1) production rate
产酸速率
1.
L-lactic acid production rate during immobilized Rhizopus oryzaefermentation;
固定化米根霉发酵生产L-乳酸产酸速率的研究
2) maximum acidification rateμacid
最大产酸速率
3) hydrogen production rate
产氢速率
1.
At organic loading rate(OLR) of 40 kg/(m~3·d),microflora of ethanol-type fermentation had relatively high hydrogen production rate,and the maximum specific hydrogen production rate was 550 ml/(gVSS·d),which was 3.
d)条件下,乙醇型产酸发酵菌群表现出较高的产氢能力,最大比产氢速率为550 m l/(gVSS。
2.
The biogas(hydrogen) production capacity of ethanol type and propionic acid type fermentative microflora were compared, and the movement of hydrogen production rate according to the succession of microflora from propionic acid type to ethanol type was investigated.
重点对乙醇型发酵菌群和丙酸型发酵菌群的产气及产氢能力进行了对比研究 ,并对发酵菌群由丙酸型演替为乙醇型过程中的产氢速率变化进行了分析 。
3.
It was found that at an initial biomass (SS) of 15?g·L~(-1), an observed maximal hydrogen production rate of 2.
研究表明,在污泥接种量(SS)为15g·L-1、温度为(35±1)℃、容积负荷为40kg·m-3·d-1、水力停留时间(HRT)为4h条件下,可以获得CSTR丁酸型发酵的最大产氢速率2 37m3·(m3·d)-1。
4) generation rate
产气速率
1.
Compared with the MSW landfill alone, the landfill gas generation rate of MSW co-disposed with sludge was higher by about 30%.
实验结果表明 :在填埋垃圾中添加污泥起到了接种微生物的作用 ,加快了有机垃圾的降解与填埋气的产生 ,产气速率较生活垃圾直接填埋提高3 0 %以上 ;填埋气中CH4 浓度可达到 64% ;与没有添加污泥相比 ,填埋气中CH4 含量有较大幅度的提高 ,有利于填埋气的资源化利用 ,同时也可为污泥的资源化利用提供经济可行的途
5) Gas generation rate
产气速率
6) N_2O production rate
NO产生速率
补充资料:萘磺酸与甲醛、尿素和铵盐的反产应物
CAS:90459-07-7
中文名称:萘磺酸与甲醛、尿素和铵盐的反产应物
英文名称:Naphthalenesulfonic acid, reaction products with formaldehyde and urea, ammonium salts
中文名称:萘磺酸与甲醛、尿素和铵盐的反产应物
英文名称:Naphthalenesulfonic acid, reaction products with formaldehyde and urea, ammonium salts
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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