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Mannonic Acid and Bio-Ethanol Production from Konjac Using a Two-Step Bioprocess with Candida Shehatae and Gluconobacter Oxydans 被引量:1
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作者 jianglin zhao Xiaotong Zhang +3 位作者 Weiwei Lei Xingqi Ji Xin Zhou Yong Xu 《Journal of Renewable Materials》 SCIE EI 2020年第1期79-88,共10页
Amorphophallus konjac is rich in glucomannan,which can be hydrolyzed into glucose and mannose,thereby acting as an economic raw material for the acquisition of glucose and mannose.The total sugar yield was 91.2%when k... Amorphophallus konjac is rich in glucomannan,which can be hydrolyzed into glucose and mannose,thereby acting as an economic raw material for the acquisition of glucose and mannose.The total sugar yield was 91.2%when konjac powder was treated with 0.75%hydrochloric acid at 121℃for 1 h.Thus,dilute acid hydrolysates of konjac powder were used as a carbon source for obtaining value-added products.Here we showed that the microbial production of ethanol and mannonic acid was obtained by employing Candida shehatae(C.shehatae)and Gluconobacter oxydans(G.oxydans).Through a step-by-step bioprocess,glucose is the first selectively converted to ethanol by C.shehatae,which enables G.oxydans-mediated biocatalysis of mannose to mannonic acid.Finally,approximately 100 g ethanol and 340 g mannonic acid were produced starting from 1 kg refined konjac powder.The results demonstrated the feasibility of this bioconversion method for producing mannonic acid starting from crude hydrolysates of konjac powder. 展开更多
关键词 KONJAC mannonic acid ETHANOL Gluconobacter oxydans Candida shehatae
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Polysaccharide Elicitor from the Endophyte Bionectria sp.Fat6 Improves Growth of Tartary Buckwheat under Drought Stress
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作者 Dabing Xiang Wei Wei +8 位作者 Yan Wan Xiaoyong Wu Xueling Ye Lianxin Peng Linyun Zhong Qi Wu Liang Zou Gang zhao jianglin zhao 《Phyton-International Journal of Experimental Botany》 SCIE 2021年第2期461-473,共13页
Drought can limit the growth and reduce the yield of crops,but the safe and effective bio-approach to improve the drought resistance of crops is very little.We conducted an experiment in which we monitored the effects... Drought can limit the growth and reduce the yield of crops,but the safe and effective bio-approach to improve the drought resistance of crops is very little.We conducted an experiment in which we monitored the effects of polysaccharide from the endophyte Bionectria sp.Fat6 on the growth of Tartary buckwheat(Fagopyrum tataricum(L.)Gaertn)seedlings under control and drought-stressed conditions by determining gas exchange,photosynthesis parameters,photosynthetic pigment contents,and metabolite accumulation.Results indicated that the polysaccharide from endophyte stimulated plant growth and increased the aboveground biomass,root mass,and root/shoot ratio of Tartary buckwheat.Application of the polysaccharide to drought-stressed plants resulted in a significant increase in the net photosynthetic rate,stomatal conductance,and transpiration rate of Tartary buckwheat and decreased the intercellular CO_(2) concentration.The contents of chlorophyll a,chlorophyll b,chlorophyll a+b,and carotenoids in leaves were higher in polysaccharide-treated seedlings than that in control.Polysaccharide notably increased the soluble protein and proline content and decreased the malondialdehyde content in Tartary buckwheat leaves.The endophytic polysaccharide may protect Tartary buckwheat against drought by improving leaf gas exchange and photosynthetic capacity,and altering concentrations of protective metabolites.Together,these changes may compensate for the negative impacts of drought stress on the growth of Tartary buckwheat.Thus,the polysaccharide from the endophyte Bionectria sp.Fat6 may be an effective biotic elicitor and a promising bio-approach to improve Tartary buckwheat production worldwide. 展开更多
关键词 ENDOPHYTE physiological response plant growth POLYSACCHARIDE Tartary buckwheat
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氮掺杂单层石墨烯上无中间层沉积高质量氮化镓
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作者 陈丹妮 宁静 +4 位作者 王东 王博宇 赵江林 张进成 郝跃 《Science China Materials》 SCIE EI CAS CSCD 2023年第5期1968-1977,共10页
在石墨烯/氧化铝衬底上通过金属有机化学气相沉积法(MOCVD)范德华外延生长的氮化镓(GaN)可以减少由于氮化镓与衬底严重晶格失配产生的缺陷.然而,石墨烯表面缺少悬挂键导致氮化镓成核位点很少,因此,常利用薄层AlN或ZnO纳米壁作为中间层... 在石墨烯/氧化铝衬底上通过金属有机化学气相沉积法(MOCVD)范德华外延生长的氮化镓(GaN)可以减少由于氮化镓与衬底严重晶格失配产生的缺陷.然而,石墨烯表面缺少悬挂键导致氮化镓成核位点很少,因此,常利用薄层AlN或ZnO纳米壁作为中间层沉积于石墨烯上.在无缓冲层的氮掺杂石墨烯上,我们利用MOCVD法成功地直接获得低应力(0.023 GPa)和低螺位错密度(9.76×10^(7)cm^(-2))的高质量氮化镓晶体.第一性原理计算结果表明,与本征石墨烯相比,氮掺杂石墨烯表面对镓原子的吸附能力明显提高,这与氮化镓低温生长成核实验观察到的结果一致.在大多数情况下,氮化镓在经过氮原子预处理的单层石墨烯上倾向于形成C-Ga-N和N-Ga-N的成核位点.本研究证明了通过界面调控可在氮掺杂石墨烯上生长高质量的氮化镓薄膜,是一种有效的原子调控方法.本方法为新型半导体器件的工业发展提供了新思路. 展开更多
关键词 GRAPHENE NITROGEN-DOPED GAN MOCVD
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Synthesis and fluorescence properties of a 1,3-disubstituted thiacalix[4]arene crown-5 armed with phenothiazine moieties 被引量:1
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作者 Qiang Sun Lan Mu +3 位作者 Xi Zeng jianglin zhao Takehiko Yamato Jianxin Zhang 《Science China Chemistry》 SCIE EI CAS CSCD 2015年第3期539-544,共6页
A new thiacalix[4]arene phenothiazine derivative(2) based on a thiacalix[4]crown with a 1,3-alternate conformation has been synthesized and characterized. In THF-water mixture, Compound 2 exhibits a strong fluorescenc... A new thiacalix[4]arene phenothiazine derivative(2) based on a thiacalix[4]crown with a 1,3-alternate conformation has been synthesized and characterized. In THF-water mixture, Compound 2 exhibits a strong fluorescence emission, with a large Stokes shift(λex/em = 357 nm/505 nm, Δλ = 148 nm), which helps to avoid interference in excitation and emission. For the metal ions tested, the fluorescence of Compound 2 was quenched only by Fe3+ and Cr3+ ions. Evidence for the hydrolysis reaction promoted by the metal ions is given by X-ray crystallography, mass spectra(MS), infrared(IR) spectra, and fluorescence spectroscopy data. 展开更多
关键词 crown PHENOTHIAZINE Fe3+ and Cr3+ hydrolysis reaction
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