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1)  the rate of breaking-up ester
酯分解率
2)  Precipitation rate
分解率
1.
The precipitation rate and particle size distribution(PSD)for pure sodium aluminate solution and potassium aluminate solutions were investigated.
采用等温间歇式反应器研究了纯铝酸钠和铝酸钾溶液在种分过程的分解率、粒度分布(PSD)的变化规律,同时对分解产品进行了XRD、SEM和TG/DTG分析。
2.
It is recommended that using Al(OH) 3 from carbonatin decomposition as seed,which can increase seed precipitation rate up to 7 0%,reduce the circulating volume of the mother liquor from seed precipitation and save steam for desili.
对此 ,本文推荐取碳分Al(OH) 3 作晶种 ,能将种分分解率提高 7 0 %以上 ,借以降低种分母液循环量 ,从而可节约脱硅汽耗费用 15 0万元 /年。
3)  decomposition rate
分解率
1.
Quantitative relation between decomposition rate and curvature radius of hump on phase diagram during binary chemical compound melting;
二元化合物熔化时的热分解率与其在相图中峰顶的曲率半径的关系
2.
On this basis,Influence of addition of NaCl-CaCl2,roasting temperature and roasting time on decomposition rate of monazite with CaO is studied.
在此基础上研究了NaCl-CaCl2的加入量、焙烧温度和焙烧时间对氧化钙分解独居石分解率的影响,结果表明,NaCl-CaCl2的加入量为10%、焙烧温度750℃、焙烧时间1h的条件下,氧化钙分解独居石的分解率可达到79%。
3.
Based on the regression equation, the effect of CaO , NaCl, roasting temperature on monazite decomposition rate is discussed.
研究了630℃~870℃焙烧温度范围内,CaO、NaCl对独居石分解率影响的变化规律,得出了相应的回归方程,并且用该方程讨论了CaO、NaCl、焙烧温度对独居石分解率的影响。
4)  precipitation ratio
分解率
1.
Effect of oil-soluble additive on precipitation ratio from sodium aluminate solution and granularity of Al(OH)_3;
油溶性添加剂对铝酸钠溶液种分分解率和Al(OH)_3粒度的影响
2.
The effects of several different types of surfactants on the precipitation ratio of sodium aluminate were studied.
采用向铝酸钠溶液中添加表面活性剂来强化其晶种分解过程,考察了不同类型的表面活性剂对铝酸钠溶液种子搅拌分解过程分解率的影响·试验结果表明,加入一定量的高分子聚合物可强化分解过程的进行,阳离子和非离子表面活性剂可使分解率提高2%左右;而分子量较大的阴离子表面活性剂可使溶液分解率提高6%左右
3.
It has been proved that the organic additives can change the process of precipitation, improve the precipitation ratio and increase the particle size during the seed precipitation of sodium aluminate solution.
在拜耳法铝酸钠溶液种分过程中,采用适当的有机添加剂可以改变氢氧化铝的结晶过程,提高种分分解率,获得粒度较大的氢氧化铝。
5)  resolution ratio
分解率
1.
This fuzzy rules were applied to control the resolution ratio of last ce.
首先建立基于模糊规则和模糊推理的模型,然后以稳态误差为优化目标,应用混合编码的遗传算法同时优化模糊控制隶属度和推理规则,将获得的模糊规则应用于末槽分解率的控制,获得了良好的应用效果。
2.
Considering long time delay and strong coupling existed in the process of continuous carbonation decomposition,an intelligent resolution ratio control system is developed.
针对连续碳酸化分解过程具有大滞后、强耦合的特点,建立了分解率模糊智能控制系统,将稳态误差作为目标函数,用遗传算法优化隶属函数参数和模糊推理规则。
3.
Based on the principle of thermal balance and materials balance in lime furnace,a calculation model used for on-line testing the resolution ratio of baked limestone in lime furnace is conducted by using of parameters that can be measured in spot.
基于石灰炉热衡算和物料衡算原理 ,在现场可测参数的基础上 ,导出了石灰石煅烧分解率的在线监测模型 。
6)  decomposition rate
分解速率
1.
Responses of decomposition rate,nutrient return and composition of leaf litter to thinning intensities in Pinus tabulaeformis plantation;
油松叶凋落物分解速率、养分归还及组分对间伐强度的响应
2.
Organic carbon decomposition rate in different soil types;
不同类型土壤有机碳分解速率的比较
3.
Long-term decomposition rate of logging slash of a 29-year-old Chinese fir plantation;
29年生杉木林采伐剩余物长期分解速率
补充资料:电导率(见电阻率)


电导率(见电阻率)
conductivity

d!日nd日O}已电导率(eonduetivity)见电阻率。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条