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1)  water absorbing capacity
吸水能
2)  water absorbency
吸水性能
1.
In this paper,the effect of the adding form of capsaicin, reaction temperature,reaction time,amount of initiator,neutralization degrade of acid-acrylate,amount of cross- linking agent on water absorbency has been studied.
文章主要考察了添加辣椒碱形式、反应温度、反应时间、引发剂用量、丙烯酸中和度、交联剂用量对合成产物吸水性能的影响。
2.
The superabsorbent resin was synthesized by crosslinking PSI with hexanediamine,and the effect of polymerization degree of PSI on superabsorbent resin\'s water absorbency was investigated.
采用己二胺对PSI进行交联反应,制备了可生物降解的高吸水性树脂,探讨了PSI聚合度对吸水倍率的影响,结果表明,PSI聚合度越高,树脂的吸水性能越好。
3)  absorbing property
吸水性能
4)  absorbency [英][əb'sɔ:bənsi]  [美][əb'sɔrbənsɪ]
吸水性能
1.
The results show that the glass transition temperature of fibers blended with PVA was lowered and the fibers became more flexible,and that the absorptive speed and the equilibrium amount of water absorbency of sepiolite-filled fibers were.
通过添加有机物或无机物对丙烯酸-丙烯酰胺共聚物进行共混改性,制备具有较好吸水性的丙烯酸-丙烯酰胺共聚纤维,分析和讨论了共混物对纤维形貌、热性能及吸水性能的影响。
5)  Injectivity
吸水能力
1.
A comprehensive study has been made on the descendent injectivity of injection wells in Rongxingtun oilfield, based on experimental data, in?situ sampling and analyses.
以荣兴屯油田储层特征研究成果为基础 ,以室内实验数据为依据、通过现场取样和化验分析 ,对荣兴屯油田储层吸水能力下降的原因进行了综合性研究分析 ,结果表明 :荣兴屯油田注水井吸水能力下降的主要原因是储层自身物性差、注入水水质不合格、注入水与产层不配伍及不适宜的注水强度。
6)  water injectivity
吸水能力
1.
An analysis of water injectivity in the pilot area of SZ36-1 oilfield and a preliminary probing into water-injection mode of viscous oilfield;
绥中36-1油田试验区注水井吸水能力分析及稠油油田注水模式初探
2.
Method\ The numerical simulation has been taken to study the influence of water temperature on reservoir temperature, reservoir production effect, BHP of injection well and water injectivity in high pour-point reservoirs.
方法 利用数值模拟方法 ,研究了热水驱开采高凝油油藏中注水温度对油藏温度、油层开采效果、注水井井底压力及油层吸水能力等的影响。
3.
By analyzing water injectivity and production capacity in main microfacies sandbodies,it is concluded that the distributary channel and the mouth bar have more production capability than the front sheet sand has at the late stage of oilfield development.
分析了双河油田储层主要微相砂体的产液和吸水能力,认为油田开发后期前缘席状砂提液能力差,而水下分流河道和河口坝具有较强的提液能力;油田开发后期前缘席状砂吸水能力差,难以补充提液后造成油层压力亏空,而水下分流河道和河口坝具有较强的吸水能力,很容易实现注采平衡,保证油井持续提液。
补充资料:吸水性
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性质:皮革的一项重要性能指标。吸水性小表明革的防水性好。革的吸水性取决于革的孔率和革纤维编织结构的紧密程度,并与革内油脂含量及填充程度有关。测定方法是将试样革块浸入规定温度的定量水中,经2h和24h后分别取出,测定吸水后的试样与试样原重量之比,以百分率表示。

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