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Voda na Misyaci ce voda yaka perebuvaye na Misyaci nezalezhno vid formi Yak viyavila observatoriya SOFIA spilnij proekt 80 20 NASA ta Nimeckogo aerokosmichnogo centru DLR u 2020 roci difuzni molekuli vodi v nizkih koncentraciyah mozhut zberigatisya na osvitlenij soncem poverhni Misyacya 1 Postupovo vodyana para rozkladayetsya sonyachnim svitlom cherez sho voden i kisen vtrachayutsya u kosmosi Vcheni znajshli vodyanij lid u holodnih postijno zatinenih kraterah na polyusah Misyacya 2 3 Molekuli vodi takozh prisutni v nadzvichajno tonkij atmosferi Misyacya 4 Spektri difuznogo vidbittya zrazkiv misyachnogo regolitu viluchenih na glibinah 118 i 184 sm radyanskim zondom Luna 24 demonstruyut minimumi bilya 3 5 i 6 mkm smugi valentnih kolivan dlya molekul vodi Ci zobrazhennya pokazuyut duzhe molodij misyachnij krater na zvorotnomu boci zroblene aparatom Moon Mineralogy Mapper na bortu Chandrayan 1 Na zobrazhenni pokazano rozpodil poverhnevogo lodu na pivdennomu polyusi Misyacya livoruch i Pivnichnomu polyusi pravoruch za dopomogoyu spektrometra NASA Moon Mineralogy Mapper M3 na bortu indijskogo orbitalnogo aparatu Chandrayan 1 Eksperiment NASA Ice Mining Experiment 1 planuyetsya zapustiti u ramkah misiyi PRIME 1 en ne ranishe nizh naprikinci 2024 roku poklikanij vidpovisti na pitannya chi ye vodyanij lid u pridatnih dlya vikoristannya kilkostyah u pivdennomu polyarnomu regioni 5 Voda H2O i pov yazana z neyu gidroksilna grupa OH isnuyut u himichno zv yazanih formah u viglyadi gidrativ i gidroksidiv z misyachnimi mineralami a ne u formi vilnoyi vodi i dani perekonlivo svidchat pro te sho ce vidbuvayetsya v nizkih koncentraciyah na bilshosti poverhni Misyacya 6 Faktichno rozrahovano sho adsorbovana voda isnuye v slidovih koncentraciyah vid 10 do 1000 chastin na miljon en 7 Protyagom drugoyi polovini 20 go storichchya na osnovi riznomanitnih sposterezhen bulo nakopicheno neperekonlivi dokazi isnuvannya vilnogo vodyanogo lodu na polyusah Misyacya yaki svidchat pro nayavnist zv yazanogo vodnyu 18 serpnya 1976 roku radyanskij zond Luna 24 zdijsniv posadku v Mori Kriz vzyavshi probi z glibin 118 143 i 184 sm misyachnogo regolitu i povernuv yih na Zemlyu U lyutomu 1978 roku laboratornij analiz cih zrazkiv pokazav sho voni mistili 0 1 1000 ppm vodi za masoyu 8 9 Spektralni vimiryuvannya pokazali minimumi poblizu 3 5 i 6 mkm harakterni smugi valentnih kolivan dlya molekul vodi intensivnist yakih u dva tri razi perevishuye riven shumu 10 24 veresnya 2009 roku spektrometr en Chandra s Altitudinal Composition Explorer CHACE Indijskoyi organizaciyi kosmichnih doslidzhen i Moon Mineralogy Mapper M3 NASA na bortu zonda Chandrayan 1 viyavili osoblivosti poglinannya na dovzhinah hvil 2 8 3 0 mkm na poverhni Misyacya 11 14 listopada 2008 roku Chandrayan 1 vipustiv zond Moon Impact Probe dlya zitknennya u krateri Sheklton sho dopomoglo pidtverditi nayavnist vodyanogo lodu Dlya silikatnih til taki osoblivosti zazvichaj pripisuyut gidroksilnim ta abo vodovmisnim materialam 12 U serpni 2018 roku NASA pidtverdilo sho M3 pokazav nayavnist vodyanogo lodu na poverhni polyusiv Misyacya 13 14 26 zhovtnya 2020 roku observatoriya SOFIA pidtverdila nayavnist vodi v koncentraciyah vid 100 do 412 chastin na miljon 0 01 0 042 na osvitlenij soncem poverhni Misyacya 15 Voda mogla buti dostavlena na Misyac protyagom geologichnih masshtabiv chasu vnaslidok regulyarnogo bombarduvannya vodonosnimi kometami asteroyidami ta meteoroyidami 16 abo bezperervno viroblyalasya na misci ionami vodnyu protonami sonyachnogo vitru sho diyut na minerali yaki mistyat kisen 17 Poshuki prisutnosti misyachnoyi vodi privernuli znachnu uvagu ta sponukali do kilkoh nedavnih misyachnih misij golovnim chinom cherez korisnist vodi dlya dovgostrokovogo prozhivannya na Misyaci 18 Zmist 1 Istoriya sposterezhen 1 1 20 stolittya 1 1 1 Programa Apollon 1 1 2 Luna 24 1 1 3 Klementina 1 1 4 Lunar Prospector 1 1 5 Kassini Gyujgens 1 2 21 stolittya 1 2 1 Deep Impact 1 2 2 Kaguya 1 2 3 Chan e 1 1 2 4 Chandrayan 1 1 2 5 Lunar Reconnaissance Orbiter 1 2 6 Rozplavni vklyuchennya v zrazkah Apollona 17 1 2 7 Stratosferna observatoriya infrachervonoyi astronomiyi 1 2 8 Lunar IceCube 1 2 9 PRIME 1 1 2 10 Lunar Trailblazer 1 2 11 Zond Chan e 5 2 Mozhlivij krugoobig vodi 2 1 Utvorennya 2 2 Zahoplennya 2 3 Transport 3 Ridka voda 4 Pravo vlasnosti 5 Div takozh 6 Primitki 7 PosilannyaIstoriya sposterezhen red 20 stolittya red Pro mozhlivist isnuvannya lodu na dni polyarnih misyachnih krateriv vpershe pripustili v 1961 roci doslidniki Kalifornijskogo tehnologichnogo institutu Kennet Uotson Bryus S Myurrej i Garrison Braun 19 Zemni radiolokacijni vimiryuvannya vikoristovuvalisya dlya viyavlennya oblastej yaki znahodyatsya v postijnij tini i otzhe mayut potencial dlya ukrittya misyachnogo lodu Ocinki zagalnoyi ploshi zatinenih pripolyarnih oblastej vid 87 5 gradusiv shiroti stanovlyat 1030 and 2550 km2 dlya pivnichnogo ta pivdennogo polyusiv vidpovidno 20 Podalshe komp yuterne modelyuvannya sho ohoplyuye dodatkovij relyef pokazalo sho v postijnij tini mozhe buti plosha do 14000 km2 21 Programa Apollon red Hocha slidi vodi buli viyavleni u zrazkah misyachnih porid zibranih astronavtami Apollona pripuskalosya sho ce rezultat zabrudnennya i bilshist misyachnoyi poverhni vvazhalosya povnistyu suhoyu 22 Odnak u 2008 roci doslidzhennya zrazkiv misyachnih porid viyavilo dokazi molekul vodi zahoplenih u vulkanichnih sklyanih kulkah 23 Pershi pryami dokazi nayavnosti vodyanoyi pari poblizu Misyacya buli otrimani v hodi eksperimentu Apollo 14 ALSEP Suprathermal Ion Detector Experiment SIDE 7 bereznya 1971 roku Mas spektrometr sposterigav seriyu spalahiv ioniv vodyanoyi pari na poverhni Misyacya poblizu miscya posadki Apollona 14 24 Luna 24 red U lyutomu 1978 roku radyanski vcheni M Ahmanova B Dementyev i M Markov z Institutu geohimiyi ta analitichnoyi himiyi imeni V I Vernadskogo opublikuvali stattyu v yakij stverdzhuvalosya sho voda viyavlena z dostatnoyu vpevnenistyu 8 9 Yihnye doslidzhennya pokazalo sho zrazki povernuti na Zemlyu radyanskim zondom Luna 24 u 1976 roci mistili blizko 0 1 vodi za masoyu yak vidno z infrachervonoyi absorbcijnoyi spektroskopiyi dovzhina hvili priblizno 3 mkm na rivni viyavlennya priblizno v 10 raziv vishe porogovogo znachennya 25 hocha Krotts zaznachaye sho avtori ne bazhali staviti svoyu reputaciyu na absolyutnu zayavu pro te sho zemnogo zabrudnennya vdalosya povnistyu uniknuti 26 Ce bulo b pershim pryamim vimiryuvannyam vmistu vodi na poverhni Misyacya hocha cej rezultat ne buv pidtverdzhenij inshimi doslidnikami 27 Klementina red nbsp Zvedene zobrazhennya pivdennoyi polyarnoyi oblasti Misyacya zroblene zondom NASA Klementina protyagom dvoh misyachnih dniv en Postijno zatineni dilyanki mozhut utrimuvati vodyanij lid Proponovanij dokaz nayavnosti vodyanogo lodu na Misyaci nadijshov u 1994 roci z zonda SShA Klementina U doslidzhenni vidomomu yak eksperiment z bistatichnim radarom en Klementina vikoristovuvala svij peredavach dlya peredachi radiohvil u temni oblasti pivdennogo polyusa Misyacya 28 Vidlunnya cih hvil buli viyavleni velikimi tarilchastimi antenami merezhi dalnogo kosmichnogo zv yazku na Zemli Velichina ta polyarizaciya cih vidlun vidpovidali krizhanij a ne skelyastij poverhni ale rezultati buli neperekonlivimi 29 i yih znachennya bulo postavlene pid sumniv 30 31 Lunar Prospector red Zond Lunar Prospector zapushenij u 1998 roci vikoristovuvav nejtronnij spektrometr dlya vimiryuvannya kilkosti vodnyu v misyachnomu regoliti poblizu polyarnih regioniv 32 Vin zmig viznachiti nadlishok ta roztashuvannya vodnyu z tochnistyu do 50 chastin na miljon i viyaviv pidvishenu koncentraciyu vodnyu na pivnichnomu ta pivdennomu polyusah Misyacya Ce bulo interpretovano yak vkazivka na znachnu kilkist vodyanogo lodu zahoplenogo v postijno zatinenih kraterah 33 ale takozh moglo buti pov yazano z nayavnistyu gidroksilnogo radikalu OH himichno zv yazanogo z mineralami Gruntuyuchis na danih Clementine ta Lunar Prospector vcheni NASA pidrahuvali sho za nayavnosti poverhnevogo vodnogo lodu jogo zagalna kilkist mozhe syagati 1 3 kubichnih kilometriv 34 35 U lipni 1999 roku naprikinci svoyeyi misiyi zond Lunar Prospector navmisno vrizavsya v krater Shumejker poblizu pivdennogo polyusa Misyacya v nadiyi sho bude vivilneno pomitnu kilkist vodi Odnak spektroskopichni sposterezhennya z nazemnih teleskopiv ne viyavili spektralnogo pidpisu vodi 36 Kassini Gyujgens red Bilshe pidozr shodo isnuvannya vodi na Misyaci buli porodzheni neperekonlivimi danimi otrimanimi misiyeyu Kassini Gyujgens 37 yaka proletila povz Misyac u 1999 roci 38 21 stolittya red Deep Impact red U 2005 roci sposterezhennya za Misyacem vikonani kosmichnim aparatom Deep Impact dali neperekonlivi spektroskopichni dani yaki svidchat pro nayavnist vodi na Misyaci U 2006 roci sposterezhennya za dopomogoyu planetarnogo radara Aresibo pokazali sho deyaki z pokaziv pripolyarnih radariv aparata Klementina yaki ranishe vvazhalisya oznakami lodu natomist mozhut buti pov yazani z skelyami vikinutimi z molodih krateriv Yaksho ce pravda to nejtronni rezultati Lunar Prospector buli v osnovnomu vid vodnyu v formah vidminnih vid lodu takih yak zahopleni molekuli vodnyu abo organichni rechovini Tim ne mensh interpretaciya danih Aresibo ne viklyuchaye mozhlivosti isnuvannya vodyanogo lodu v postijno zatinenih kraterah 39 U chervni 2009 roku kosmichnij korabel NASA Deep Impact yakij teper otrimav nazvu EPOXI zdijsniv dodatkovi pidtverdzhuvalni vimiryuvannya zv yazanogo vodnyu pid chas inshogo oblotu Misyacya 22 Kaguya red U ramkah svoyeyi programi kartografuvannya Misyacya yaponskij zond Kaguya zapushenij u veresni 2007 roku dlya 19 misyachnoyi misiyi zdijsniv gamma spektrometrichni sposterezhennya z orbiti yakimi mozhna vimiryuvati kilkist riznih elementiv na poverhni Misyacya 40 Datchiki zobrazhennya visokoyi rozdilnoyi zdatnosti yaponskogo zonda Kaguya ne zmogli viyaviti zhodnih oznak vodyanogo lodu v postijno zatinenih kraterah navkolo pivdennogo polyusa Misyacya 41 i vin zavershiv svoyu misiyu vrizavshis u poverhnyu Misyacya shob vivchiti vmist shlejfu vikidu 42 Rezultati vimiryuvan otrimani Kaguya poyasnyuvalis yak prisutnistyu chistogo anortozitu 43 tak i sublimaciyeyu letkih rechovin imovirno lodu z glibini 10 20 sm vid poverhni 44 Chan e 1 red Orbitalnij aparat Kitajskoyi Narodnoyi Respubliki Chan e 1 zapushenij u zhovtni 2007 roku zrobiv pershi detalni fotografiyi deyakih polyarnih oblastej de jmovirno znajdena voda u formi krigi 45 Rezultati obrobki danih z mikrohvilovogo radiometra pokazali mozhlivist isnuvannya 2 8 vodyanogo lodu v regoliti kratera Kabeo 46 Takozh pokazano isnuvannya ioniv H 2 displaystyle ce H 2 nbsp u ekzosferi Misyacya 47 Chandrayan 1 red nbsp Pryami dokazi nayavnosti misyachnoyi vodi v misyachnij atmosferi otrimani za dopomogoyu visotnogo profilyu Chandrayan 1 CHACE nbsp Zobrazhennya Misyacya zroblene kartografom z mineralogiyi Misyacya Sinij kolir pokazuye spektralnij harakter gidroksidu zelenij pokazuye yaskravist poverhni vimiryanu vidbitim infrachervonim viprominyuvannyam vid Soncya a chervonij pokazuye mineral pid nazvoyu piroksen Indijskij kosmichnij korabel Chandrayan 1 vipustiv zond Moon Impact Probe MIP yakij zitknuvsya z kraterom Sheklton na pivdennomu polyusi Misyacya o 20 31 14 listopada 2008 roku vivilnivshi pidpoverhnevi ulamki yaki proanalizovani na nayavnist vodyanogo lodu Pid chas 25 hvilinnogo spusku Chandra s Altitudinal Composition Explorer CHACE zafiksuvav dokazi nayavnosti vodi v 650 mas spektrah zibranih u tonkij atmosferi nad poverhneyu Misyacya i liniyah poglinannya gidroksilu u vidbitomu sonyachnomu svitli 48 49 25 veresnya 2009 roku NASA ogolosilo sho dani nadislani z jogo M3 pidtverdili isnuvannya vodnyu na velikih dilyankah poverhni Misyacya 37 hocha i v nizkih koncentraciyah i u formi gidroksilnoyi grupi OH himichno zv yazanoyi iz gruntom 12 50 51 Ce pidtverdzhuye poperedni dani spektrometriv na bortu zondiv Deep Impact i Cassini 22 52 53 Na Misyaci cya osoblivist rozglyadayetsya yak shiroko rozpovsyudzhene poglinannya yake viyavlyayetsya najsilnishim u bilsh nizkih visokih shirotah i v kilkoh svizhih kraterah u polovomu shpati Zagalna vidsutnist korelyaciyi ciyeyi osoblivosti danih M3 vid sonyachnogo osvitlenni z danimi nejtronnogo spektrometra shodo nadlishku N svidchit pro te sho utvorennya ta utrimannya OH i H2O ye potochnim procesom na poverhni 54 Hocha rezultati M3 uzgodzhuyutsya z neshodavnimi visnovkami inshih priladiv NASA na bortu Chandrayan 1 viyavleni molekuli vodi v polyarnih regionah Misyacya ne uzgodzhuyutsya z nayavnistyu tovstih vidkladen majzhe chistogo vodyanogo lodu v mezhah kilkoh metriv vid poverhni Misyacya ale ce ne viklyuchaye nayavnosti nevelikih lt 10 sm okremih shmatkiv lodu zmishanih z regolitom 55 Dodatkovij analiz za dopomogoyu M3 opublikovanij u 2018 roci nadav bilsh pryami dokazi nayavnosti vodyanogo lodu bilya poverhni v mezhah 20 shiroti vid oboh polyusiv Na dodatok do sposterezhen za vidbitim svitlom vid poverhni vcheni vikoristovuvali mozhlivosti M3 z doslidzhennya poglinannya u blizhnomu infrachervonomu diapazoni v postijno zatinenih oblastyah polyarnih regioniv shob znajti spektri poglinannya yaki vidpovidayut lodu U rajoni pivnichnogo polyusa vodyanij lid rozkidanij u viglyadi plyam todi yak navkolo pivdennogo polyusa vin bilshe zoseredzhenij v odnomu tili Oskilki ci polyarni oblasti ne zaznayut visokih temperatur vishe 373 Kelviniv bulo pripusheno sho polyusi diyut yak holodni pastki de na Misyaci zbirayetsya viparuvana voda 56 57 U berezni 2010 roku bulo povidomleno sho Mini SAR en na bortu Chandrayan 1 viyaviv ponad 40 postijno zatemnenih krateriv poblizu pivnichnogo polyusa Misyacya yaki za gipotezoyu mistyat blizko 600 miljoniv metrichnih tonn vodyanogo lodu 58 59 Visoke vidnoshennya krugovoyi polyarizaciyi radara ne ye odnoznachnoyu diagnostikoyu nerivnostej abo lodu naukova grupa povinna vzyati do uvagi seredovishe poyavi visokogo vidnoshennya krugovoyi polyarizaciyi signalu shob interpretuvati jogo prichinu Lid maye buti vidnosno chistim i tovshinoyu prinajmni paru metriv shob dati takij pidpis 59 Rozrahunkova kilkist potencijno nayavnogo vodyanogo lodu porivnyanna z kilkistyu ocinenoyu za danimi nejtroniv poperednoyi misiyi Lunar Prospector 59 Lunar Reconnaissance Orbiter red source source source source source source source Video stvorene na osnovi zobrazhen Lunar Reconnaissance Orbiter na yakih pokazano dilyanki postijnoyi tini Realistichni tini rozvivayutsya protyagom kilkoh misyaciv 9 zhovtnya 2009 r verhnij stupin raketi nosiya Atlas V buv spryamovanij na zitknennya z kraterom Kabeo ob 11 31 UTC a potim kosmichnij korabel Lunar Crater Observation and Sensing Satellite LCROSS proletiv cherez shlejf vikidu 60 LCROSS viyaviv znachnu kilkist gidroksilnih grup u materiali vikinutomu z pivdennogo polyarnogo kratera udarnim zondom 61 62 ce mozhna vidnesti do vodomistkih materialiv togo sho viglyadaye yak majzhe chistij kristalichnij vodnij lid zmishanij z regolitom 58 62 63 Naspravdi bulo viyavleno himichnu grupu gidroksilu OH yaka jmovirno pohodit vid vodi 6 ale takozh mozhe buti gidratami yaki ye neorganichnimi solyami sho mistyat himichno zv yazani molekuli vodi Priroda koncentraciya ta rozpodil cogo materialu potrebuyut podalshogo analizu 62 Golovnij naukovij spivrobitnik misiyi Entoni Kolapret zayaviv sho vikid shozhe vklyuchaye nizku dribnozernistih chastinok majzhe chistogo kristalichnogo vodyanogo lodu 58 Piznishij ostatochnij analiz pokazav sho koncentraciya vodi stanovit 5 6 2 9 masi 64 Instrument Mini RF en na bortu orbitalnogo aparatu Lunar Reconnaissance Orbiter LRO sposterigav shlejf ulamkiv vid udaru orbitalnogo aparatu LCROSS i bulo zrobleno visnovok sho vodyanij lid maye buti u formi nevelikih lt 10 sm okremih shmatochkiv rozpodilenih po vsomu regolitu abo u viglyadi tonkogo krihanogo pokrittya na zernah 65 Ce u poyednanni z monostatichnimi radiolokacijnimi sposterezhennyami svidchit pro te sho vodyanij lid u postijno zatinenih oblastyah misyachnih polyarnih krateriv navryad chi prisutnij u formi tovstih vidkladen chistogo lodu 65 66 67 Dani otrimani priladom Lunar Exploration Neutron Detector LEND na bortu LRO pokazuyut kilka oblastej de potik epiteplovih nejtroniv en vid poverhni pridushenij sho vkazuye na pidvishenij vmist vodnyu 68 Podalshij analiz danih LEND svidchit pro te sho vmist vodi v polyarnih regionah bezposeredno ne viznachayetsya umovami osvitlenosti poverhni oskilki osvitleni ta zatineni regioni ne viyavlyayut istotnoyi riznici v ocinyuvanomu vmisti vodi 69 Vidpovidno do sposterezhen lishe cim instrumentom postijna nizka temperatura poverhni holodnih pastok ne ye neobhidnoyu ta dostatnoyu umovoyu dlya zbilshennya vmistu vodi v regoliti 69 Doslidzhennya kratera Sheklton na pivdennomu polyusi Misyacya lazernim visotomirom LRO pokazuye sho do 22 poverhni cogo kratera vkrito lodom 70 Rozplavni vklyuchennya v zrazkah Apollona 17 red U travni 2011 roku Erik Gori ta in povidomili 71 pro 615 1410 ppm vodi v rozplavnih vklyuchennyah u misyachnomu zrazku 74220 vidomomu yak pomaranchevij sklyanij grunt z visokim vmistom titanu vulkanichnogo pohodzhennya zibranomu pid chas misiyi Apollon 17 u 1972 roci Cyu koncentraciyu mozhna porivnyati z koncentraciyeyu u magmi u verhnij mantiyi Zemli Nezvazhayuchi na znachnij selenologichnij interes ce ogoloshennya malo vtishit potencijnih kolonistiv Misyacya Zrazok vinik za bagato kilometriv pid poverhneyu i dostup do vklyuchen nastilki vazhkij sho znadobilosya 39 rokiv shob viyaviti yih za dopomogoyu najsuchasnishogo instrumentu ionnogo mikrozondu 71 Stratosferna observatoriya infrachervonoyi astronomiyi red U zhovtni 2020 roku astronomi povidomili pro viyavlennya molekulyarnoyi vodi na osvitlenij soncem poverhni Misyacya kilkoma nezalezhnimi naukovimi grupami vklyuchayuchi Stratosfernu observatoriyu infrachervonoyi astronomiyi SOFIA 72 73 Rozrahunkova kilkist stanovit priblizno vid 100 do 400 chastin na miljon z rozpodilom u nevelikomu diapazoni shirot sho jmovirno ye rezultatom miscevoyi geologiyi a ne globalnogo yavisha Bulo pripusheno sho viyavlena voda zberigayetsya v shmatkah skla abo v pustotah mizh zernami zahishenoyu vid suvorogo misyachnogo seredovisha sho dozvolyaye vodi zalishatisya na poverhni Misyacya 74 Vikoristovuyuchi dani Lunar Reconnaissance Orbiter bulo pokazano sho okrim velikih postijno zatinenih oblastej u polyarnih oblastyah Misyacya isnuye bagato nekartovanih holodnih pastok yaki znachno zbilshuyut oblasti de mozhe nakopichuvatisya lid Vstanovleno sho priblizno 10 20 postijnoyi ploshi holodnoyi pastki dlya vodi mistitsya v mikroholodnih pastkah yaki znahodyatsya v tini v masshtabah vid 1 km do 1 sm na zagalnij ploshi 40 000 km2 priblizno 60 yaka znahoditsya na pivdni i bilshist holodnih pastok dlya vodyanogo lodu znahodyatsya na shirotah gt 80 cherez postijnu tin 75 26 zhovtnya 2020 roku u statti opublikovanij v Nature Astronomy komanda vchenih vikoristovuvala SOFIA infrachervonij teleskop vstanovlenij useredini reaktivnogo litaka 747 shob provesti sposterezhennya yaki pokazali odnoznachni dokazi nayavnosti vodi v tih chastinah Misyacya de svitit Sonce Ce vidkrittya pokazuye sho voda mozhe buti rozpodilena po misyachnij poverhni a ne obmezhuvatisya holodnimi zatinenimi miscyami poblizu misyachnih polyusiv skazav Pol Gerc en direktor viddilu astrofiziki NASA 76 Lunar IceCube red Lunar IceCube en ce CubeSat rozmirom 6U shist odinic yakij mav ociniti kilkist i sklad misyachnogo lodu za dopomogoyu spektrometra infrachervonogo zobrazhennya rozroblenogo Centrom kosmichnih polotiv Goddarda NASA 77 Kosmichnij korabel uspishno viddilivsya vid Artemida 1 17 listopada 2022 roku ale nezabarom pislya cogo ne zmig vijti na zv yazok 78 i vvazhayetsya vtrachenim PRIME 1 red Specialnij lokalnij eksperiment NASA pid nazvoyu PRIME 1 en planuyetsya visaditi na Misyac ne ranishe listopada 2023 roku poblizu kratera Sheklton na Pivdennomu polyusi Misyacya Misiya bude buriti u poshukah vodyanogo lodu 79 80 Lunar Trailblazer red Suputnik Lunar Trailblazer en zaplanovanij na zapusk u 2025 roci ye chastinoyu programi NASA Small Innovative Missions for Planetary Exploration SIMPLEx 81 Suputnik osnasheno dvoma instrumentami spektrometrom visokoyi rozdilnoyi zdatnosti yakij viyavlyatime ta kartografuye rizni formi vodi i termokartografom Osnovni cili misiyi polyagayut u tomu shob oharakterizuvati formu misyachnoyi vodi yiyi kilkist i misce viznachiti yak misyachni letki rechovini zminyuyutsya ta peremishuyutsya z chasom vimiryati skilki i yaka forma vodi isnuye v postijno zatinenih oblastyah Misyacya a takozh ociniti yak vidminnosti u vidbivnij zdatnosti ta temperaturi misyachnih poverhon vplivayut na koncentraciyu misyachnoyi vodi 82 Zond Chan e 5 red Doslidzhennya opublikovane v zhurnali Nature Geoscience u kvitni 2023 roku pokazalo sho triljoni funtiv vodi mozhut buti rozkidani po vsomu Misyacyu potrapivshi v krihitni sklyani kulki yaki mogli utvoritisya koli asteroyidi ztikalisya z misyachnoyu poverhneyu Doslidzhennya proveli kitajski vcheni yaki proanalizuvali pershi zrazki misyachnogo gruntu povernuti na Zemlyu z 1970 h rokiv Doslidniki viyavili sho sklyani kulki mistyat znachnu kilkist vodi sho vkazuye na novij mehanizm zberigannya vodi na poverhni Misyacya Otrimani dani mozhut buti korisnimi dlya majbutnih misij na Misyac shlyahom viyavlennya potencijnih resursiv yaki mozhna peretvoriti na pitnu vodu abo raketne palivo 83 84 Mozhlivij krugoobig vodi red Utvorennya red Misyachna voda maye dva potencijnih dzherela vodonosni kometi ta inshi tila sho stikayutsya z Misyacem i utvorennya na misci Isnuye teoriya sho ostannye mozhe statisya koli ioni vodnyu protoni u sonyachnomu vitri himichno poyednuyutsya z atomami kisnyu prisutnimi v misyachnih mineralah oksidah silikatah tosho utvoryuyuchi neveliku kilkist vodi zahoplenoyi kristalami mineraliv reshitki abo yak gidroksilni grupi potencijni poperedniki vodi 85 Cyu vodu mineraliv ne slid plutati z vodyanim lodom Gidroksilni poverhnevi grupi X OH utvoreni reakciyeyu protoniv H z atomami kisnyu dostupnimi na poverhni oksidu X O mozhut buti dali peretvoreni v molekuli vodi H2O yaki budut adsorbovani na poverhni oksidnogo mineralu Balans mas peredbachuvanogo himichnogo peregrupuvannya na poverhni oksidu mozhna shematichno zapisati tak 2 X OH X O X H 2 O abo 2 X OH X O X H 2 O de X yavlyaye soboyu poverhnyu oksidu 86 Dlya utvorennya odniyeyi molekuli vodi neobhidna nayavnist dvoh susidnih gidroksilnih grup abo kaskad poslidovnih reakcij odnogo atoma kisnyu z dvoma protonami 86 Zahoplennya red Sonyachne viprominyuvannya zazvichaj vinosit vilnu vodu abo vodyanij lid z misyachnoyi poverhni rozsheplyuyuchi yiyi na voden i kisen yaki potim vihodyat u kosmos Odnak cherez duzhe nevelikij osovij nahil osi obertannya Misyacya do ploshini ekliptiki 1 5 deyaki gliboki krateri poblizu polyusiv nikoli ne otrimuyut sonyachnogo svitla i postijno zatineni div napriklad krater Sheklton i krater Uipl en Temperatura v cih regionah nikoli ne pidnimayetsya vishe priblizno 100 K blizko 170 Celsiya 87 i bud yaka voda yaka zreshtoyu potrapila v ci krateri mogla zalishatisya zamerzloyu ta stabilnoyu protyagom nadzvichajno trivalih periodiv chasu mozhlivo milyardiv rokiv zalezhno vid stabilnosti oriyentaciyi osi Misyacya 23 29 Hocha vidkladennya lodu mozhut buti tovstimi voni shvidshe za vse zmishani z regolitom mozhlivo u viglyadi sharuvatih form 88 Transport red Hocha vilna voda ne mozhe zberigatisya v osvitlenih oblastyah Misyacya bud yaka taka voda sho utvoryuyetsya tam pid diyeyu sonyachnogo vitru na misyachni minerali mozhe migruvati do postijno holodnih polyarnih oblastej i nakopichuvatisya tam u viglyadi lodu mozhlivo na dodatok do bud yakogo lodu prinesenogo udarami komet 22 Gipotetichnij mehanizm transportuvannya zahoplennya vodi yaksho takij ye zalishayetsya nevidomim dijsno misyachni poverhni yaki bezposeredno piddayutsya vplivu sonyachnogo vitru de vidbuvayetsya utvorennya vodi zanadto garyachi shob dozvoliti zahoplennya kondensaciyeyu vodi i sonyachne viprominyuvannya takozh postijno rozkladaye vodu todi yak utvorennya vodi u neosvitlenih abo nabagato menshe osvitlenih dilyankah yaki ne piddayutsya pryamomu vplivu Soncya vidsutnye abo znachno menshe Vrahovuyuchi ochikuvanij korotkij chas zhittya molekul vodi v osvitlenih regionah korotka vidstan transportuvannya v principi zbilshit jmovirnist zahoplennya Inshimi slovami molekuli vodi yaki utvoryuyutsya poblizu holodnogo temnogo polyarnogo kratera povinni mati najvishu jmovirnist vizhiti j potrapiti v pastku 86 89 Ridka voda red nbsp nbsp Temperatura i tisk vseredini Misyacya zrostayut iz glibinoyu 4 3 5 milyarda rokiv tomu na poverhni Misyacya mogla buti dostatnya kilkist atmosferi ta ridkoyi vodi 90 91 Tepli regioni z pidvishenim tiskom u nadrah Misyacya vse she mozhut mistiti ridku vodu 92 Nayavnist velikoyi kilkosti vodi na Misyaci bula b vazhlivim faktorom dlya togo shob zrobiti prozhivannya na Misyaci en ekonomichno efektivnim oskilki transportuvannya vodi abo vodnyu ta kisnyu iz Zemli bulo b nepomirno dorogim Yaksho majbutni doslidzhennya viyavlyat sho kilkist bude osoblivo velikoyu vodyanij lid mozhna bude vidobuvati dlya otrimannya ridkoyi vodi dlya pittya ta rozmnozhennya roslin a takozh vodu mozhna bude rozdiliti na voden i kisen za dopomogoyu elektrostancij obladnanih sonyachnimi panelyami abo yadernogo generatora zabezpechennya kisnyu dlya dihannya a takozh komponentiv raketnogo paliva Vodnevij komponent vodyanogo lodu takozh mozhna vikoristovuvati dlya viluchennya oksidiv iz misyachnogo gruntu ta zboru she bilshoyi kilkosti kisnyu Analiz misyachnogo lodu takozh nadast naukovu informaciyu pro istoriyu udariv Misyacya ta veliku kilkist komet i asteroyidiv u rannij Vnutrishnij Sonyachnij sistemi Pravo vlasnosti red Gipotetichne vidkrittya pridatnoyi dlya vikoristannya kilkosti vodi na Misyaci mozhe viklikati pravovi pitannya pro te komu nalezhit voda i hto maye pravo yiyi vikoristovuvati Dogovir Organizaciyi Ob yednanih Nacij z kosmosu ne zaboronyaye vikoristannya misyachnih resursiv ale zapobigaye privlasnennyu Misyacya okremimi naciyami i yak pravilo tlumachitsya yak zaborona krayinam pretenduvati na pravo vlasnosti na misyachni resursi 93 94 Dogovir pro Misyac konkretno peredbachaye sho ekspluataciya misyachnih resursiv regulyuyetsya mizhnarodnim rezhimom ale cej dogovir buv ratifikovanij lishe kilkoma krayinami i v pershu chergu timi yaki ne mayut mozhlivosti samostijnogo kosmichnogo polotu 95 Lyuksemburg 96 i SShA 97 98 99 nadali svoyim gromadyanam pravo na vidobutok i volodinnya kosmichnimi resursami vklyuchayuchi resursi Misyacya Prezident SShA Donald Tramp pryamo zayaviv pro ce u svoyemu rozporyadzhenni vid 6 kvitnya 2020 r 99 Div takozh red Vikoristannya resursiv in situ Misyachni resursi en Shackleton Energy Company Voda na Marsi Misiyi sho skladayut kartu misyachnoyi vodi Chandrayan 1 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