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The optimal processing conditions are as follows: roasting temperature at 1 000℃, roasting time for 40 min, the ratio of NbH dosage to theoretic dosage at 1.1. The specific capacity of niobium suboxide of preparation by agate grind procedure is 69.50 mF·V·g-1, the loss is 11.25%, the leakage current is 1.8×10-4A·F-1·V-1, and the electrical properties are better than that of the national standard (GB/T 3136-1995) of FTa16-300 tantalum powder for capacitor.
用正交试验法及方差分析对玛瑙研磨工艺进行优化,得到制备低价铌氧化物最佳条件是:焙烧温度为1 000℃,焙烧时间为40 min, NbH用量与理论量之比为1.1,所制得的产物杂质含量低,比容为69.50mF·V·g-1,损耗为11.25%,漏电流为1.8×10-4A·F-1·V-1,其电性能指标高于FTa16—300电容器钽粉国家标准(GB/T 3136—1995)所规定的值。
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They are phylogenetically diverse and have been isolated under various environment conditions. Unlike other electron acceptors, Fe has a very low solubility and exists primarily as insoluble Fe oxide under neutral pH.
与其他大多数的电子受体不同,在近中性pH值条件下,Fe的溶解度很低,通常以不溶性的Fe氧化物的形式存在。
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The constructor-China Sinoma International Engineering Co., Ltd chosed the process of sieving crushing system, based on experiment and by improving process and operation, sucessfully improved the lower grade limestone's w by 2% and reduced the total content of silicoaluminate by 9%, realized using lower grade limestone as cement raw material.
承建方中国中材国际工程股份有限公司,在实验研究的基础,采取了石灰石筛分破碎系统的工艺方案,并通过优化工艺布置和操作控制举措,使低品位石灰石的w值提高2%以上,硅铝类氧化物的质量分数合计下降9%,成功实现了低劣品位石灰石作为水泥生产原料成为可行。
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In range of 300℃~900℃, all the transition metal oxide catalysts could get high ammonia conversion, during the initial stages of the reaction, the SO〓 conversion is relatively low since the catalysts have not been sulfureted, but it increases gradually and attain constant with rising temperature and time continuance,〓 is better than other catalysts in reactivity and elemental sulfur selectivity; XRD indicates that, in the SO〓-SCR process, stable transition metal sulfide is generated which is very important to SO〓 reduction and transition metal sulfide probably is the active phase of catalyst, further the reduction of SO〓 by H〓 to H〓S is the limiting step of all process, then the activity is somewhat related to its lattice oxygen yet not so notable; XPS indicates that little sulfur on surface exists as S〓 in sulfate, showing that TiO〓 could restrain the generation of sulfate.
对于过渡金属氧化物催化剂的研究发现,在300℃~900℃范围内,不同的催化剂均可获得很高的NH〓转化率,反应初期由于催化剂还未硫化,所以SO〓的转化率较低,随着温度升高和反应时间的延续,SO〓的转化率逐渐升高并达到了稳定值;七种过渡金属氧化物中,以〓对于NH〓还原SO〓反应的活性和选择性最好;XRD结果表明在NH〓-SO〓反应后生成了稳定的硫化物相,硫化物对SO〓的还原过程具有重要作用,催化剂的活性相可能是过渡金属硫化物,而且在硫化物催化剂上进行的H〓还原SO〓生成H〓S的反应是整个过程的速率控制步骤,所以催化剂的活性与其自身的晶格氧的氧化还原能力有一定的联系,但关系不明显;XPS结果表明催化剂表面的硫大部分以过渡金属硫化物的形式存在,只生成少量的S〓,说明TiO〓催化剂能够较好的抑制硫酸盐的生成。
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The iron hydroxide particles prepared above were coated with cobalt by surface adsorption-precipitation reaction. The low pH and Co〓 concentration of suspended system can prevent the nanoparticle from heterocoagulation. The saturation magnetization of MP particles with uniform cobalt hydroxide layer is 10% higher than that of the α-Fe. And a close SiO〓 layer can improve the coercivity by about 92%.
铁黄粒子表面吸附-反应沉积钴过程中较低的pH值和浓度有利于形成均匀的钴氢氧化物包覆层,可避免形成异相凝聚现象,使比饱和磁化强度提高10%;表面包覆二氧化硅形成致密的薄膜,使矫顽力提高92%。
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It possesses high oxidizing redox potential, lower PH values, available chlorine and other oxides.
但其具有高氧化还原电位(Oxidizing reducing potential ORP)、低pH值、有效氯成份和其它氧化物成份。
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liquify liquefy:的变体 (气体)液化, 变成液态, 溶解
suboxide n.[化]低值氧化物 | liquify liquefy的变体 (气体)液化, 变成液态, 溶解 | deliquescence[溶解,潮解,液化]
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subnormal temperature:低于设定值的温度
subnormal pressure 低于正常的压力 | subnormal temperature 低于设定值的温度 | suboxide 低氧化物
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subornation:收买
suborn 唆使 | subornation 收买 | suboxide 低值氧化物
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suboxide:低值氧化物
subornation 收买 | suboxide 低值氧化物 | subpena 传票
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subpackage:分装/分包
suboxide /低值氧化物/ | subpackage /分装/分包/ | subpanel /次屏板/