1) acetate production
产乙酸
1.
The results demonstrated that this coupling system was able to enhance acetate production.
采用一种新的产氢产酸/同型产乙酸两相耦合工艺对市政污泥进行厌氧发酵,以实现高效产乙酸的目的。
2.
The result demonstrated that this coupling system was able to enhance acetate production by relieving hydrogen inhibition during acidification.
本论文研究了产氢产酸/同型产乙酸两相耦合工艺厌氧发酵市政污泥生产乙酸的过程,通过同型产乙酸菌的耗氢产乙酸作用解除产氢产酸过程中的氢抑制,强化乙酸生产。
3.
And then the different of acetate production by A phase pH and temperature regulation was studied in the fermentor of coupled syntrophic acetogenesis with homoacetogenesis process.
本文在市政剩余污泥厌氧发酵过程中应用两相耦合技术,以实现高效产乙酸为目的。
3) hydrogenesis and acetogenesis
产氢产乙酸
1.
Due to its ΔG°′>0 under the standard physiology status, the production of hydrogen and acetic acid from butyric, propionatic and acetic acid, as well as alcohol can not occurred in the second stage of anaerobic digestion (hydrogenesis and acetogenesis stage).
在厌氧消化的产氢产乙酸阶段,从反应动力学来看,在标准生理状态下的ΔG°′均为正值,表明丙酸丁酸以及乙醇的产氢产乙酸是不能进行的。
4) homoacetogenesis
同型产乙酸
1.
The syntrophic acetogenesis coupled with homoacetogenesis process was used to produce acetate from municipal sludge by anaerobic fermentation.
应用产氢产酸/同型产乙酸两相耦合工艺对市政污泥进行厌氧发酵,以实现高效产乙酸的目的。
5) acetogenesis
产乙酸作用
6) hydrogen-producing acetogens
产氢产乙酸菌
1.
Among microbial colonies in anaerobic organic wastewater treatment system,hydrogen-producing acetogens play the role of a connecting link for the acidogenic fermentation bacteria and methanogens in the functional niche.
在参与有机废水厌氧生物处理的各类微生物菌群中,产氢产乙酸菌群在功能生态位上起着承上启下的作用,对产氢产乙酸过程的强化,将有助于提高厌氧生物处理系统的效能。
2.
The efficiency of an anaerobic digestion process can be enhanced considerably by developing more hydrogen-producing acetogens in the system.
选育以产氢产乙酸菌为优势的复合菌群,对于开发基于强化产氢产乙酸菌群功能作用的高效厌氧生物处理技术具有重要意义。
3.
All kinds of bacteria in anaerobic treatment system take their own functions in anaerobic fermentation; hydrogen-producing acetogens (HPA) connect acidogentic fermentation bacteria with methanogens in function niche.
在参与厌氧消化过程的各微生物类群中,产氢产乙酸菌群在营养生态位上位于产酸发酵菌群和产甲烷菌群之间,在功能生态位上起到承上启下的重要作用,它将产酸发酵菌群代谢产生的丙酸、丁酸等有机挥发酸和乙醇等进一步降解转化为乙酸、CO2和H2,为后续的产甲烷菌群提供了可以直接利用的底物,是有机物甲烷发酵过程必不可少的重要环节。
补充资料:氧化(苯甲醛、N,N-二乙基苯胺、N,N-二甲基苯胺)的反应产物乙酸盐
CAS: 83968-15-4
中文名称: 氧化(苯甲醛、N,N-二乙基苯胺、N,N-二甲基苯胺)的反应产物乙酸盐
中文名称: 氧化(苯甲醛、N,N-二乙基苯胺、N,N-二甲基苯胺)的反应产物乙酸盐
英文名称: Benzaldehyde, reaction products with N,N-diethylbenzenamine and N,N-dimethylbenzenamine, oxidized, acetates
benzaldehyde, reaction products with n,n-diethylbenzenamine and n,n-dimethylben
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