雪櫃、冷氣機、水煲等等各電器不時都會散發出熱力。654Please respect copyright.PENANATOfofSqDU8
如果將這些多餘的熱力轉化成為電力,便能夠更有效運用資源,不作浪費。654Please respect copyright.PENANA8wBIKtIj42654Please respect copyright.PENANAPUGO9LVLIA
654Please respect copyright.PENANA29F3Aded22
(圖2)繼續深入講解之前,我們先以非常簡單的方法概括一下發電的原理。654Please respect copyright.PENANAZgjIskZLj1654Please respect copyright.PENANAS9TPsnEOes
654Please respect copyright.PENANATHxraqBol3
只要電子在閉合電路單方向流動,就能促成電流,提供電力讓燈泡發光。654Please respect copyright.PENANAEoQelH9gTq
654Please respect copyright.PENANA7Utsmyd0jr
(圖3)要把熱力有效轉化為電力,我們需要一樣能夠有效傳遞電子而同時又不會傳遞熱力的物料。654Please respect copyright.PENANAmHMJfie2Do
654Please respect copyright.PENANAfHlHeGrL56
有科學家最近發表文章(Ref1),利用化學物ferricyanide ion Fe(CN)6 –4作為媒體把熱力轉化為電力。654Please respect copyright.PENANAEZYRriisrI654Please respect copyright.PENANAJKeQx6HTvU
654Please respect copyright.PENANAUmmoAKbuD9
選用Fe(CN)6 –4的原因基於其兩種特質。654Please respect copyright.PENANAHvnQHODMnc
654Please respect copyright.PENANAFHHgB4We5j
1.它遇冷(約攝氏20度左右)的時候,再加上Guanidinium ion的輔助下便會變成固體結晶。654Please respect copyright.PENANA4zFlxJm9he
654Please respect copyright.PENANAZK6BjuINmc
2.它遇熱的時候會放出電子並成為Fe(CN)6 –3。654Please respect copyright.PENANAydSlhjTa7M
654Please respect copyright.PENANA8igv7v6bdz
(圖4)以下就是利用熱力發電的精髓要點。654Please respect copyright.PENANA1J3plJ2Zb2654Please respect copyright.PENANAwCBp0DOwE9
654Please respect copyright.PENANAqBJIvN3Xda
1.Fe(CN)6 –4遇上外間熱力(例如電器所散發出的熱力),因而會釋發電子並成為Fe(CN)6 –3。654Please respect copyright.PENANA9ypAnWUPMr
654Please respect copyright.PENANAp7rRaRp5XJ
2.電子在閉合電路走動,產生電流,讓燈泡發亮。654Please respect copyright.PENANAnNZvvxPH3U
654Please respect copyright.PENANA4HQM9B5Umb
3.電子到達另一端的凍金屬棒(約攝氏20度)後,從第1點所得來的Fe(CN)6 –3便會接收電子,變回Fe(CN)6 –4。654Please respect copyright.PENANA5cVsfw4y9g
654Please respect copyright.PENANAatZKop2z9p
4.Fe(CN)6 –4在Guanidinium ion的輔助下變成固體結晶。654Please respect copyright.PENANAJ0qrG642wV
固體相對上傳熱的能力比液體較弱,因而減低了熱金屬棒把熱力傳到凍金屬棒的效率,促使凍金屬棒及熱金屬棒維持著溫差。654Please respect copyright.PENANAfusiIdgMXH
654Please respect copyright.PENANArccuzashhE
5.在地心吸力的影響下,固體結晶會趨往金屬棒那方。而在熱力的影響下,固體結晶變回液態Fe(CN)6 –4,重回第1點不斷循環。654Please respect copyright.PENANARtixn3VsW9
654Please respect copyright.PENANAKelhvAZpvJ
綜合來說,科學家巧妙利用了Fe(CN)6 –4遇熱釋出電子的特點,以及遇冷配合Guanidinium結成固體、固體不易傳熱的特質,建造了有效傳遞電子而同時又不會有效傳遞熱力的物料。654Please respect copyright.PENANACVK4vNO2S5
654Please respect copyright.PENANANe5lBo73Mt
(圖5)科學家在文中亦嘗試利用20個圖4的模組,在兩極維持50度的溫差下,提供電力予各用途之上。654Please respect copyright.PENANABb0vFw6jRd654Please respect copyright.PENANANIPnovY5LU
654Please respect copyright.PENANAHITv00o5Gb
現在需要解決的問題,就是找出收集多餘熱力的有效方法及物料,引導熱力到模組裡頭。654Please respect copyright.PENANAY44tGxWhtI
文章作者表示現時已積極尋找物料,相信假以時日絕有可能會在市面見到收集電器熱力發電的設備。654Please respect copyright.PENANAVIiZzRwuw2
654Please respect copyright.PENANAvArAB2f7qs
如果想我快啲出文的話,請入去Penana網站科普專欄–薯不揀單俾一個like以及Bookmark,這對我非常之重要。654Please respect copyright.PENANAriqUP48S0l
654Please respect copyright.PENANA4x3g0IjPAq
Link: https://www.penana.com/story/66244/%E7%A7%91%E6%99%AE%E5%B0%88%E6%AC%84-%E8%96%AF%E4%B8%8D%E6%8F%80%E5%96%AE/toc654Please respect copyright.PENANA7Fcm7Xsdwg
654Please respect copyright.PENANABcqiuULcYQ
同時亦可以在Penana網站裡按「買一嚿/半嚿薯仔」,以課金的方式推動我繼續搜羅資料寫文,多謝。654Please respect copyright.PENANApcQRJ4SSho
654Please respect copyright.PENANAVjqr8yxNL6
Link:654Please respect copyright.PENANAYLiEemHeWg
https://www.penana.com/user/27349/%E8%96%AF%E4%BB%94%E8%81%9E%E8%8C%B1%E8%8E%89/portfolio654Please respect copyright.PENANAXPgD0tTVLp
654Please respect copyright.PENANAFT3S5KLn5Q
654Please respect copyright.PENANAZTqNS8Nr6I
有興趣接收科學資訊的話,歡迎follow IG: potatopigtongue。654Please respect copyright.PENANAf5C7O2TriX
654Please respect copyright.PENANAWxT9v4vY5H
Ref1:https://science.sciencemag.org/content/early/2020/09/09/science.abd6749654Please respect copyright.PENANA9auA3pv0oC
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科普專欄–薯不揀單
作者:
薯仔聞茱莉

篇 #48
深入淺出–利用家庭電器散發熱力的發電可能性
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