Pb-Pt/AC催化甘油一步法制備丙酮酸(英文)
發(fā)布時(shí)間:2021-06-28 08:10
生物質(zhì)能具有綠色環(huán)保、可再生、來(lái)源廣泛和安全性高等優(yōu)點(diǎn),成為當(dāng)前的研究熱點(diǎn).作為生物柴油的主要副產(chǎn)物甘油是一種重要的生物質(zhì)平臺(tái)化合物.甘油的高效利用,不僅能夠獲得重要的精細(xì)化學(xué)品及聚合物,也可以延長(zhǎng)生物柴油的產(chǎn)業(yè)鏈,降低其生產(chǎn)成本,增加其市場(chǎng)競(jìng)爭(zhēng)力.丙酮酸是一種弱有機(jī)酸,為生物體內(nèi)葡萄糖分解代謝的中間產(chǎn)物,在生物能量代謝和物質(zhì)代謝過(guò)程中起著重要的樞紐作用.同時(shí),由于它同時(shí)含有羧基和酮羰基,具有很強(qiáng)的反應(yīng)性,可參與多種化學(xué)反應(yīng),在化學(xué)工業(yè)中有廣泛應(yīng)用.目前,工業(yè)上主要采用酒石酸脫水脫羧法生產(chǎn)丙酮酸,丙酮酸收率可達(dá)50.55%,但生產(chǎn)過(guò)程需要消耗大量的KHSO4粉末,生產(chǎn)成本高,且高耗能高污染,不符合可持續(xù)發(fā)展的要求.因此,利用可再生資源甘油在溫和條件下生產(chǎn)丙酮酸顯現(xiàn)出良好的應(yīng)用前景.目前,由甘油一步法獲得丙酮酸僅可通過(guò)發(fā)酵法實(shí)現(xiàn),但是其規(guī);a(chǎn)存在效率低、廢棄物污染等問(wèn)題.因此,研究化學(xué)方法由甘油一步制備丙酮酸可行也十分必要.本課題組以Pt/AC或Cu-Pt/AC為催化劑進(jìn)行甘油氧化制備乳酸的研究,所得產(chǎn)物中幾乎未檢出丙酮酸;當(dāng)以Pb-Pt/C為催化劑進(jìn)行乳酸脫氫氧化制備丙酮酸,可獲得...
【文章來(lái)源】:催化學(xué)報(bào). 2017,38(05)北大核心SCICSCD
【文章頁(yè)數(shù)】:11 頁(yè)
【文章目錄】:
1. Introduction
2. Experimental
2.1. Catalyst preparation
2.1.1. Impregnation and deposition precipitation method (Im‐DP)
2.1.2. Co‐deposition precipitation method (Co‐DP)
2.1.3. Co‐impregnation method (Co‐Im)
2.2. Catalyst characterization
2.3. Glycerol oxidation reaction
3. Results and discussion
3.1. Characterization of catalysts
3.1.1. N2physical adsorption results
3.1.2. XRD analysis
3.1.3. XPS analysis
3.1.3. TEM analysis
3.2. Selective oxidation of glycerol
3.2.1. Optimization of Pb loading for x Pb‐5Pt/AC‐Im‐DP catalysts
3.2.2. Further investigation on the roles of Pt and Pb species
4. Conclusions
本文編號(hào):3253957
【文章來(lái)源】:催化學(xué)報(bào). 2017,38(05)北大核心SCICSCD
【文章頁(yè)數(shù)】:11 頁(yè)
【文章目錄】:
1. Introduction
2. Experimental
2.1. Catalyst preparation
2.1.1. Impregnation and deposition precipitation method (Im‐DP)
2.1.2. Co‐deposition precipitation method (Co‐DP)
2.1.3. Co‐impregnation method (Co‐Im)
2.2. Catalyst characterization
2.3. Glycerol oxidation reaction
3. Results and discussion
3.1. Characterization of catalysts
3.1.1. N2physical adsorption results
3.1.2. XRD analysis
3.1.3. XPS analysis
3.1.3. TEM analysis
3.2. Selective oxidation of glycerol
3.2.1. Optimization of Pb loading for x Pb‐5Pt/AC‐Im‐DP catalysts
3.2.2. Further investigation on the roles of Pt and Pb species
4. Conclusions
本文編號(hào):3253957
本文鏈接:http://sikaile.net/shekelunwen/minzhuminquanlunwen/3253957.html
最近更新
教材專著