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urea-formaldehyde相关的网络例句

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与 urea-formaldehyde 相关的网络例句 [注:此内容来源于网络,仅供参考]

Anticorrosion engineering: high corrosion and rust engineering, vessel wall aggrandizement anticorrosive chimney brush color ring, cold water tower corrosion, jia steel structure antisepsis, furnace frame anticorrosive, frame anticorrosive, chimney, iron pipe anticorrosion paint anticorrosion, urea prilling tower, cooling tower corrosion and corrosion poison, radio and television tower corrosion, microwave towers, anti-corrosion, anti-corrosion chimney (packet transmission clamp, platform, anti-corrosion, nets) ladder, anti-corrosive, corrosion and corrosion, drmg-crmg road building exterior brush paint, hotel, coal conveying tents, crane bridge anticorrosion construction corrosion.

防腐工程:高空防腐除锈工程、罐体内外壁强化防腐烟囱刷色环航标,凉水塔防腐,钢结构防腐,炉架防腐,网架防腐、管道防腐,铁烟囱油漆防腐,尿素造粒塔、排毒塔防腐,冷却塔防腐,广播电视塔防腐,微波塔防腐,发射塔防腐,烟囱(包箍、平台、爬梯、护网)防腐,储油罐防腐,龙门吊防腐、行车防腐,宾馆、大厦外墙刷涂料,煤棚输煤栈桥防腐,吊机防腐等施工工程。

Results show that microbial biomass carbon and microbial biomass nitrogen in fertilized soil peak in the first several days, and then decline. Incubating both sweet maize straw and white clover have the highest yield, maxima of 529.57 mgkg^(-1) and 75.50 mgkg^(-1) respectively. They also release respired CO2 the most among all treated soils. The best mineral nitrogen release is in white clover incubating, with a maximum of 29.81 mgkg^(-1) under a 26-day culture, and then keeping 1.60 times the control and reaching 2.48 times at 80-day culture. Sweet maize incubating has the least mineral nitrogen release. It is 13%~53% of the control under a 26-day culture, with a maximum of 7.51 mg kg^(-1). Soil nitrogen mineralization is insignificant under sweet maize incubating with urea in short-term.

研究发现,各施肥处理的土壤微生物量碳、微生物量氮均在培养前期出现峰值,后期平稳降低;甜玉米桔秆和白三叶草绿肥同时还田的土壤微生物量碳、微生物量氮在各培养时期均最大,峰值分别达529.57 mgkg^(-1),和75.50 mgkg^(-1),土壤呼吸产生的CO2最多;白三叶草绿肥单独还田有利于土壤无机氮的释放,培养第26d无机氮达到最大值,为29.81 mgkg^(-1),之后一直在对照处理的1.60倍以上,第80d达到2.48倍;甜玉米秸秆单独还田不利于土壤无机氮的释放,培养的第26d至结束,甜玉米秸秆处理的无机氮为对照的13%~53%,最大为751 mgkg^(-1);甜玉米秸秆配施尿素,短期内不利于土壤无机氮矿化。

Results show that microbial biomass carbon and microbial biomass nitrogen in fertilized soil peak in the first several days, and then decline. Intercropping Incubating both sweet maize straw and white clover have the highest yield, maxima of 529.57 mg·kg-1 and 75.50 mg·kg-1 respectively. They also release the most respired CO2 the most among all treated soils. The best mineral nitrogen release is in white clover intercroppingincubating, with a maximum of 29.81 mg·kg-1 under a 26-day culture, and then keeping 1.60 times the control and reaching 2.48 times at 80-day culture. Sweet maize incubatingintercropping has the least mineral nitrogen release. It is 13%~53% of the control under a 26-day culture, with a maximum of 7.51 mg·kg-1. Soil nitrogen mineralizatiomineralization is insignificant under sweet maize incubatingintercropping with urea in short-term.

研究发现,各施肥处理的土壤微生物量碳、微生物量氮均在培养前期出现峰值,后期平稳降低;甜玉米秸秆和白三叶草绿肥同时还田的土壤微生物量碳、微生物量氮在各培养时期均最大,峰值分别达529.57 mg·kg-1和75.50 mg·kg-1,土壤呼吸产生的CO2最多;白三叶草绿肥单独还田有利于土壤无机氮的释放,培养第26 d 无机氮达到最大值,为29.81 mg·kg-1,之后一直在对照处理的1.60倍以上,第80 d达到2.48倍;甜玉米秸秆单独还田不利于土壤无机氮的释放,培养的第26 d至结束,甜玉米秸秆处理的无机氮为对照的13%~53%,最大为7.51 mg·kg-1;甜玉米秸秆配施尿素,短期内不利于土壤无机氮矿化。

Moreover, the urea vaporizes the pH of quantity and soil to present a just related relation in the ammonia in the soil, when the ammonia vaporizes to have great capacity, the pH of the soil is worth to also go up.

另外,尿素在土壤中的氨挥发量与土壤的pH呈正相关的关系,氨挥发量大时,土壤的pH值也升高。

Adopted static state absorption a method to study to join to protect the empress of of water to the influence that the urea ammonia vaporizes in the soil.

采用静态吸收法研究了土壤中加入保水剂后对尿素氨挥发的影响。

The dynamics equations of soil water vaporizing and ammonia volatilizing hcluding the factors of water and temperature, and the dynamics-like equation of urea transforming into ammonium nitrogen in soil are founded in the paper, by taking the effect of interaction of water and temperature as subject, the dynamic change character of object studied as basis and using principle of chemical dynamic; The empirio-equations of soil water retention curve including temperature and the empirio-equations including temperature between water potential of millet seedling leaves and soil water are founded in order to make the equation of relation between water potential and water content in soil suit the demand of temperature change much better.

本文以水热耦合效应为主题,基于研究对象的动态变化特征,应用化学动力学原理,建立了含水、热因子以及水热耦合效应的土壤水分蒸发、肥料氨挥发动力学方程,以及施入土壤中的尿素转化为铵态氮的动力学型方程;为使水势—含水量关系式更好适应变温条件应用的要求,建立了含温度因子直接表征土壤持水曲线的经验方程,以及含温度因子的谷苗叶水势与土壤含水量关系经验方程。

The dynamics equations of soil water vaporizing and ammonia volatilizing hcluding the factors of water and temperature, and the dynamics-like equation of urea transforming into ammonium nitrogen in soil are founded in the paper, by taking the effect of interaction of water and temperature as subject, the dynamic change character of object studied as basis and using principle of chemical dynamic; The empirio-equations of soil water retention curve including temperature and the empirio-equations including temperature between water potential of millet seedling leaves and soil water are founded in order to make the equation of relation between water potential and water content in soil suit the demand of temperature change much better.

本文以水热耦合效应为主题,基于研究对象的动态变化特征,应用化学动力学原理,建立了含水、热因子以及水热耦合效应的土壤水分蒸发、肥料氨挥发动力学方程,以及施入土壤中的尿素转化为铵态氮的动力学型方程;为使水势—含水量关系式更好适应变温条件应用的要求,建立了含温度因子直接表征土壤持(来源:A9eBC7b4b论文网www.abclunwen.com)水曲线的经验方程,以及含温度因子的谷苗叶水势与土壤含水量关系经验方程。

Penicillin G sulphoxide is esterified by N,N′-bistrimethylsilyl urea under the temperature 55℃ with a molar ratio 2.5∶1 between BSU and sulphoxide,and the ester obtained is ring-enlarged in the toluene under refluxing with the exist of catalyst-pyridine acetyl bromide.

摘 要 本文在制得青霉素G亚砜的基础上,完成了重排酸的扩环反应,重点探讨了扩环反应的最优化条件。青霉素G亚砜与N,N′-双脲在55℃下反应,得到亚砜的酯化物。

Content of the project: utilize CO2 resource, to set up production lines of methyl carbonate, granular dry ice powder, salicylic acid, sodium carbonate and ethylene urea etc.

项目介绍:项目内容:利用二氧化碳资源,新建碳酸二甲酯、颗粒干冰粉、水杨酸、轻质氧化鲜、碳酸钠、乙撑脲生产线。

Content of the project: utilize CO2 resource, to set up production lines of methyl carbonate, granular dry ice powder, salicylic acid, sodium carbonate and ethylene urea etc.

项目内容:利用二氧化碳资源,新建碳酸二甲酯、颗粒干冰粉、水杨酸、轻质氧化鲜、碳酸钠、乙撑脲生产线。

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