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When EMS was applied, it was found that 2.0% EMS resulted the highest microkernel rate (15.6‰). Treating the materials with 2.0% EMS for 4 hours could lead to semi-lethal. Cytological observations found that chromosome aberration phenomena such as single microkernel, double microkernel, three microkernel, chromosome bridge, resort chromosome and syncytium were presented in the mutants.

EMS诱变途径中,浓度为2.0 %处理时间为4 h的组合获得最高的微核率(15.6‰),EMS浓度为2.0 %处理时间为4 h的组合使材料达到半致死;细胞学的观察看到了单微核、双微核、三微核、染色体桥、滞留染色体和合胞体等染色体畸变现象,再生苗中发现了1棵变异株。60Co辐射的诱变途径中,20Gy的剂量使不定芽半致死,再生苗中发现了1棵变异株。

The results of research on the factors affecting titanium tannage show that high concentration NaCl medium has larger negative effect on titanium tannage. When the NaCl concentration exceeds 5%, the titanium tanning action is reduced rapiddly. Traditional NaCl pickling is unsuitable for titanium tannage, tanning in water medium directly, the best tanning effect can be obtained, so titanium tanning can not only eliminate chrome pollution, but also diminish salt pollution. The optimum tanning conditions for HPZ-Ti tan liquor are pH3. 5, TiO〓 offer of 7. 5%(based on the weight of 65% moisture pelt), the best Bascity of tan liquor is between 30% and 50%.

以HPZ—Ti鞣液为基础,研究了不同鞣制介质,鞣制pH值,鞣剂用量和浓度,鞣液的碱度,不同提碱剂,不同的预处理和后处理等因素对钛鞣的影响,结果表明:高浓度的NaCl溶液介质对钛鞣有很大的负面作用,当介质NaCl浓度超过5%,革内钛的结合量和革的Ts明显降低,传统的高浓度NaCl浸酸工艺不适合于钛鞣,在水介质中直接鞣制效果最好,所以钛鞣不仅消除了铬污染而且大大降低了盐的污染。

With increasing the environmental temperature or prolonging the thermostatic time, the transparency of the hydrogels decreases.

探讨了CMCS羧甲基取代度、GP的浓度和盐酸的浓度等因素对凝胶性能和透明度的影响。

The rheological properties, such as viscoelasticity and thixotropy of the mixed gel were investigated.

考察了总胶浓度、氯化钾浓度、制备温度、放置时间、苯甲酸钠及降解食品多糖的分子量等因素对共混凝胶体系黏度的影响,并对其流变特性进行研究。

Predominant operational variables, such as the separation and injection condition, surfactant and buffer concentration, are studied in detail.

详细研究并优化了电泳操作条件,例如分离及进样条件、表面活性剂浓度和缓冲液浓度等参数对分离效率和分离度的影响。

Dust and aspiratory dust were monitored personally on the full-mechanized mining work face, full-mechanized tunneling work face and gun tunneling work face in the coal mine to investigate the harm of aspiratory dust to the workers underground.

针对呼吸性粉尘对矿井工人身体健康的危害,对煤矿综采工作面、综掘工作面、炮掘工作面等进行分工种个体性的全尘和呼尘监测,测定了各工作面粉尘的浓度、粉尘分散度和SiO2浓度。

RESULTS: The growth speed, weight, developmental uniformity, bionergy and fecuncity of the Bombyx silkworm descent dramatically as they eat the feed that the concentration of 2,4-DCP over 0.8 mmol L~-1 or NP exceed 0.500 mmol L~-1. But the effect on reproductive capacity vary with gender difference, it's more obvious on the late-stage of development and periods of metamorphosis such as ecolysis, pupation, edosion. There may be cumulative effect inside the Bombyx siliworm.

结果 家蚕幼虫食下含0.8 mmol·L~(-1)以上浓度的2,4-DCP或0.500 mmol·L~(-1)以上浓度的NP饲料,生长速度、生长量、发育整齐度、生命力和生殖能力都明显下降;生殖能力所受影响应性别而不同;家蚕发育后期和蜕皮、化蛹、羽化等变态时期影响更加明显,在蚕体内可能有累积作用。

The factors that affected the degradation rate of methyl red are discussed, including the concentration of methyl red, the kind of electrolyte, the concentration of sodium bromide, the anodic current density, the material of electrode, the cathodic current density and the flow rate of oxygen at the catholyte.

探讨甲基红浓度、电解质种类、电解质浓度、阳极电流密度、电极材料、阴极电流密度与阴极室氧气流量等因表对甲基红电分解的影响。

The invention relates to a way to prepare nickel, manganum and cobalt hydroxide. The method includes making the mixed solution a coprecipitate with mixed solution B in base solution C. The mixed solution A contains nickel salt, manganese salt and cobalt salt, the mixed solution B is a strong base solution, the base solution C is aqueous ammonia solution. The solution A also contains ammonium salt while solution B also contains aqueous ammonia; besides, after being mixed, the molarity of ammonia in solution A and solution B is the same with that in solution C.

一种镍锰钴氢氧化物沉淀的制备方法,该方法包括将混合液A和混合液B在底液C中进行共沉淀反应,所述混合液A中含有镍盐、锰盐、钴盐,所述混合液B为强碱溶液,所述底液C为氨水溶液,其中,所述混合液A中还含有铵盐,混合液B中还含有氨水,并且参于等当量反应的混合液A中的铵盐与混合液B中的氨水在混合液A和混合液B混合后氨的摩尔浓度与底液C中氨的摩尔浓度相等。

The concentration of Cosmogenic nuclides is not only constrained by production rates and exposure time, and also closely related to surface erosion. Furthermore, the concentration is affected by geomagnetic intensity, shielding, chemical weathering, and sample geometry as well. These factors affecting Cosmogenic nuclide concentration should be calibrated when surface exposure age is calculated.

地表物质中宇宙成因核素浓度除了受到核素生成速率和地表物质的暴露时间制约外,还与地表侵蚀速率密切相关,此外,地磁场强度、遮蔽、化学风化及样品的几何位置等也会对核素浓度产生一定影响,在求算样品的地表暴露年代时,应对这些因素进行相应的校正。

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