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1)  Ammonia excretion rate
排氨率
1.
Effects of salinity and body weight on oxygen consumption rate and ammonia excretion rate of Hemifusus tuba(Gmelin);
盐度及规格对管角螺耗氧率和排氨率的影响
2.
Effects of temperature on oxygen consumption rate and ammonia excretion rate of Acanthopagrus schlegeli;
温度对黑鳍棘鲷耗氧率与排氨率的影响
3.
Effects of temperature and body size on oxygen consumption rate and ammonia excretion rate of Monodonta labio;
温度和个体大小对单齿螺耗氧率和排氨率的影响
2)  ammonia-N excretion rate
排氨率
1.
Studies on oxygen consumption rate and ammonia-N excretion rate of Moerella iridescens;
彩虹明樱蛤的耗氧率与排氨率研究
2.
Oxygen consumption and ammonia-N excretion rates of Pteria penguin
企鹅珍珠贝耗氧率和排氨率的研究
3.
Oxygen consumption rate and ammonia-N excretion rate of Barnea dilatata seed were studied under different temperatures.
结果表明,温度对宽壳全海笋稚贝的耗氧率、排氨率有显著影响,在14~34℃范围内,耗氧率和排氨率随着温度的升高而增大,排氨率与温度相关方程:y=0。
3)  NH3-N excretion rate
氨氮排泄率
1.
Primary study on oxygen consumption and NH3-N excretion rate of larvae, juvenile and young Pelteobogrus fulvidraco;
黄颡鱼仔、稚、幼鱼耗氧率及氨氮排泄率的初步研究
4)  ammonia emission
氨气排放
1.
Research progress of models for predicting ammonia emission in swine houses;
猪舍氨气排放预测模型的研究现状
2.
Excessive ammonia emission not only results in loss of nitrogen in feed, but also brings pressure toenvironment.
过多氨气排放不仅造成大量饲料氮浪费,而且增加了环境压力,猪舍内排放的氨气是农业氨气源的重要组成部分。
5)  ammonia-N excretion
氨氮排泄
1.
The rates of ammonia-N excretion were 2.
在不同的温度水平下,对瓦氏黄颡鱼的氨氮排泄率及鱼体组分进行了测定。
2.
An experiment was conducted to evaluated the effect of temperature on ammonia-N excretion rates and energy utilization in Pelteobagrus vachelli during starvation.
以瓦氏黄颡鱼幼鱼为研究对象,测定了温度对其氨氮排泄率的影响。
6)  ammonia excretion
排氨量
1.
Oxygen consumption rate and ammonia excretion rate of Haliotis discus hannai were studied at 12,16,20,24,28℃ in this paper.
皱纹盘鲍的耗氧量和排氨量的实验结果表明 :温度和体重对鲍的耗氧量和排氨量有明显的影响 ,且两因子间存在着交互作用 。
2.
Oxygen consumption rate and ammonia excretion rate were studied at 16,20,24,28 ℃ in this paper.
实验结果表明 ,温度和体重对虾夷马粪海胆的耗氧量和排氨量有明显的影响 ,且两因子间存在着交互作用。
补充资料:氨合成平衡速率氨平衡合成率
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性质:又称氨合成平衡速率氨平衡合成率。在不同的催化反应条件下,氨合成反应达到一定程度的化学平衡时氨合成的反应率或合成率。在实际氨合成生产中,不可能达到平衡氨合成率,在工业上设计氨合成塔时,就必须着眼于它的运行能最大限度地接近平衡氨合成率。

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