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产气速率 Gas generation rate英语短句 例句大全

时间:2019-12-15 22:02:46

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产气速率 Gas generation rate英语短句 例句大全

产气速率,Gas generation rate

1)Gas generation rate产气速率

2)generation rate产气速率

pared with the MSW landfill alone, the landfill gasgeneration 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

3)smoke produce rate烟气产生速率

4)production rate产酸速率

1.L-lactic acidproduction 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

英文短句/例句

1.Correlation between the alcohol dehydrogenase activity of acetic acid bacteria and acid-producing rate in vinegar production食醋生产中醋酸菌乙醇脱氢酶的活性与产酸速率关系的研究

2.Significantly increase of glycolytic flux and pyruvate productivity in Torulopsis glabrata by heterologous expression of NADH alternative oxidase异源表达NADH选择性氧化酶提高光滑球拟酵母酵解速率及丙酮酸生产强度

3.Determination of the Rate Constantsin Ethyl Acrylate Saponification;丙烯酸乙酯皂化反应速率常数的测定

4.Relationship between stock sap flow rate of Zizyphus acidojujuba Hu and environmental factors酸枣树干液流速率与环境因子的关系

5.THE EFFECTS OF ORGANIC ACID SALT ADDITIVES ON DISSOLVING RATE OF LINESTONE BY SULFURIC ACID有机酸盐添加剂对石灰石硫酸溶解速率的影响

6.Strategic Study on Batch Iso-electronic Crystallization of Glutamic Acid Ⅰ Rate of Neutralizing Acid谷氨酸间歇等电结晶研究Ⅰ:调酸速率的控制

7.Influencing factors for the heat production rate of photosynthetic bacteria in hydrogen production system光合细菌产氢系统产热速率影响因素

8.The quick ratio (or acid-test ratio) is an improvement to the current ratio.速动比率(或酸性试验比率)是对流动比率的一种改进。

9.The rate at which radiant energy is used by producers to form organic substances as food for consumers.生产率,生产速率生物生产者利用太阳能生产有机物质以为消费有机体提供食物的速率

10.Enhancing Itaconic Acid Production by Air-lift Bioreactor气升式生化反应器提高衣康酸产酸率的研究

11.velocity of liquid assets流动资产周转率/流通速度

12.High-speed dryer for automatic activation glue production line.高速率自动活化胶水生产线烘乾机。

13.The Fixation of Specific Rate Equation of Transmation Reaction of the Cane Suge by Acid Catalysis酸催化蔗糖转化反应比速率方程的确定

14.Effect of molecular weight of poly(amic acid) end-capped with phthalic anhydride on the rate of imidization聚酰胺酸相对分子质量对亚胺化速率的影响

15.THE EFFECT OF MAGNETIC TREATMENT ON THE REACTION RATE OF ETHYL ACETATE SAPONIFICATION磁处理对乙酸乙酯皂化反应速率的影响

16.STUDIES ON RATE OF PHOSPHATE UPTAKE BY PHYTOPLANKTON IN XIAMEN HARBOUR厦门港浮游植物对磷酸盐吸收速率的研究

17.Upgrading of Hydrolysis Rate of Waste Activated Sludge by Ultrasonic Pretreatment;超声破解促进污泥厌氧水解酸化速率的研究

18.Determination of Oxidation Rate Constant of Sodium Formaldehyde Sulfoxylate;甲醛合次硫酸氢钠氧化反应速率常数的测定

相关短句/例句

generation rate产气速率

pared with the MSW landfill alone, the landfill gasgeneration 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

3)smoke produce rate烟气产生速率

4)production rate产酸速率

1.L-lactic acidproduction 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

5)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 highhydrogen production rate,and the maximum specifichydrogen 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 ofhydrogen 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 maximalhydrogen 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。

6)N_2O production rateNO产生速率

延伸阅读

产气杆菌产气杆菌clostridium perfringens现称“产气荚膜杆菌”,广泛分布于自然界以及人和动物肠道中的厌氧芽胞杆菌,是气性坏疽的主要病原菌。为革兰阳性粗大杆菌,长2~4μm,宽1~1.5μm。芽胞椭圆形,位于次极端,不比菌体粗,在机体内可形成荚膜,无鞭毛,不能运动。在牛乳培养基中发生汹涌发酵。可产生强烈的外毒素和多种侵袭性酶类,构成强大的侵袭力。能引起人类多种疾病,如气性坏疽、食物中毒、坏死性肠炎,并常与兼性厌氧菌混合感染,引起深部脓肿、胸腔、腹腔、盆腔感染,败血症,心内膜炎,以及胆道、泌尿道、女性生殖道感染。其中最重要的是气性坏疽。

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