel 145Yura 201Trias 252Paleozoj Perm 299Karbon 359Devon 419Silur 444Ordovik 485Kembrij 539Dokembrij Proterozoj Neo proterozoj Ediakarij 635Kriogenij 720Tonij 1000Mezo proterozoj Stenij 1200Ektazij 1400Kalimij 1600Paleo proterozoj Staterij 1800Orozirij 2050Ryasij 2300Siderij 2500Arhej Neoarhej 2800Mezoarhej 3200Paleoarhej 3600Eoarhej 4031Katarhej 4567Istochnik Proterozoj harakterizuetsya kolossalnymi izmeneniyami v biosfere atmosfere i litosfere Zemli Esli v predydushem arhee atmosfera prakticheski ne soderzhala svobodnyj kislorod to uzhe v nachale proterozoya 2460 mln let nazad proishodit Velikoe kislorodnoe sobytie v rezultate kotorogo procent kisloroda v atmosfere uvelichilsya do 2 to est 10 ot nyneshnego urovnya Za etim uvelicheniem posledovalo pervoe v istorii Zemli massovoe vymiranie Kislorodnaya katastrofa poskolku vsya zhizn togda byla eshyo anaerobnoj to est beskislorodnoj Eshyo odnim posledstviem etoj katastrofy stalo Guronskoe oledenenie prodlivsheesya okolo 300 mln let i stavshee samym dolgim v istorii planety Okolo 2 1 mlrd let nazad poyavilis pervye eukarioty v tom chisle mnogokletochnye Fransvilskaya biota Okolo 2100 1800 mln let nazad nasyshenie atmosfery kislorodom zakonchilos a sama planeta nahodilas v otnositelnoj tektonicheskoj i klimaticheskoj stabilnosti v techenie okolo milliarda let Etot period 1800 800 mln let nazad izvesten kak Skuchnyj milliard Imenno v eto vremya poyavilis pervye vodorosli naprimer krasnye a takzhe voznikli mejoz i polovoe razmnozhenie Okolo 1 milliarda let nazad voznikli pervye griby a chut pozzhe okolo 665 mln let nazad i pervye zhivotnye 850 mln let nazad nachalos angl za kotorym 717 mln let nazad posledovalo Stertskoe a zatem i Marinoanskoe oledenenie Schitaetsya chto ldy dostigali ekvatora poetomu eti oledeneniya izvestny kak Zemlya snezhok V poslednij period proterozoya ediakarskij poyavilas pervaya dostoverno izvestnaya fauna mnogokletochnyh zhivotnyh ediakarskaya biota PeriodizaciyaProterozoj delitsya na 3 ery paleoproterozoj mezoproterozoj neoproterozoj V rossijskoj shkale V rossijskoj stratigraficheskoj shkale proterozoj tozhe prisutstvuet no yavlyaetsya ne eonom a akronom bolee vysokim deleniem takim zhe deleniem yavlyaetsya eshyo i arhej Proterozoj podelyon na dva eona nizhneproterozojskij ili karelskij ot 2500 do 1650 mln let nazad i verhneproterozojskij ot 1650 do 535 mln let nazad Karelskij eon podrazdelyaetsya na dve ery v skobkah dlitelnost v mln let nizhnekarelskaya 2500 2100 i verhnekarelskaya 2100 1650 V sostav verhnego proterozoya vhodit rifej 1650 600 mln let nazad kotoryj imeet status podeona i delitsya na tri ery sm nizhe Zavershaet proterozoj vendskij period 600 535 mln let nazad Rossijskaya stratigraficheskaya shkala dlya proterozoyaNaibolee znachimye sobytiyaKislorodnaya katastrofa v paleoproterozoe poyavlenie ozonovogo sloya istochnik ne ukazan 3868 dnej planety Ranee sushestvovalo predpolozhenie chto cherez 600 mln let posle nachala proterozoya okolo 2 mlrd let nazad soderzhanie kisloroda dostiglo tak nazyvaemoj tochki Pastera istochnik ne ukazan 3868 dnej okolo 1 ot ego soderzhaniya v sovremennoj nam atmosfere Uchenye schitayut chto takaya koncentraciya kisloroda dostatochna dlya togo chtoby obespechit ustojchivuyu zhiznedeyatelnost odnokletochnyh aerobnyh organizmov Sejchas odnako dokazano chto ne pozdnee 2 4 mlrd let nazad soderzhanie kisloroda v atmosfere uzhe dostiglo primerno 10 ot sovremennogo proizoshla kislorodnaya katastrofa istochnik ne ukazan 3868 dnej 1 neavtoritetnyj istochnik net v istochnike Formirovanie sovremennogo obyoma mirovogo okeana Naibolee dlitelnoe v istorii Zemli guronskoe oledenenie 2 4 2 1 mlrd let nazad neskolko epoh globalnogo oledeneniya v pozdnem neoproterozoe Poyavlenie mnogokletochnyh organizmov gubki griby Rezultatom zhiznedeyatelnosti prokariot bakterij i odnokletochnyh vodoroslej zhivshih po vidimomu i na sushe v plyonkah vody mezhdu mineralnymi chasticami v zonah chastichnogo zatopleniya vblizi vodoyomov stalo obrazovanie pochvy Zemlya snezhok Osnovnaya statya Zemlya snezhok V rezultate estestvennoj evolyucii Solnce davalo vse bolshe sveta v arhee i proterozoe svetimost Solnca povyshaetsya na 6 kazhdyj milliard let 165 V rezultate Zemlya stala poluchat bolshe tepla ot Solnca v proterozoe Tem ne menee Zemlya ne nagrevaetsya Vmesto etogo geologicheskaya letopis pokazyvaet chto v nachale proterozoya Zemlya znachitelno ohlazhdaetsya Lednikovye otlozheniya najdennye v Yuzhnoj Afrike datiruyutsya 2 2 mlrd let a dannye paleomagnitnyh izmerenij ukazyvayut na ih polozhenie v rajone ekvatora Takim obrazom oledenenie izvestnoe kak Guronskoe vozmozhno bylo globalnym Nekotorye uchyonye predpolagayut chto eto i posleduyushie proterozojskie lednikovye periody byli nastolko seryoznymi chto planeta byla polnostyu zamorozhena ot polyusov do ekvatora Eta gipoteza nazyvaetsya Zemlya snezhok Lednikovyj period okolo 2 3 mlrd let nazad mog byt neposredstvenno vyzvan uvelicheniem koncentracii kisloroda v atmosfere chto privelo k umensheniyu soderzhaniya metana CH4 Metan yavlyaetsya silnym parnikovym gazom no s kislorodom reagiruet s obrazovaniem CO2 menee effektivnogo parnikovogo gaza 172 Kogda svobodnyj kislorod poyavilsya v atmosfere koncentraciya metana mogla rezko snizitsya chto privelo k umensheniyu parnikovogo effekta i poholodaniyu Skuchnyj milliard Osnovnaya statya Skuchnyj milliard Promezhutok ot 1 8 do 0 72 mlrd let nazad primechatelen tektonicheskoj i klimaticheskoj stabilnostyu nizkim urovnem kisloroda v atmosfere i ochen medlennoj evolyuciej zhivyh organizmov otkuda i nazvanie Skuchnyj milliard ohvatyvaet staterijskij period paleoproterozoya ves mezoproterozoj i tonijskij period neoproterozoya NazvanieEozoj eozojskij period dr grech ἕws zarya eozoj zarya zhizni nyne ustarevshij termin predlozhennyj v 1865 godu nemeckim geologom Berngardom Kotta 1808 1879 professorom Frejbergskoj Gornoj Akademii v knige Geologiya nashego vremeni v kachestve elementa geohronologicheskoj shkaly Ispolzovalsya Dzhonom Dousonom dlya oboznacheniya vseh dokembrijskih obrazovanij glavnym obrazom proterozojskih Sobstvenno termin proterozoj byl vvedyon v 1888 godu E Emmonsom Poleznye iskopaemyeRannij proterozoj byl vremenem vydayushegosya zhelezorudnogo nakopleniya naprimer Krivoj Rog Kurskaya magnitnaya anomaliya Na yuge Afriki v eto zhe vremya obrazovyvalis zoloto urano piritovye konglomeraty Pozdnij proterozoj izvesten zheleznymi rudami naprimer Ural medno polimetallicheskimi rudami naprimer Avstraliya a takzhe uranovymi kobaltovymi mednymi olovyannymi rudami PrimechaniyaInternational chronostratigraphic chart v 2023 09 neopr International Commission on Stratigraphy 7 noyabrya 2023 goda Gumsley Ashley P Chamberlain Kevin R Bleeker Wouter Soderlund Ulf De Kock Michiel O Larsson Emilie R Bekker Andrey 6 February 2017 Timing and tempo of the Great Oxidation Event Proceedings of the National Academy of Sciences of the United States of America angl 114 8 1811 1816 doi 10 1073 pnas 1608824114 ISSN 0027 8424 PMC 5338422 PMID 28167763 Plait Phil 2014 07 28 Poisoned Planet Slate 11 avgusta 2022 Data obrasheniya 8 iyulya 2019 Bekker Andrey 2014 Huronian Glaciation In Amils Ricardo Gargaud Muriel Cernicharo Quintanilla Jose Cleaves Henderson James eds Encyclopedia of Astrobiology Springer Berlin Heidelberg pp 1 8 doi 10 1007 978 3 642 27833 4 742 4 ISBN 978 3 642 27833 4 Kopp Robert E Kirschvink Joseph L Hilburn Isaac A Nash Cody Z 2005 The Paleoproterozoic snowball Earth A climate disaster triggered by the evolution of oxygenic photosynthesis Proceedings of the National Academy of Sciences of the United States of America 102 32 11131 11136 Bibcode 2005PNAS 10211131K doi 10 1073 pnas 0504878102 PMC 1183582 PMID 16061801 Lane Nick 5 February 2010 First breath Earth s billion year struggle for oxygen New Scientist No 2746 30 maya 2020 Data obrasheniya 22 aprelya 2023 Schirrmeister Bettina E de Vos Jurriaan M Antonelli Alexandre Bagheri Homayoun C 2013 01 29 Evolution of multicellularity coincided with increased diversification of cyanobacteria and the Great Oxidation Event Proceedings of the National Academy of Sciences 110 5 1791 1796 Bibcode 2013PNAS 110 1791S doi 10 1073 pnas 1209927110 PMC 3562814 PMID 23319632 Great Oxidation Event More oxygen through multicellularity ScienceDaily Press release 2013 01 17 19 marta 2021 Data obrasheniya 22 aprelya 2023 Lenton T The not so boring billion Revolutions that made the Earth T Lenton A Watson 2011 P 242 261 ISBN 978 0 19 958704 9 doi 10 1093 acprof oso 9780199587049 003 0013 Bernstein H DNA Repair as the Primary Adaptive Function of Sex in Bacteria and Eukaryotes DNA Repair New Research H Bernstein C Bernstein R E Michod Nova Biomedical 2012 P 1 49 ISBN 978 1 62100 756 2 Zimmer Carl 2019 05 22 How Did Life Arrive on Land A Billion Year Old Fungus May Hold Clues A cache of microscopic fossils from the Arctic hints that fungi reached land long before plants The New York Times 23 maya 2019 Data obrasheniya 23 maya 2019 Loron Corentin C Francois Camille Rainbird Robert H Turner Elizabeth C Borensztajn Stephan Javaux Emmanuelle J 22 May 2019 Early fungi from the Proterozoic era in Arctic Canada Nature 570 7760 Springer Science and Business Media LLC 232 235 Bibcode 2019Natur 570 232L doi 10 1038 s41586 019 1217 0 ISSN 0028 0836 PMID 31118507 S2CID 162180486 Timmer John Billion year old fossils may be early fungus neopr Ars Technica 22 maya 2019 Data obrasheniya 23 maya 2019 23 maya 2019 goda Maloof Adam C Rose Catherine V Beach Robert Samuels Bradley M Calmet Claire C Erwin Douglas H Poirier Gerald R Yao Nan Simons Frederik J 17 August 2010 Possible animal body fossils in pre Marinoan limestones from South Australia Nature Geoscience 3 9 653 659 Bibcode 2010NatGe 3 653M doi 10 1038 ngeo934 Och Lawrence M Shields Zhou Graham A January 2012 The Neoproterozoic oxygenation event Environmental perturbations and biogeochemical cycling 110 1 4 26 57 Bibcode 2012ESRv 110 26O doi 10 1016 j earscirev 2011 09 004 9 iyunya 2023 Data obrasheniya 10 noyabrya 2022 Stern R J Avigad D Miller N R Beyth M 2006 Geological Society of Africa Presidential Review Evidence for the Snowball Earth Hypothesis in the Arabian Nubian Shield and the East African Orogen Journal of African Earth Sciences 44 1 1 20 Bibcode 2006JAfES 44 1S doi 10 1016 j jafrearsci 2005 10 003 Watson Traci 28 October 2020 These bizarre ancient species are rewriting animal evolution Nature news 586 7831 662 665 Bibcode 2020Natur 586 662W doi 10 1038 d41586 020 02985 z PMID 33116283 Obshaya stratigraficheskaya geohronologicheskaya shkala nedostupnaya ssylka Fedonkin M A Dve letopisi zhizni opyt sopostavleniya paleobiologiya i genomika o rannih etapah evolyucii biosfery Otv redaktor Pystin A M Problemy geologii i mineralogii sbornik S Geoprint 2006 S 331 350 ISBN 5 98491 018 7 30 sentyabrya 2011 goda Istoriya atmosfery i gidrosfery neopr Data obrasheniya 29 oktyabrya 2010 8 fevralya 2011 goda Lunine 1999 Snowball Earth neopr snowballearth org 2006 2009 Data obrasheniya 13 aprelya 2012 Arhivirovano 8 avgusta 2012 goda What caused the snowball earths neopr snowballearth org 2006 2009 Data obrasheniya 13 aprelya 2012 Arhivirovano 8 avgusta 2012 goda Young Grant M 2013 Precambrian supercontinents glaciations atmospheric oxygenation metazoan evolution and an impact that may have changed the second half of Earth history Geoscience Frontiers 4 3 247 261 doi 10 1016 j gsf 2012 07 003 Brasier M D 1998 A billion years of environmental stability and the emergence of eukaryotes New data from northern Australia Geology 26 6 555 558 Bibcode 1998Geo 26 555B doi 10 1130 0091 7613 1998 026 lt 0555 ABYOES gt 2 3 CO 2 PMID 11541449 Kotta Berngard Enciklopedicheskij slovar Brokgauza i Efrona v 86 t 82 t i 4 dop SPb 1890 1907 O biosfere Zemli Planeta i carstva prirody Sreda obitaniya ru mo Personalnyj sajt ru mo neopr Data obrasheniya 14 marta 2009 2 yanvarya 2014 goda EOZOJSKAYa GRUPPA EOZOJ neopr Data obrasheniya 14 marta 2009 30 oktyabrya 2008 goda Dokembrij Demosfen Dokembrij M Sovetskaya enciklopediya 1952 S 651 655 Bolshaya sovetskaya enciklopediya v 51 t gl red B A Vvedenskij 1949 1958 t 14 Dokembrij B M Keller K O Kratc Debitor Evkalipt M Sovetskaya enciklopediya 1972 S 400 401 Bolshaya sovetskaya enciklopediya v 30 t gl red A M Prohorov 1969 1978 t 8 LiteraturaIordanskij N N Razvitie zhizni na zemle M Prosveshenie 1981 Koronovskij N V Hain V E Yasamanov N A Istoricheskaya geologiya Uchebnik M Akademiya 2006 Ushakov S A Yasamanov N A Drejf materikov i klimaty Zemli M Mysl 1984 Yasamanov N A Populyarnaya paleogeografiya M Mysl 1985 Yasamanov N A Drevnie klimaty Zemli L Gidrometeoizdat 1985 J I Lunine Earth Evolution of a Habitable World Cambridge Cambridge University Press 1999 ISBN 0 521 64423 2 Proterozoj Znacheniya v VikislovareMediafajly na VikiskladeSsylkiProterozoj Proterozoj
Вершина