{"id":434,"date":"2024-06-21T11:18:56","date_gmt":"2024-06-21T03:18:56","guid":{"rendered":"https:\/\/electric-bicycles.net\/?p=434"},"modified":"2024-06-21T11:18:57","modified_gmt":"2024-06-21T03:18:57","slug":"lithium-battery-fires","status":"publish","type":"post","link":"https:\/\/electric-bicycles.net\/lv\/litija-akumulatoru-ugunsgreki\/","title":{"rendered":"Litija akumulatoru ugunsgr\u0113ki"},"content":{"rendered":"<p>Litija baterijas ir atrodamas daudz\u0101s pla\u0161a pat\u0113ri\u0146a ier\u012bc\u0113s, \u013caujot ra\u017eot\u0101jiem slaidos izstr\u0101d\u0101jumos ievietot vair\u0101ku stundu akumulatora darb\u012bbas laiku. Ta\u010du t\u0101s rada ar\u012b ugunsb\u012bstam\u012bbu, ja tiek boj\u0101tas vai nepareizi lietotas.<\/p>\n<p>Litija bateriju ugunsgr\u0113ki ugunsdz\u0113s\u0113jiem var b\u016bt sare\u017e\u0123\u012bti un b\u012bstami, t\u0101p\u0113c Ugunsdz\u0113s\u012bbas dienesta departaments ir izdevis kontrolsarakstu, lai pal\u012bdz\u0113tu ugunsgr\u0113ku izmekl\u0113t\u0101jiem.<\/p>\n<h2>\u012assavienojumi<\/h2>\n<p>Viens no galvenajiem litija akumulatoru ugunsgr\u0113ku c\u0113lo\u0146iem ir \u012bssavienojums. \u012assavienojums rodas, kad elektrisk\u0101 str\u0101va pa akumulatoru iet nepl\u0101noti \u012bs\u0101ku ce\u013cu, nek\u0101 tai vajadz\u0113tu iet, k\u0101 rezult\u0101t\u0101 rodas ener\u0123ijas p\u0101rpalikums, kas p\u0113c tam p\u0101rpilda baterijas \u0161\u016bnas, radot met\u0101la jonus, kuri galu gal\u0101 p\u0101rsniedz iek\u0161\u0113jo \u0161\u016bnu ietilp\u012bbu un izpl\u016bst apk\u0101rt\u0113j\u0101 vid\u0113, radot karstumu un uzliesmojo\u0161as g\u0101zes, kas izraisa ugunsgr\u0113ku.<\/p>\n<p>V\u0113l viens no galvenajiem litija akumulatoru ugunsgr\u0113ku iemesliem ir termiskais izs\u012bk\u0161ana. Tas notiek, kad akumulatora rad\u012btais siltums p\u0101rv\u0113r\u0161as \u0137\u0113des reakcij\u0101s, kas noved pie t\u0101 spr\u0101dziena, parasti mikroskopisk\u0101m met\u0101la da\u013ci\u0146\u0101m saskaroties ar da\u017e\u0101d\u0101m deta\u013c\u0101m un radot siltumu, kas izraisa p\u0101rkar\u0161anu un uzliesmojo\u0161u g\u0101zu izdal\u012b\u0161anos no akumulatora elementiem.<\/p>\n<p>Litija akumulatoru uzl\u0101de ietver jonu p\u0101rvieto\u0161anu no katoda uz anodu caur elektrol\u012btu. \u0160\u012b kust\u012bba ir nepiecie\u0161ama, lai akumulators pareizi darbotos, ta\u010du t\u0101s p\u0101rtrauk\u0161ana var b\u016bt b\u012bstama; t\u0101p\u0113c ir \u013coti svar\u012bgi, lai akumulatori tiktu uzl\u0101d\u0113ti izol\u0113t\u0101 telp\u0101, prom no potenci\u0101liem karstuma avotiem.<\/p>\n<p>Sk\u0101bek\u013ca izdal\u012b\u0161an\u0101s ir ar\u012b viens no galvenajiem litija akumulatoru ugunsgr\u0113ku c\u0113lo\u0146iem, jo uzkarstie anodi un katodi rada sk\u0101bek\u013ca g\u0101zi, kas var izdal\u012bties, nejau\u0161i caurdurjot akumulatora korpusu vai \u0137\u012bmiski rea\u0123\u0113jot, k\u0101 rezult\u0101t\u0101 \u0161\u016bn\u0101s notiek iek\u0161\u0113ji \u012bssavienojumi.<\/p>\n<p>Litija akumulatoru ugunsgr\u0113kus var b\u016bt gr\u016bti nodz\u0113st, t\u0101p\u0113c vislab\u0101k ir \u013caut tiem degt dro\u0161\u0101 viet\u0101. \u016adens vien nedarbosies, jo tas uzkurina liesmas, vienlaikus radot toksisku \u016bde\u0146ra\u017ea g\u0101zi; t\u0101 viet\u0101 b\u016btu pr\u0101t\u012bg\u0101k izmantot putu ugunsdz\u0113\u0161amos apar\u0101tus vai saus\u0101s \u0137\u012bmisk\u0101s vielas ABC, piem\u0113ram, vara pulveri, sodas pulveri vai graf\u012btu k\u0101 \u0161\u0137\u012bdumus.<\/p>\n<h2>Siltuma izs\u012bk\u0161ana<\/h2>\n<p>Litija akumulatori ir paredz\u0113ti darbam noteikt\u0101 temperat\u016bras diapazon\u0101. Tom\u0113r, ja tie p\u0101rsniedz \u0161o robe\u017eu, var s\u0101kties virkne reakciju, kas paz\u012bstamas k\u0101 termiskais b\u0113gums, kas rada uzliesmojo\u0161as g\u0101zes un ugunsgr\u0113ku - tas ir viens no iemesliem, k\u0101p\u0113c litija akumulatoru ugunsgr\u0113ki ir b\u0113d\u012bgi slaveni ar to, ka tos ir gr\u016bti nodz\u0113st; \u016bdens b\u0101zes ugunsdz\u0113\u0161amie apar\u0101ti kalpo tikai dzes\u0113\u0161anai, bet litija jonu g\u0113la ugunsdz\u0113\u0161amie apar\u0101ti ir j\u0101izmanto nekav\u0113joties, tikl\u012bdz akumulators atkal uzliesmo, cit\u0101di tie var atkal uzliesmot p\u0113c dien\u0101m vai stund\u0101m.<\/p>\n<p>Termisks sabrukums litija akumulatoriem var rasties da\u017e\u0101du iemeslu d\u0113\u013c, tostarp iek\u0161\u0113ja \u012bssavienojuma, litija p\u0101rkl\u0101juma (met\u0101liska litija veido\u0161an\u0101s uz anoda virsmas akumulatora element\u0101), meh\u0101nisku boj\u0101jumu, piem\u0113ram, caurdur\u0161anas vai nome\u0161anas, p\u0101rl\u0101d\u0113\u0161anas, p\u0101rm\u0113r\u012bgas izl\u0101des vai p\u0101rm\u0113r\u012bga \u0101r\u0113ja siltuma avota d\u0113\u013c; retos gad\u012bjumos litija jonu akumulatoram var s\u0101kties termiskais sabrukums bez redzama iemesla - t\u0101 saucamais aizkav\u0113tais aizdeg\u0161an\u0101s termiskais sabrukums.<\/p>\n<p>Termisku izs\u012bk\u0161anu var nov\u0113rst, samazinot akumulatora temperat\u016bru, darbinot to noteiktaj\u0101 temperat\u016bras diapazon\u0101 un izmantojot dro\u0161as uzl\u0101des proced\u016bras. Turkl\u0101t akumulatori j\u0101tur t\u0101l\u0101k no karstuma avotiem un j\u0101atvieno, kad tie netiek izmantoti.<\/p>\n<p>Jaun\u0101 p\u0113t\u012bjum\u0101 p\u0113tnieki ir atkl\u0101ju\u0161i, kas izraisa termisku nopl\u016bdi litija akumulatoros, p\u0113tot da\u017e\u0101dus to veicino\u0161us faktorus, piem\u0113ram, akumulatora korpusa materi\u0101la izv\u0113li un elementu lielumu; \u0161aj\u0101 p\u0113tniec\u012bbas projekt\u0101 tika iek\u013cauti ar\u012b statistiskie regresijas mode\u013ci ener\u0123ijas atbr\u012bvo\u0161anai termiskaj\u0101 nopl\u016bd\u0113, sniedzot ra\u017eot\u0101jiem, elektromobi\u013cu ra\u017eot\u0101jiem un dro\u0161\u012bbas iest\u0101d\u0113m v\u0113rt\u012bgu ieskatu par to, k\u0101 nov\u0113rst \u0161\u0101du nopl\u016bdi n\u0101kotnes akumulatoros.<\/p>\n<h2>Sk\u0101bek\u013ca ra\u017eo\u0161ana<\/h2>\n<p>Termisks sabrukums notiek, kad akumulatora elementos notiek iek\u0161\u0113jas \u0137\u012bmiskas reakcijas, nevis elektro\u0137\u012bmiskas reakcijas, un rodas karstums un toksiskas, uzliesmojo\u0161as g\u0101zes. Temperat\u016brai paaugstinoties un radot vair\u0101k karstuma, eksotermisk\u0101s reakcijas pa\u0101trin\u0101s v\u0113l vair\u0101k un rada v\u0113l vair\u0101k g\u0101zu; galu gal\u0101 \u0161is mais\u012bjums izpl\u016bst balt\u0101 toksisku, viegli uzliesmojo\u0161u g\u0101zu tvaiku m\u0101kon\u012b, kas sajaucas ar sk\u0101bekli un aizdegas tuvum\u0101 eso\u0161\u0101s baterijas, potenci\u0101li izraisot \u0137\u0113des reakciju, kas izplat\u0101s un izn\u012bcina visas litija baterijas gaisa ku\u0123\u012b, transportl\u012bdzekl\u012b vai ier\u012bc\u0113.<\/p>\n<p>Litija akumulatoru ugunsgr\u0113ki var b\u016bt reti sastopami, tom\u0113r tie var rad\u012bt iev\u0113rojamus trauc\u0113jumus un b\u016bt gr\u016bti p\u0101rvald\u0101mi. Viena no \u0161o ugunsgr\u0113ku dz\u0113\u0161anas metod\u0113m ir dzes\u0113\u0161anas l\u012bdzek\u013cu izmanto\u0161ana \u0161\u0137idr\u0101 vai ciet\u0101 veid\u0101, tostarp pulverveida graf\u012bta, kas pie noteiktas temperat\u016bras k\u016bst, veidojot necaurlaid\u012bgu segu virs ugunsgr\u0113ka; savuk\u0101rt \u0161\u0137idrie dzes\u0113\u0161anas l\u012bdzek\u013ci ietver \u016bdeni, k\u0101 ar\u012b in\u017eenierijas izstr\u0101d\u0101tus nereakt\u012bvus \u0161\u0137idrumus, piem\u0113ram, 3M Novec l\u012bniju, kas satur potenci\u0101li b\u012bstamas PFAS \u0137\u012bmisk\u0101s vielas, kuras apdraud cilv\u0113ku vesel\u012bbu.<\/p>\n<p>Kad s\u0101kas akumulatora ugunsgr\u0113ks, t\u0101 deg\u0161anas \u0101trums ir atkar\u012bgs gan no pat\u0113r\u0113t\u0101 sk\u0101bek\u013ca, gan no siltuma, kas rodas no iek\u0161\u0113j\u0101 oglek\u013ca monoks\u012bda (CO). CO korekcija sk\u0101bek\u013ca pat\u0113ri\u0146a kalorimetrij\u0101 nov\u0113r\u0161 \u0161o efektu, bet var rad\u012bt sistem\u0101tiskas k\u013c\u016bdas l\u012bdz pat 10%; interpret\u0113jot bateriju ugunsdro\u0161\u012bbas testu rezult\u0101tus, ir svar\u012bgi \u0146emt v\u0113r\u0101 \u0161\u012bs k\u013c\u016bdas; tom\u0113r t\u0101s parasti kompens\u0113 visp\u0101r\u0113j\u0101s sk\u0101bek\u013ca pat\u0113ri\u0146a kalorimetrijas nenoteikt\u012bbas un pie\u0146\u0113mumi par bateriju g\u0101zu E-faktoru; t\u0101p\u0113c bateriju izdal\u012btais kop\u0113jais siltuma daudzums var b\u016bt nov\u0113rt\u0113ts par aptuveni 2 kJ\/Wh par zemu.<\/p>\n<h2>P\u0101rm\u0113r\u012bgs karstums<\/h2>\n<p>Litija bateriju ugunsgr\u0113ki var b\u016bt intens\u012bvi un gr\u016bti dz\u0113\u0161ami, un to rezult\u0101t\u0101 var rasties iev\u0113rojami materi\u0101lie zaud\u0113jumi, k\u0101 ar\u012b izdal\u012bties toksiskas g\u0101zes, kas nopietni apdraud cilv\u0113ku vesel\u012bbu. T\u0101p\u0113c ir \u013coti svar\u012bgi, lai litija bateriju ugunsgr\u0113ki darba viet\u0101s tiktu nov\u0113rsti p\u0113c iesp\u0113jas \u0101tr\u0101k.<\/p>\n<p>Pirmais solis, lai nov\u0113rstu akumulatoru ugunsgr\u0113kus, ir atpaz\u012bt br\u012bdin\u0101juma paz\u012bmes. T\u0101s ietver neparastu karstumu, troksni, smar\u017eu vai piet\u016bkumu, kas var liecin\u0101t par tuvojo\u0161os termisko sabrukumu vai \u012bssavienojumu, un, lai nov\u0113rstu ugunsgr\u0113ku, nekav\u0113joties j\u0101veic pas\u0101kumi.<\/p>\n<p>Litija jonu akumulatori ir k\u013cuvu\u0161i par vienu no vispla\u0161\u0101k izmantotajiem ener\u0123ijas uzglab\u0101\u0161anas risin\u0101jumiem gan pat\u0113ri\u0146a, gan r\u016bpniec\u012bbas vajadz\u012bb\u0101m, nodro\u0161inot jaud\u012bgus p\u0101rn\u0113s\u0101jamus ener\u0123ijas risin\u0101jumus da\u017e\u0101d\u0101m ier\u012bc\u0113m, s\u0101kot no mobilajiem t\u0101lru\u0146iem l\u012bdz elektriskajiem transportl\u012bdzek\u013ciem. Lai gan litija jonu baterijas sniedz daudz priek\u0161roc\u012bbu, nepareiza apie\u0161an\u0101s ar t\u0101m vai nepareiza to uzglab\u0101\u0161ana var izr\u0101d\u012bties likten\u012bga.<\/p>\n<p>Lai nodro\u0161in\u0101tu litija akumulatoru dro\u0161u glab\u0101\u0161anu, vislab\u0101k izvair\u012bties no rupjas apie\u0161an\u0101s ar tiem. Nometot akumulatoru, var saboj\u0101t t\u0101 iek\u0161\u0113j\u0101s sast\u0101vda\u013cas, kas var izrais\u012bt elektrisko \u012bssavienojumu vai termisko izs\u012bk\u0161anu. T\u0101 k\u0101 litija akumulatori noveco un bie\u017e\u0101k ciklisko darb\u012bbu veic augst\u0101k\u0101 temperat\u016br\u0101, to uz\u0146\u0113m\u012bba pret meh\u0101niskiem boj\u0101jumiem palielin\u0101s l\u012bdz ar vecumu, ciklisko darb\u012bbu bie\u017eumu un paaugstin\u0101tu temperat\u016bras l\u012bmeni.<\/p>\n<p>Akumulatora boj\u0101jumi ir jut\u012bgi ar\u012b pret ekstrem\u0101liem vides apst\u0101k\u013ciem. Akumulatori, kas pak\u013cauti lietus, s\u0101\u013ca gaisa vai mitruma iedarb\u012bbai, var \u0101tri zaud\u0113t l\u0101di\u0146u un p\u0101rkarst, izraisot termisko nopl\u016bdi un izpl\u016b\u0161anu ar liesm\u0101m.<\/p>\n<p>Litija jonu akumulatoru ugunsgr\u0113kus var b\u016bt gr\u016bti nodz\u0113st. Tradicion\u0101lie \u016bdens ugunsdz\u0113\u0161amie apar\u0101ti bie\u017ei vien nesp\u0113j piln\u012bb\u0101 nodz\u0113st \u0161os ugunsgr\u0113kus, un tie nereti p\u0113c stund\u0101m vai dien\u0101m atkal uzliesmo; tom\u0113r ir speci\u0101li litija jonu ugunsdz\u0113\u0161amie apar\u0101ti.<\/p>\n<h2>Blazestack<\/h2>\n<p>Litija akumulatoru ugunsgr\u0113ki ir k\u013cuvu\u0161i bie\u017e\u0101ki un arvien vair\u0101k apdraud sabiedr\u012bbas dro\u0161\u012bbu, apgr\u016btinot to dz\u0113\u0161anu un radot iev\u0113rojamus materi\u0101los zaud\u0113jumus. Liel\u0101k\u0101 da\u013ca litija akumulatoru ugunsgr\u0113ku izce\u013cas termisk\u0101 p\u0101rtec\u0113juma rezult\u0101t\u0101, kas rodas, akumulatoriem p\u0101rkarstot; citi var izcelties fizisku boj\u0101jumu vai uzl\u0101des probl\u0113mu d\u0113\u013c; ar atbilsto\u0161iem pieejamiem instrumentiem ugunsdz\u0113s\u0113ji var \u0101tr\u0101k noteikt un efekt\u012bv\u0101k nov\u0113rst \u0161\u0101dus ugunsgr\u0113kus.<\/p>\n<p>Litija akumulatoru ugunsgr\u0113ki ir viens no liel\u0101kajiem draudiem \u0113k\u0101m un taj\u0101s eso\u0161ajiem cilv\u0113kiem. Tie var \u0101tri izplat\u012bties un izrais\u012bt pla\u0161us struktur\u0101lus boj\u0101jumus, kas apdraud cilv\u0113ku dz\u012bv\u012bbas. T\u0101p\u0113c ir \u0101rk\u0101rt\u012bgi svar\u012bgi izgl\u012btot cilv\u0113kus par apdraud\u0113jumiem, kas saist\u012bti ar uzl\u0101d\u0113jam\u0101m baterij\u0101m.<\/p>\n<p>P\u0113d\u0113j\u0101 laik\u0101 ASV liel\u0101kaj\u0101s pils\u0113t\u0101s, piem\u0113ram, \u0145ujork\u0101 un Sanfrancisko, ir iev\u0113rojami palielin\u0101jies ar akumulatoriem saist\u012bto ugunsgr\u0113ku skaits - kop\u0161 2012. gada tas ir vair\u0101k nek\u0101 divk\u0101r\u0161ojies. Lai gan vairums no tiem neizraisa ievainojumus vai n\u0101ves gad\u012bjumus, daudzi no tiem var rad\u012bt iev\u0113rojamus zaud\u0113jumus gan komerci\u0101liem \u012bpa\u0161umiem, gan dz\u012bvojam\u0101m m\u0101j\u0101m.<\/p>\n<p>Tom\u0113r ir vair\u0101kas strat\u0113\u0123ijas, k\u0101 nov\u0113rst litija akumulatoru ugunsgr\u0113kus, tostarp to pareiza uzglab\u0101\u0161ana un apkope. Turkl\u0101t ieteicams tur\u0113t met\u0101la priek\u0161metus un \u016bdeni prom, un par lab\u0101ko praksi b\u016btu j\u0101uzskata ar\u012b ugunsdro\u0161u konteineru izmanto\u0161ana, uzglab\u0101jot litija baterijas.<\/p>\n<p>Divi izplat\u012bti akumulatoru ugunsgr\u0113ku c\u0113lo\u0146i ir fiziski boj\u0101jumi un \u012bssavienojumi. Akumulatora boj\u0101jums vai p\u0101rkar\u0161ana var izrais\u012bt termisko izs\u012bk\u0161anu - ekstr\u0113mu \u0137\u012bmisku reakciju, kuras laik\u0101 asas litija adatas iek\u013c\u016bst separatora \u0161\u016bn\u0101s un izraisa iek\u0161\u0113ju \u012bssavienojumu; akumulatora korpusa apvalka plais\u0101\u0161ana \u013cauj uzliesmojo\u0161iem elektrol\u012btiem non\u0101kt saskar\u0113 ar gaisu vai siltuma avotiem un aizdegties.<\/p>","protected":false},"excerpt":{"rendered":"<p>Litija baterijas ir daudz\u0101s pla\u0161a pat\u0113ri\u0146a ier\u012bc\u0113s, kas \u013cauj ra\u017eot\u0101jiem slaidos izstr\u0101d\u0101jumos ievietot vair\u0101ku stundu akumulatora darb\u012bbas laiku. Ta\u010du t\u0101s rada ar\u012b ugunsb\u012bstam\u012bbu, ja tiek boj\u0101tas vai nepareizi lietotas. Litija bateriju ugunsgr\u0113ki ugunsdz\u0113s\u0113jiem var b\u016bt sare\u017e\u0123\u012bti un b\u012bstami, t\u0101p\u0113c Ugunsdz\u0113s\u012bbas dienesta departaments ir izdevis p\u0101rbaudes sarakstu, lai ...<\/p>\n<p class=\"read-more\"> <a class=\"\" href=\"https:\/\/electric-bicycles.net\/lv\/litija-akumulatoru-ugunsgreki\/\"> <span class=\"screen-reader-text\">Litija akumulatoru ugunsgr\u0113ki<\/span> Las\u012bt vair\u0101k \"<\/a><\/p>","protected":false},"author":1,"featured_media":0,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"site-sidebar-layout":"default","site-content-layout":"","ast-site-content-layout":"","site-content-style":"default","site-sidebar-style":"default","ast-global-header-display":"","ast-banner-title-visibility":"","ast-main-header-display":"","ast-hfb-above-header-display":"","ast-hfb-below-header-display":"","ast-hfb-mobile-header-display":"","site-post-title":"","ast-breadcrumbs-content":"","ast-featured-img":"","footer-sml-layout":"","theme-transparent-header-meta":"","adv-header-id-meta":"","stick-header-meta":"","header-above-stick-meta":"","header-main-stick-meta":"","header-below-stick-meta":"","astra-migrate-meta-layouts":"","ngg_post_thumbnail":0,"footnotes":""},"categories":[65],"tags":[],"class_list":["post-434","post","type-post","status-publish","format-standard","hentry","category-product-related"],"aioseo_notices":[],"_links":{"self":[{"href":"https:\/\/electric-bicycles.net\/lv\/wp-json\/wp\/v2\/posts\/434","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/electric-bicycles.net\/lv\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/electric-bicycles.net\/lv\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/electric-bicycles.net\/lv\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/electric-bicycles.net\/lv\/wp-json\/wp\/v2\/comments?post=434"}],"version-history":[{"count":1,"href":"https:\/\/electric-bicycles.net\/lv\/wp-json\/wp\/v2\/posts\/434\/revisions"}],"predecessor-version":[{"id":435,"href":"https:\/\/electric-bicycles.net\/lv\/wp-json\/wp\/v2\/posts\/434\/revisions\/435"}],"wp:attachment":[{"href":"https:\/\/electric-bicycles.net\/lv\/wp-json\/wp\/v2\/media?parent=434"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/electric-bicycles.net\/lv\/wp-json\/wp\/v2\/categories?post=434"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/electric-bicycles.net\/lv\/wp-json\/wp\/v2\/tags?post=434"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}