999精品在线视频,手机成人午夜在线视频,久久不卡国产精品无码,中日无码在线观看,成人av手机在线观看,日韩精品亚洲一区中文字幕,亚洲av无码人妻,四虎国产在线观看 ?

草本能源植物培育及催化制備先進液體燃料

2016-05-30 00:17:01馬隆龍劉琪英
科技創新導報 2016年10期
關鍵詞:培育

馬隆龍 劉琪英

摘 要:研究前兩年圍繞3個關鍵科學問題開展,取得的進展如下:(1)針對關鍵科學問題1,圍繞解析能源高粱等能源植物能源物質組成和結構,能源物質生物合成及抗逆相關基因的功能和作用機制開展研究,提出了高粱等能源植物中次生細胞壁生物合成調控網絡的解析機理;闡明了抗逆性相關基因的功能和作用機制;建立了檢測技術平臺以及種質遺傳多樣性的評價體系與方法。(2)針對關鍵科學問題2,揭示了生物質大分子水熱解聚為糖類衍生物的反應機理及產物選擇性調控規律;深入解析了酸/堿處理木質素的結構特征,構建了堿溶出木質素過程的動力學模型;提出了微波在木質素氧化與液化解聚過程中的協同促進機制,獲得較高的單酚收率。(3)針對關鍵科學問題3,圍繞解聚產物制氫、糖類衍生物制液體烴類/含氧燃料和酚類衍生物制液體烷烴燃料,進行了深入系統地研究。根據Gibbs自由能最小化原理建立了模擬流程,闡明了葡萄糖水溶液的水熱氣化模型與反應途徑。設計制備了高效的Ni/CeO2-Al2O3和Ni/TiO2催化劑,并對其結構與化學性質進行深入分析,該類催化劑在葡萄糖水熱制氫反應中的產氫率超過90%,具有較好的穩定性。首次發現了mdtB基因對細菌的抗逆性、生長速率和產氫速率具有重要的影響。創制了強化水相傳質與相轉移的微液膜反應體系,實現糖類衍生物一步高效轉化為平臺化合物HMF與C5/C6糖醇;研制了高水熱穩定的功能化納米碳及金屬酸性鹽催化體系,提高了選擇性斷鍵性能;研制了高效過渡金屬/介孔-微孔固體酸復合催化體系,揭示了糖醇水相催化合成液體烴燃料的轉化機理與產物控制規律;初步建立了糖類衍生物水相催化合成液體烴類燃料的中試驗證系統。發展了多種新型的催化劑體系,可協同轉化纖維素和半纖維素,實現了糖類衍生物到平臺分子(糠醛,HMF和乙酰丙酸)的高效轉化,揭示了上述轉化過程的反應機理與產物控制機制;設計制備了新型雙功能加氫催化劑,研究了水相平臺分子HMF加氫氫解為含氧化合物2,5-二甲基呋喃的反應機理、選擇性控制規律;制備了高效的氧化催化劑K-OMS-2,闡明了該催化劑上HMF到2,5-呋喃二甲醛的轉化規律。發展了從酸水殘渣中提取甜高粱木質素的方法,并對其結構進行了表征;在實驗室合成了木質素二聚體模型;制備了高效負載型金屬催化劑體系,研究了木質素低聚物解聚反應和酚類衍生物制備液體烷烴的反應機理;發展了含釩雜多酸在水/醇混合溶劑體系中催化氧化解聚木質素,獲得了含有芳香醛類化合物,研究了Aldol縮合、頻哪醇偶聯和傅克反應的增碳反應機理,通過催化劑加氫脫氧,實現了由木質素制取C13-C17的液態烴類燃料。

關鍵詞:能源植物 培育 化學催化 先進燃料 基礎研究

Abstract:With aiming to the three key scientific issues, this project conducted the production advanced liquid fuels from biomass, and the development is listed as follows: (1) So as to the first key scientific issue, this project conducted the investigation on the the component and construction, and the function and mechansim of the stress-inducible gene during biosynthesis of energy plant such as energy sorghum. The net mediation mechanism of secondary cell wall formation in energy sorghum by biosynthesis was elucidated. The measurement platform and evaluation system for the genetic diversity of plasm germ was established. (2) For the second key scientific issue, this project clarified the decompolymerization mechanism and product controlling pathway of biomass macro-molecules in hydrothermal condition. The structure properties of acid/alkali treated lignin were explained and the dynamical model of the alkali dissolved lignin was built. For obtaining the yield of high phenolic monomers, the cooperative promotion mechanism of lignin decompolymerization by oxidation and liquifaction was investigated under microwave irradiation. (3) For the third key scientific issue, the study focused on the H2 production by decomposed products of biomass, the liquid alkane fuels and oxygen contained fuels from sugar derivatives by catalysis, and the liquid alkane fuels by phenol derivatives. The stimulated process was established based on the principle of Gibbs energy minimization and the hydrothermal gasification model and conversion pathway of glucose aqueous solution. The catalysts contained Ni/CeO2-Al2O3 and Ni/TiO2 were prepared, characterized and their performance was tested in H2 production by glucose aqueous solution, which obtained the H2 yield of more than 90% and good catalytic stability. For the first time,we found that the mdtB gene significantly affects the stress resistance and growth rate of the fungus, and thus influences the H2 production rate. The mass transfer enhanced micro- liquid layer system was developed to achieve high yielded HMF and alditol by one-pot conversion of sugar derivatives and the effective catalysts included functionalized nano-carbon and metal sulfates and phosphates were designed to the selective cracking of bonds in sugar derivatives. To obtain the high yield of liquid alkanes from sorbitol conversion in aqueous phase, the highly active metal supported on micro-/meso-porous zeolite was fabricated and the detailed reaction mechanism and pathway for products formatiion were researched. The pilot scaled apparatus for liquid alkanes production from sugar derivatives has been built up on the basis of scientific investigation in lab. To achieve the simultaneous conversion of cellulose and hemi-cellulose to platform (furfural, HMF and levulinic acid, etc.), the new catalysts were developed and the formation mechanism and product controlling pathway was clarified. The effective duel functioalized catalyst and K-OMS-2 catalyst were prepared and their performance was evaluated in hydrogenation of HMF to 2,5--dimethyl furan and partial oxidation of HMF to furan-2,5-di-aldehyde, respectively. We developed the new method for obtaining lignin from the residue produced by acid-hydrolysis of sweet sorghum. The structure of the lignin was characterized in detail. For better understanding the decomposed mechanism of real lignin, we synthesized dimer models of lignin in lab. We prepared the supported metal catalysts for hydrodeoxygenation of lignin derived oligo-mers and phenolic derivatives to liquid alkanes and the detailed mechanism was investigated. The vanadium contained heteropolyacids was prepared to achieve oxidative decomposition of lignin to aromatic aldehydes in alcohol-water system. The C-C coupling mechanism for Aldol condensation, Pinacol coupling and Friedel-Crafts alkylation of phenol derivatives was studied, followed by hydrodeoxygenation to C13-C17 alkanes by supported metal catalysts.

Key Words:Energy plant;Breeding;Chemical catalysis;Advanced fuel;Basic research

閱讀全文鏈接(需實名注冊):http://www.nstrs.cn/xiangxiBG.aspx?id=31318&flag=1

猜你喜歡
培育
基于初中化學核心素養培育的反思
井岡教育(2022年2期)2022-10-14 03:11:26
重視培育多層次鄉土人才
今日農業(2021年15期)2021-10-14 08:19:58
后備母豬的選擇和培育
區域國防科技創新生態系統的構成與培育
成長200步 步步“進”心——實施“成長200步”工程培育“和樂好少年”
少先隊活動(2018年5期)2018-12-29 12:12:30
第十二道 共同的敵人
未來或可培育無味榴蓮
第十道 生相克
蟑螂
念好"四部經"培育生力軍
中國火炬(2014年3期)2014-07-24 14:44:39
主站蜘蛛池模板: 99精品在线看| 97久久精品人人| 中文无码影院| 免费全部高H视频无码无遮掩| 99爱视频精品免视看| 日本不卡免费高清视频| 免费A∨中文乱码专区| 成年免费在线观看| 国产亚洲视频播放9000| 女人18一级毛片免费观看 | 香蕉久久国产精品免| 国产成人久视频免费| 久久综合色88| 久久精品无码国产一区二区三区| 日本成人福利视频| 成人国产精品2021| 欧美色丁香| 四虎国产精品永久一区| 亚洲国产天堂在线观看| 免费Aⅴ片在线观看蜜芽Tⅴ| 亚洲床戏一区| 福利小视频在线播放| 亚洲免费成人网| 香蕉在线视频网站| 亚洲人成网7777777国产| 国产香蕉国产精品偷在线观看| 国产激情无码一区二区APP | 国产成人高清精品免费软件| 欧美午夜在线观看| 欧美自拍另类欧美综合图区| 成年免费在线观看| 国产精品xxx| 久久久精品国产亚洲AV日韩| 久久亚洲美女精品国产精品| 国产日韩精品一区在线不卡| 精品国产中文一级毛片在线看| 亚洲 成人国产| 精品视频在线一区| 97久久免费视频| 精品久久高清| 在线精品视频成人网| 四虎永久在线精品国产免费| 99在线免费播放| 欧美性爱精品一区二区三区| 亚洲无卡视频| 国产不卡网| 福利视频一区| 国产毛片网站| 91无码网站| 亚洲福利一区二区三区| 国产69囗曝护士吞精在线视频| 国产成人精品一区二区| 国产激情无码一区二区APP| 亚洲V日韩V无码一区二区| 国产精品无码AV中文| 精品国产一区91在线| 日本成人一区| Jizz国产色系免费| 91久久夜色精品国产网站| 综合色区亚洲熟妇在线| 97精品国产高清久久久久蜜芽| 波多野结衣第一页| 无码网站免费观看| 影音先锋丝袜制服| 久久亚洲黄色视频| 久久一日本道色综合久久| 一本久道热中字伊人| 无码福利日韩神码福利片| 国产成人盗摄精品| 无码高潮喷水在线观看| 免费毛片全部不收费的| 久久精品只有这里有| 久久国产精品麻豆系列| 国产欧美精品专区一区二区| 狠狠躁天天躁夜夜躁婷婷| 亚洲一道AV无码午夜福利| 国产精品综合久久久| 在线观看av永久| 国产午夜福利片在线观看| 欧美日韩高清| 国产精品亚欧美一区二区| 国产欧美一区二区三区视频在线观看|