{"id":3060,"date":"2020-08-26T07:12:50","date_gmt":"2020-08-26T07:12:50","guid":{"rendered":"https:\/\/longchangchemical.com\/?p=3060"},"modified":"2026-04-28T10:41:46","modified_gmt":"2026-04-28T10:41:46","slug":"what-is-the-material-for-thermoelectric-power-generation","status":"publish","type":"post","link":"https:\/\/longchangchemical.com\/tr\/what-is-the-material-for-thermoelectric-power-generation\/","title":{"rendered":"Termoelektrik enerji \u00fcretimi i\u00e7in malzeme nedir\uff1f"},"content":{"rendered":"<h4 class=\"wp-block-heading\">1. Son y\u0131llarda, mobil ileti\u015fim teknolojisi, malzeme mikro i\u015fleme teknolojisi ve bilgi teknolojisinin s\u00fcrekli geli\u015fmesiyle, diz\u00fcst\u00fc bilgisayarlar gibi mobil cihazlar\u0131n s\u00fcrekli minyat\u00fcrle\u015ftirilmesi ve \u00e7ok i\u015flevli hale getirilmesi, g\u00fc\u00e7 kaynaklar\u0131, so\u011futma sistemleri ve merkezi olmayan tahrik sistemlerindeki termoelektrik cihazlara da uygulanabilir.<\/h4>\n\n<!-- lc-qa-start -->\n<p><strong>Quick answer:<\/strong> Wastewater and treatment-process decisions are usually made by looking at influent composition, process stage, compliance target, and whether the proposed adjustment still behaves well at plant scale. The most useful answer almost always comes from system-level diagnosis, not a single metric.<\/p>\n<!-- lc-qa-end -->\n\n\n\n\n\n\n<p>                                                                            <\/p>\n\n\n\n<h4 class=\"wp-block-heading\">2. Minyat\u00fcrle\u015ftirmeye do\u011fru geli\u015fmeye devam edin. Elektrikli so\u011futma etkisi ile geli\u015ftirilen termoelektrik cihaz, k\u00fc\u00e7\u00fck boyut, hafiflik, mekanik aktar\u0131m par\u00e7as\u0131 olmamas\u0131, h\u0131zl\u0131 tepki h\u0131z\u0131, uzun hizmet \u00f6mr\u00fc, g\u00fcr\u00fclt\u00fc olmamas\u0131, s\u0131v\u0131 veya gaz olmamas\u0131 gibi s\u0131k\u0131\u015ft\u0131rmal\u0131 buzdolab\u0131n\u0131n k\u0131yaslanamaz oldu\u011fu bir\u00e7ok avantaja sahiptir. ortam, Herhangi bir \u00e7evre kirlili\u011fi sorunu olmadan, so\u011futma cihaz\u0131n\u0131n \u00e7al\u0131\u015fma g\u00fcc\u00fcn\u00fc ayarlamak, so\u011futma oran\u0131n\u0131 ayarlayabilir veya hatta hassas s\u0131cakl\u0131k kontrol\u00fc elde etmek i\u00e7in \u0131s\u0131tma \u00e7al\u0131\u015fma durumuna ge\u00e7ebilir.<\/h4>\n\n\n\n<p>                                                                                     <\/p>\n\n\n\n<h4 class=\"wp-block-heading\">3. Termoelektrik malzemelerden yap\u0131lm\u0131\u015f mikro elemanlar, mikro g\u00fc\u00e7 kayna\u011f\u0131, mikro b\u00f6lge so\u011futma, optik ileti\u015fim lazer diyotu ve k\u0131z\u0131l\u00f6tesi sens\u00f6r s\u0131cakl\u0131k ayarlama sisteminin haz\u0131rlanmas\u0131nda yayg\u0131n olarak kullan\u0131lmaktad\u0131r.<\/h4>\n\n\n\n<p>                                                                       <\/p>\n\n\n\n<figure class=\"wp-block-image size-large\"><img decoding=\"async\" width=\"952\" height=\"604\" src=\"https:\/\/longchangchemical.com\/wp-content\/uploads\/2020\/08\/Thermoelectric-power-generation-materials-1.png\" alt=\"\" class=\"wp-image-3061\" srcset=\"https:\/\/longchangchemical.com\/wp-content\/uploads\/2020\/08\/Thermoelectric-power-generation-materials-1.png 952w, https:\/\/longchangchemical.com\/wp-content\/uploads\/2020\/08\/Thermoelectric-power-generation-materials-1-300x190.png 300w, https:\/\/longchangchemical.com\/wp-content\/uploads\/2020\/08\/Thermoelectric-power-generation-materials-1-768x487.png 768w, https:\/\/longchangchemical.com\/wp-content\/uploads\/2020\/08\/Thermoelectric-power-generation-materials-1-600x381.png 600w\" sizes=\"(max-width: 952px) 100vw, 952px\" \/><\/figure>\n\n\n\n<h4 class=\"wp-block-heading\">4. \u00c7al\u0131\u015fma s\u0131cakl\u0131\u011f\u0131na g\u00f6re s\u0131n\u0131fland\u0131r\u0131lan termoelektrik jenerat\u00f6rler \u00fc\u00e7 kategoriye ayr\u0131labilir: y\u00fcksek s\u0131cakl\u0131k termoelektrik jenerat\u00f6rleri, orta s\u0131cakl\u0131k termoelektrik jenerat\u00f6rleri ve d\u00fc\u015f\u00fck s\u0131cakl\u0131k termoelektrik jenerat\u00f6rleri. Y\u00fcksek s\u0131cakl\u0131k termoelektrik jenerat\u00f6rlerinde kullan\u0131lan tipik malzeme SiGe ala\u015f\u0131m\u0131d\u0131r, s\u0131cak y\u00fczeyinin \u00e7al\u0131\u015fma s\u0131cakl\u0131\u011f\u0131 yakla\u015f\u0131k 1000 \u2103'dir; orta s\u0131cakl\u0131k termoelektrik jenerat\u00f6rlerinde kullan\u0131lan tipik malzeme PbTe'dir ve s\u0131cak y\u00fczey \u00e7al\u0131\u015fma s\u0131cakl\u0131\u011f\u0131 yakla\u015f\u0131k 500 \u2103'dir; d\u00fc\u015f\u00fck s\u0131cakl\u0131k termoelektrik jenerat\u00f6rlerinde kullan\u0131lan tipik malzemeler BiTe'dir, s\u0131cak y\u00fczeyinin \u00e7al\u0131\u015fma s\u0131cakl\u0131\u011f\u0131 yakla\u015f\u0131k 200 ~ 300 \u2103'dir.<\/h4>\n\n\n\n<p>                                   <\/p>\n\n\n\n<h4 class=\"wp-block-heading\">5. Malzemenin bile\u015fimine g\u00f6re, oksit termoelektrik malzemeler, dolgulu iletken polimer kompozit malzemeler, nano termoelektrik malzemeler, s\u00fcper kafes termoelektrik malzemeler, kuasikristal termoelektrik malzemeler, kafes bile\u015fik termoelektrik malzemeler, d\u00fc\u015f\u00fck boyutlu termoelektrik malzemeler ve fonksiyonlar Gradyan termoelektrik malzemeler ve benzeri olarak ayr\u0131labilir.<\/h4>\n\n\n\n<p>                                                                                   <\/p>\n\n\n\n<h4 class=\"wp-block-heading\">6. Metal oksitler genellikle y\u00fcksek termal ve kimyasal stabiliteye sahiptir, y\u00fcksek s\u0131cakl\u0131k ve oksijen atmosferinde kullan\u0131labilir ve oksitlerin \u00e7o\u011fu toksik de\u011fildir, kirletici de\u011fildir, \u00e7evre dostudur, uzun hizmet \u00f6mr\u00fc, basit haz\u0131rl\u0131k, d\u00fc\u015f\u00fck maliyet vb. <\/h4>\n\n\n\n<p>                              <\/p>\n\n\n\n<h4 class=\"wp-block-heading\">7. Avantajlar\u0131, y\u00fcksek s\u0131cakl\u0131k end\u00fcstrisindeki uygulama potansiyeli b\u00fcy\u00fckt\u00fcr ve \u00e7evre dostu bir termoelektrik malzemedir. Dezavantaj\u0131, iletkenli\u011fin \u00e7ok d\u00fc\u015f\u00fck olmas\u0131d\u0131r, bu da malzemenin pratik uygulamas\u0131n\u0131 s\u0131n\u0131rlar.<\/h4>\n\n\n\n<p>                                                           <\/p>\n\n\n\n<h4 class=\"wp-block-heading\">8. Gelecekteki ara\u015ft\u0131rma hedefi, malzemenin iletkenli\u011fini art\u0131rmak veya y\u00fcksek iletkenli\u011fe sahip bir malzeme bulmak olacakt\u0131r. Oksit termoelektrik malzemeler, y\u00fcksek performansl\u0131 hidrojen sens\u00f6rleri, g\u00fcne\u015f enerjisi \u00fcretimi, y\u00fcksek performansl\u0131 al\u0131c\u0131lar ve minyat\u00fcr k\u0131sa menzilli ileti\u015fim cihazlar\u0131 gibi alanlarda da kullan\u0131labilir.<\/h4>\n\n\n\n<p>                           <\/p>\n\n\n\n<h4 class=\"wp-block-heading\">9. \u0130letken polimer kompozit malzemeler d\u00fc\u015f\u00fck fiyat, hafiflik ve iyi esneklik avantajlar\u0131na sahiptir. D\u00fc\u015f\u00fck nokta iletkenli\u011fine sahip iletken bir polimerin y\u00fcksek iletkenli\u011fe sahip bir skutterudit ile doldurulmas\u0131yla, karma\u015f\u0131k bant yap\u0131s\u0131na sahip bir kompozit malzeme elde edilebilir.<\/h4>\n\n\n\n<p>                                         <\/p>\n\n\n\n<h4 class=\"wp-block-heading\">10. Karma\u015f\u0131k bant yap\u0131s\u0131 y\u00fcksek performansl\u0131 termoelektrik yar\u0131 iletken malzemeler i\u00e7in gerekli bir ko\u015ful oldu\u011fundan, optimizasyondan sonra \u00e7ok say\u0131da organik-inorganik ara y\u00fcz\u00fcn varl\u0131\u011f\u0131 fonon yans\u0131mas\u0131 olas\u0131l\u0131\u011f\u0131n\u0131 art\u0131r\u0131r ve termal iletkenlik daha da azal\u0131r. Y\u00fcksek performansl\u0131 termoelektrik yar\u0131 iletken malzemeler haz\u0131rlamak m\u00fcmk\u00fcnd\u00fcr. Termoelektrik malzemelerin.<\/h4>\n\n\n\n<p>                                             <\/p>\n\n\n\n<h4 class=\"wp-block-heading\">11. Nano-termoelektrik malzemeler, termoelektrik malzemelerin geli\u015fmekte olan bir sistemidir. Nanobilim ve nanoteknolojinin h\u0131zla geli\u015fmesiyle birlikte, nano-termoelektrik malzemelerin ara\u015ft\u0131r\u0131lmas\u0131 da bir\u00e7ok ara\u015ft\u0131rmac\u0131n\u0131n dikkatini \u00e7ekmi\u015ftir. Geleneksel y\u0131\u011f\u0131n termoelektrik malzeme nanoboyutland\u0131r\u0131ld\u0131\u011f\u0131nda, nanomalzemenin aray\u00fczey etkisi ve kuantum etkisi nedeniyle, malzemenin termal iletkenli\u011fi, nokta iletkenli\u011fini \u00f6nemli \u00f6l\u00e7\u00fcde azaltmadan azalt\u0131labilir ve b\u00f6ylece daha b\u00fcy\u00fck bir termoelektrik liyakat de\u011feri elde edilebilir. Ayn\u0131 zamanda, nanomalzemeler katk\u0131lamay\u0131 daha uygun bir \u015fekilde ayarlayabilir ve bu da daha fazla ke\u015fif i\u00e7in elveri\u015flidir.<\/h4>\n\n\n\n<p>                                                             <\/p>\n\n\n\n<h4 class=\"wp-block-heading\">12. Superlattice malzemesi, iki \u00e7e\u015fit son derece ince yar\u0131 iletken tek kristal filmin d\u00f6n\u00fc\u015f\u00fcml\u00fc olarak b\u00fcy\u00fct\u00fclmesiyle olu\u015fturulan \u00e7ok katmanl\u0131 heteroyap\u0131ya sahip yar\u0131 iletken bir bile\u015fiktir. Her film genellikle birka\u00e7 ila d\u00fczinelerce atomik katman i\u00e7erdi\u011finden, belirgin kuantum etkilerine sahiptir ve bu da bir\u00e7ok yeni fiziksel \u00f6zellik ile sonu\u00e7lan\u0131r.<\/h4>\n\n\n\n<p>                                                                          <\/p>\n\n\n\n<h4 class=\"wp-block-heading\">13. S\u00fcper kafes malzemelerin bir di\u011fer \u00f6nemli \u00f6zelli\u011fi de fonon sa\u00e7\u0131l\u0131m\u0131n\u0131 art\u0131rmaya yard\u0131mc\u0131 olan bir\u00e7ok aray\u00fcz ve yap\u0131daki periyodikliktir ve ayn\u0131 zamanda y\u00fczeydeki elektron sa\u00e7\u0131l\u0131m\u0131ndaki art\u0131\u015f daha azd\u0131r, bu nedenle daha d\u00fc\u015f\u00fck termal iletkenlik ve daha y\u00fcksek elektrik iletkenli\u011fi elde edilebilir. s material.<\/h4>\n\n\n\n<p>                                                           <\/p>\n\n\n\n<figure class=\"wp-block-image size-large\"><img decoding=\"async\" width=\"277\" height=\"242\" src=\"https:\/\/longchangchemical.com\/wp-content\/uploads\/2020\/08\/Thermoelectric-power-generation-materials-2.png\" alt=\"\" class=\"wp-image-3062\"\/><\/figure>\n\n\n\n<p>                               <\/p>\n\n\n\n<h4 class=\"wp-block-heading\">14. Kuasikristal malzemeler, \u00f6teleme simetrisine sahip olmayan kristal benzeri malzemelerdir ve genellikle be\u015f, on ve on iki kat d\u00f6nme eksenleri gibi kristallerin sahip olmad\u0131\u011f\u0131 simetri eksenlerine sahiptir. Kuasikristaller ve s\u00fcper iletkenler 1980'lerde yo\u011fun madde fizi\u011finde iki \u00f6nemli geli\u015fme olarak listelenmi\u015ftir. Ke\u015ffedilmelerinden bu yana, yap\u0131lar\u0131 ve fiziksel \u00f6zellikleri \u00fczerine yap\u0131lan ara\u015ft\u0131rmalar \u00f6nemli ilerlemeler kaydetmi\u015ftir. Kuasikristal malzemenin malzeme yap\u0131s\u0131n\u0131n \u00f6zelli\u011finden dolay\u0131, elektronik yap\u0131s\u0131n\u0131n \u00f6zelli\u011fine neden olur.<\/h4>\n\n\n\n<p>                                          <\/p>\n\n\n\n<h4 class=\"wp-block-heading\">15. Kuasikristal malzeme al\u0131\u015f\u0131lmad\u0131k geni\u015f bir s\u0131cakl\u0131k adaptasyonuna sahiptir. Geleneksel yar\u0131 iletken iletim mekanizmas\u0131ndan farkl\u0131d\u0131r. Termoelektrik potansiyeli ve elektrik iletkenli\u011fi s\u0131cakl\u0131k art\u0131\u015f\u0131yla birlikte artarken, termal iletkenlik s\u0131cakl\u0131k art\u0131\u015f\u0131yla birlikte hafif\u00e7e artar. Baz\u0131 kuasikristal malzemeler de g\u00f6zenekli bir yap\u0131ya sahiptir ve bu da malzemenin termal iletkenli\u011fini azaltmak i\u00e7in faydal\u0131d\u0131r. S\u0131radan ala\u015f\u0131mlarla kar\u015f\u0131la\u015ft\u0131r\u0131ld\u0131\u011f\u0131nda, kuasikristal malzemelerin termal iletkenli\u011fi s\u0131radan ala\u015f\u0131mlar\u0131nkinden iki kat daha d\u00fc\u015f\u00fckt\u00fcr ve kuasikristal numunelerin kalitesi daha iyidir.<\/h4>\n\n\n\n<p>                                 <\/p>\n\n\n\n<h4 class=\"wp-block-heading\">16. Yap\u0131 ne kadar m\u00fckemmel olursa, \u0131s\u0131 iletkenli\u011fi o kadar d\u00fc\u015f\u00fck olur, bu da kuasikristalleri termoelektrik malzemeler olarak \u00e7ok avantajl\u0131 k\u0131lar. Buna ek olarak, kuasikristaller korozyon direnci, oksidasyon direnci, y\u00fcksek sertlik ve termal kararl\u0131l\u0131k gibi bir\u00e7ok m\u00fckemmel fiziksel \u00f6zelli\u011fe de sahiptir. K\u0131sacas\u0131, geli\u015fmekte olan bir malzeme sistemi olarak, kuasikristal malzemeler bir\u00e7ok m\u00fckemmel \u00f6zellik sergiler ve termoelektrik enerji \u00fcretimi ve elektrikli so\u011futmada iyi uygulama olanaklar\u0131na sahiptir.<\/h4>\n\n\n\n<p>                             <\/p>\n\n\n\n<figure class=\"wp-block-image size-large\"><img decoding=\"async\" width=\"650\" height=\"596\" src=\"https:\/\/longchangchemical.com\/wp-content\/uploads\/2020\/08\/Thermoelectric-power-generation-materials-3.png\" alt=\"\" class=\"wp-image-3064\" srcset=\"https:\/\/longchangchemical.com\/wp-content\/uploads\/2020\/08\/Thermoelectric-power-generation-materials-3.png 650w, https:\/\/longchangchemical.com\/wp-content\/uploads\/2020\/08\/Thermoelectric-power-generation-materials-3-300x275.png 300w, https:\/\/longchangchemical.com\/wp-content\/uploads\/2020\/08\/Thermoelectric-power-generation-materials-3-600x550.png 600w\" sizes=\"(max-width: 650px) 100vw, 650px\" \/><\/figure>\n\n\n\n<p>                                   <\/p>\n\n\n\n<h4 class=\"wp-block-heading\">17. Elektrikli so\u011futma, biyolojik ve t\u0131bbi aletlerde 20 y\u0131l\u0131 a\u015fk\u0131n s\u00fcredir kullan\u0131lmaktad\u0131r. G\u00fcr\u00fclt\u00fcs\u00fcz, titre\u015fimsiz, k\u00fc\u00e7\u00fck boyutlu ve rahat kullan\u0131m avantajlar\u0131 ile PCR cihaz\u0131, Ventilat\u00f6r hava pompas\u0131, kriyo ne\u015fter, doku kesiti i\u00e7in so\u011fuk masa vb. gibi bir dizi yeni \u00fcr\u00fcn ba\u015far\u0131yla geli\u015ftirilmi\u015ftir. Elektrikli so\u011futman\u0131n bir di\u011fer \u00f6nemli uygulamas\u0131 da s\u00fcper iletken malzemelerin kullan\u0131m\u0131 i\u00e7in d\u00fc\u015f\u00fck s\u0131cakl\u0131kl\u0131 bir ortam sa\u011flamakt\u0131r. Y\u00fcksek s\u0131cakl\u0131kta s\u00fcper iletken malzeme cihazlar\u0131n\u0131n uygulanmas\u0131 so\u011futma teknolojisine ba\u011fl\u0131 oldu\u011fundan, mevcut so\u011futma, s\u0131k s\u0131k takviye edilmesi gereken so\u011futucu ak\u0131\u015fkanlar (s\u0131v\u0131 helyum, s\u0131v\u0131 nitrojen gibi) kullan\u0131r, bu \u00e7ok elveri\u015fsizdir ve karma\u015f\u0131k so\u011futma tesisleri kullan\u0131lmal\u0131d\u0131r.<\/h4>\n\n\n\n<p>                                     <\/p>\n\n\n\n<h4 class=\"wp-block-heading\">18. Bu nedenle, d\u00fc\u015f\u00fck s\u0131cakl\u0131k b\u00f6lgesinde (s\u0131v\u0131 helyum s\u0131cakl\u0131\u011f\u0131n\u0131n alt\u0131nda) iyi performansa sahip termoelektrik malzemeler elde edilebilirse, s\u00fcper iletken teknolojisinin h\u0131zl\u0131 geli\u015fimini te\u015fvik edecektir. Genel olarak, termoelektrik enerji \u00fcretimi ve elektrikli so\u011futma teknolojisinin uygulanmas\u0131nda hala \u00fcstesinden gelinememi\u015f bir\u00e7ok sorun vard\u0131r. Termoelektrik cihazlar\u0131n uygulanmas\u0131 d\u00fc\u015f\u00fck verimlilik ve y\u00fcksek maliyet dezavantajlar\u0131na sahiptir. Bu nedenle, elektrikli so\u011futma ve g\u00fc\u00e7 \u00fcretimi esas olarak enerji d\u00f6n\u00fc\u015f\u00fcm verimlili\u011fini temel almayan uygulamalarda kullan\u0131lmaktad\u0131r. Bu durumdaki ana husus. Y\u00fcksek performansl\u0131 termoelektrik malzemelerin geli\u015ftirilmesi ve termoelektrik teknolojisinin geli\u015fmesiyle birlikte, termoelektrik cihazlar\u0131n uygulamas\u0131n\u0131n daha kapsaml\u0131 hale gelece\u011fine inan\u0131lmaktad\u0131r.<\/h4>\n\n\n\n<p>                                           <\/p>\n\n\n\n<h4 class=\"wp-block-heading\">Bu makale Longchang Kimya Ar-Ge Departman\u0131 taraf\u0131ndan yaz\u0131lm\u0131\u015ft\u0131r. Kopyalaman\u0131z ve yeniden basman\u0131z gerekiyorsa, l\u00fctfen kayna\u011f\u0131 belirtin.<\/h4>\n\n\n<!-- lc-commercial-start -->\n<h2>How technical buyers and operators usually evaluate wastewater-treatment issues<\/h2>\n<p>Most wastewater-treatment problems are system problems. Teams usually get a better result when they define the process stage and water-quality target first, then review biological, chemical, and operational factors together before making a plant-scale correction.<\/p>\n<ul>\n<li><strong>Start from the process stage:<\/strong> pretreatment, biological treatment, sludge handling, and polishing steps can point to very different root causes.<\/li>\n<li><strong>Check the core water-quality data together:<\/strong> pH, COD, nitrogen, salinity, sludge condition, and dissolved oxygen often need to be read as one picture.<\/li>\n<li><strong>Review compliance and operability at the same time:<\/strong> the quickest local fix can still be the wrong commercial move if it destabilizes another part of the plant.<\/li>\n<li><strong>Use pilot or staged validation where possible:<\/strong> wastewater systems often respond differently at scale than they do in simplified bench assumptions.<\/li>\n<\/ul>\n<h3>Recommended product references<\/h3>\n<ul>\n<li><strong><a href=\"https:\/\/longchangchemical.com\/tr\/product\/cas-270586-78-2\/\">CHLUMINIT TMO<\/a>:<\/strong> A valuable comparison point when lower yellowing or TPO-replacement discussions matter.<\/li>\n<\/ul>\n<h3>FAQ for buyers and formulators<\/h3>\n<p><strong>Why do many wastewater problems resist one-step fixes?<\/strong><br \/>Because the visible symptom is often created by several interacting process variables rather than one isolated cause.<\/p>\n<p><strong>Should operational changes be evaluated only by one output indicator?<\/strong><br \/>Usually no. A stable treatment decision should consider process balance, compliance, sludge behavior, and the effect on downstream steps as well.<\/p>\n<!-- lc-commercial-end -->","protected":false},"excerpt":{"rendered":"<p>1. 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