硅藻的樣品不能簡單使用甲醛或者其他試劑固定,時間久了色素退化或者硅質(zhì)殼被化學分解掉,本文收集了楊德廣、楊美臨、黃玥、李家英、劉俊琢等5位專家的硅藻制備方法…
水生所能源微藻油脂代謝機制研究取得系列進展
微藻缺氮誘導產(chǎn)油與光合作用氧化脅迫的偶聯(lián)機制和可能的環(huán)式電子傳遞對油脂合成所需atp的供應機制,發(fā)現(xiàn)ca2+對微藻誘導產(chǎn)油過程的響應和調(diào)控。…
For A More Climate-Friendly Burger, Maybe We Should Feed Cows Algae
A new study shows that cattle might be able to start eating algae instead of their usual farmed grain. The algae meal, leftover when manufacturers use algae biofuel, is usually burned—but it turns out that cows think it's tasty.…
In the Future, Everything Will Be Made of Algae
a handful of ambitious biofuel and algae production startups have decided to put their product into every segment imaginable—we're talking about putting algae in your makeup, your protein supplements, and even your medication. …
萊茵衣藻或可治療失明
萊茵衣藻可以用來定位太陽光,從而幫助進行光合作用。但其眼內(nèi)的一種叫作紫紅質(zhì)通道蛋白-2的感光細胞未來或可被植入人類視網(wǎng)膜,從而治療失明。…
葡萄糖環(huán)境藻細胞在光照條件可以比無光照獲得更高的速率
該論文在小球藻混合培養(yǎng)機制中有重要發(fā)現(xiàn)。在葡萄糖環(huán)境下,藻細胞分裂在光照條件下獲得較高的生長速率,同時生物量的積累效率也高于異養(yǎng)(無光照),但是光照可以抑制脂肪酸合成相關基因的表達,并誘導更多碳流向淀粉合成轉(zhuǎn)化,從而降低細胞內(nèi)油脂合成效率。該研究結(jié)果揭示了光照在小球藻高效混合培養(yǎng)中的雙向效果及內(nèi)在機制,為工程化培養(yǎng)小球藻提供了理論依據(jù)。…
藍藻光合作用中捕獲電能 微光合動力電池或成下代綠色能源
加拿大研究人員發(fā)現(xiàn)并設計出一種可從藍藻光合作用和呼吸作用中捕獲電能的微光合電池技術。這項新穎的可擴展技術或使人類能夠利用更加經(jīng)濟的方式生產(chǎn)清潔能源,進而使終獲取無碳能源成為可能。…
The Next Big Sports Food Is… Algae?
Boston company ENERGYbits is selling algae strains spirulina and chlorella as the next chia seeds: power supplements that improve stamina and reduce inflammation.…
Forget kale—Algae is the next new ‘superfood’
Companies are developing algae-based foods, including algae-based pizza crust, brownie mix and even coffee creamer. As concerns over the health and environmental impacts of eating meat have grown, mor […]…
藻類生物質(zhì)能源關鍵技術分析
藻類作為第三代生物質(zhì)能源具有分布廣泛、油脂含量高、環(huán)境適應能力強、生長周期短、生產(chǎn)成本低等優(yōu)勢,吸引了越來越多的關注。文中闡述了藻類生物質(zhì)能源的研究進展、產(chǎn)業(yè)化過程中遇到的關鍵問題及發(fā)展趨勢。…