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The optimal synthesis conditions are that when the mass ratio of amylum and acrylamide is 3:1; NaOH is 75% of acrylamide; the concentration of ammonium ceric nitrate is 5 mmol/L; the N, N′-methylenebisacrylamide and acrylamide is 0.2%; and the reaction temperature controlled in (60±2)℃, the water absorptivity of produced super absorbent can reach to 750 g/g for tap water.

最佳合成条件是:在淀粉与丙烯酰胺的质量比为3:1、氢氧化钠为丙烯酰胺质量的75%、硝酸铈铵的浓度为5mmol/L、交联剂N,N'-亚甲基双丙烯酰胺与丙烯酰胺的质量比为0.2%、反应温度控制在(60±2)℃的条件下,制得的保水扩蓄剂吸水率可以达到750 g水/g。

Finally, the grafting polymerization of textile materials initiated by microwave low temperature plasma was conducted. Knitted cotton fabric was grafted by AMPS first, then knitted cotton and terylene/cotton fabrics were grafted with AMPS/NIPA dualistic monomers respectively. By means of grafting polymerization, the P dualisticintelligent hydrogel was added to textile.The influences of the factors on add-on, such as treatment time and power of plasma, concentrations of crosslinking agent and total monomers, proportion of AMPS, polymerizing temperature and time etc, was studied fully. The optimal conditions of grafting polymerization initiated by microwave low temperature plasma were determined by orthogonal design, variance analysis and mathematical statistics method so as to analyze the main influencing factors. Then swelling/deswelling kinetics, temperature-sensitivity and pH-sensitivity of grafted textile were studied. The performance indexes of hydrostatic pressure, moisture permeability and bursting strength of the knitted cotton and terylene/cotton fabrics before and after grafting were compared and evaluated synthetically.

此后用微波低温等离子体引发纺织材料的接枝聚合反应,分别研究了棉针织物接枝AMPS和棉、涤棉混纺针织物接枝AMPS/NIPA二元单体,使智能凝胶以接枝的方式添加到纺织材料上;详细探讨了微波低温等离子体处理功率和时间、总单体浓度、AMPS单体浓度、交联剂浓度及聚合反应温度和时间等因素对增重率的影响,通过正交设计、方差分析及数理统计对各影响因子进行分析,确定了微波低温等离子体引发接枝聚合的最佳工艺条件;对接枝纺织材料的失水-吸水动力学、温度敏感性、pH敏感性等进行了研究;对接枝前后棉、涤棉混纺针织物的静水压、透湿性和顶破强力等服用性能指标进行了对比和综合评价。

The hydrogels synthesized displayed good swelling behavior in water, its absorbency can get up to about 94% in 5 minutes.

制备的水凝胶具有较快的溶胀速率,在5min时的吸水率可达94%左右。

The existing state and features of water in diatomite and dehydration and at different temperatures rehydratlon processes at room temperature are studied by NMR.

本文用NMR技术研究硅藻土中水的存在状态和特征及灼烧条件下的脱水和室温大气下的重吸水过程。

Secondly, according to the construction and characteristic of the N-isopropylacrylamide and the temperature-sensitivity of PNIPA hydrogel, Pdualistic hydrogel was synthesized by microwave low temperature plasma. The effects of the factors on the swelling characteristic of P dualistic hydrogel, such as treatment time and power of plasma, concentrations of crosslinking agent and total monomers, proportion of AMPS, polymerizing temperature etc, was discussed in detail. The three dimensions structure , thermostability , reversional volume , swelling/deswelling kinetics, temperature-sensitivity and pH-sensitivity of the hydrogel were also investigated. The optimal synthesizing technics of P dualistic hydrogel initiated by microwave low temperature plasma was confirmed.

在此基础上,结合NIPA的结构特征和PNIPA的温敏性,用微波低温等离子体引发聚合了P二元智能凝胶,详细探讨了微波低温等离子体处理功率、处理时间、总单体浓度、AMPS单体浓度、交联剂浓度及聚合反应溫度等因素对P二元凝胶溶胀性能的影响;并对其三维交联结构、热稳定性、失水-吸水动力学、温度敏感性、pH敏感性、体积复原性等进行了研究;确定了适合微波低温等离子体引发聚合P二元智能凝胶的最佳工艺。

The progress in the application of polyaspartic acid and its derivatives in scale inhibition,viscosity reduction,fertilizer synergism and super-absorbing networks were described in this article. polyaspartic acid ; synthesis ; scale inhibition ; viscosity reduction ; fertilizer synergia ; water-absorbing resin

聚天冬氨酸可以改变钙盐的晶体结构,是一种优良的阻垢分散剂,用于循环冷却水系统、锅炉及油气田水处理[1~3];聚天冬氨酸具有良好的降粘作用[4];聚天冬氨酸作为肥料增效剂,能促进植物生长[5,6];它还具有优良的保湿性能,用于日用化妆品和保健用品的制造[7];由聚天冬氨酸可制备高吸水树脂[8~10];另外,由聚天冬

The results show that the bacterium FH can metabolize in oil formation rather than one of parents strains, which notated as bacterium JD, show that the microbial polysaccharide, which bacterium FH producing in porous media, commendably can close off big channel, can adjust injection profile, can enhance recovery efficiency of water driving oil in nonhomogeneous formation.

研究表明:FH菌比其中的亲本菌JD菌能更好的适应油藏条件;FH菌在多孔介质中能够很好的封堵大孔道,调整水驱的吸水剖面,增加非均质油层的采收率。

Deciduous broad-leaved trees are weeping willow, Japanese pagoda tree and Chinese ash whose related degrees of appraising value are up to 0.8346, 0.7466 and 0.6565 respectively. The carbuncle are the send ground cypress, Chinese juniper hedgerow and rose whose related degree of appraising value are up to 0.7203, 0.6753 and 0.6569 respectively.

第五、苗木的盆栽试验证明,不同苗木的失水量变化、成活状况在相同处理条件下,具有相似的变化规律,而不同处理方法的土壤水分丢失速率从低至高的排序为:上覆膜、美国干水、&科瀚98&吸水剂、下覆膜及对照试验。

Division I is a manufacturer of non-woven hygiene supplies professional and productive enterprises, the company has first-class production environment, perfect quality control system, main products have non-woven gauze films, absorbent pads, incontinence pads, non-woven eye pad, triangle bandages, abdominal non-woven mats, pipes tablets, medical masks, surgical caps,, skin care wipes, spunlace non-woven fabric, such asáííand a variety of products, products are exported to Japan, Europe and the United States and Southeast Asia more than countries and regions.

我司是一家生产无纺卫生用品的专业的生产性企业,公司拥有一流的生产环境、完善的品质控制体系,主要产品有无纺纱布片、吸水垫、失禁垫、无纺布眼垫、三角绷带、无纺腹部垫、喉管片、医用口罩、手术帽、隔离衣、护肤湿巾、柔巾卷及水刺无纺布等多种产品,产品远销日本、欧美及东南亚多个国家和地区。

At 20.1℃ and RH 48.9%, The longest longevity and mean longevity per fe male and male of south-American leaf miner tested indoor in 1998, the following were 17d, 7d and 5.3d, 3d in 15%cane sugar cott on, and 19d, 6d; 10.6d, 3.5d in broad bean seedling.

在恒温20.1℃,RH48.9%的条件下,用蚕豆苗和用吸足15%的蔗糖水的棉球饲养南美斑潜蝇,测得雌、雄成虫的最长寿命、平均寿命及在蚕豆苗上的最高产卵量、平均产卵量。15%蔗糖水棉球饲养雌、雄成虫最长寿命及平均寿命是17d,7d,5.3d,3d。

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With Death guitarist Schuldiner adopting vocal duties, the band made a major impact on the scene.

随着死亡的吉他手Schuldiner接受主唱的职务,乐队在现实中树立了重要的影响。

But he could still end up breakfasting on Swiss-government issue muesli because all six are accused of nicking around 45 million pounds they should have paid to FIFA.

不过他最后仍有可能沦为瑞士政府&议事餐桌&上的一道早餐,因为这所有六个人都被指控把本应支付给国际足联的大约4500万英镑骗了个精光。

Closes the eye, the deep breathing, all no longer are the dreams as if......

关闭眼睛,深呼吸,一切不再是梦想,犹如。。。。。。