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There are some characteristics in thermal test and calculation of boi ler burning these fuel s, such as the calculation of excess air coefficient for large content nitrogen. Fuel characteristic coefficient would be negative. Its necessary to convert fr o m heat content into volume content for the gas fuels calculation.

用这种燃料的锅炉,其热力试验和热力计算有若干特点,如高含氮量的气体燃料过量空气系数的算法,气体燃料特性系数出现负值,将给定燃料的热量份额换算成体积份额,试验中多个取样断面等。

The results show that BFRC has favorable impact compressive strength and deformation;,and the impact compressive strength and deformation of BFRC is relational with strain rate and fibre volume content; with strain rate increasing, impact compressure strength and deformation enhance; the impact compressure strength of BFRC is better when the fibre volume content is 0.1%, and the deformation performance of BFRC is better when the fibre volume content is 0.3%.

研究结果表明,BFRC具有良好的冲击压缩强度和变形性能,且其冲击压缩强度和变形与应变率和纤维掺量有关;BFRC的冲击压缩强度和变形随应变率的增大而增加;纤维掺量为0.1%的冲击压缩强度较高,纤维掺量为0.3%时的变形性能较好。

Because three differences lie in the pearlite to have the round arc crack which the condensation forms, calls the pearlite structure, the water content 2~6%; The pitchstone has the unique resinous luster, the water content 6~10%; The black sunlight crag has the glassy luster and the conchoidal fracture, the water content is smaller than 2% generally.

三者的区别在于珍珠岩具有因冷凝作用形成的圆弧形裂纹,称珍珠岩结构,含水量2~6%;松脂岩具有独特的松脂光泽,含水量6~10%;黑曜岩具有玻璃光泽与贝壳状断口,含水量一般小于2%。

PAL activity, chitinase activity, total Polyphenol content and total Flavonoids content in soybean leaves induced by the same crude toxin and race were similar, it stated that the crude toxin is an important factor which can induce resistant substances, but the induced speed and the induced intensity by the crude toxin and conidium were different. Firstly, the induced speed of crude toxin which induced PAL activity and total Flavonoids content of resistant soybean varieties was faster than speed of C.

同一生理小种的粗毒素与灰斑病菌对大豆叶片内PAL活性、总多酚类含量、总黄酮含量以及几丁质酶活性等几种生化指标均表现出相似的诱导作用,由此可推断粗毒素是诱导大豆叶片内的PAL活性、总多酚含量、总黄酮含量以及几丁质酶活性产生变化的主要生物因子,只是二者在对抗性不同的大豆品种的诱导速度及强度上存在一定的差异。

In the first one, the content of endogenesis ZR in new corm sharply declined, while in cormel it slightly went down. Content of GA3 in cormel continuously went down. The case of ABA kept in a low level. Change of content of IAA didn't show obvious law.

籽球形态建成初期,新球内源ZR含量急速下降,籽球略有下降;籽球GA3含量持续快速下降;ABA维持较低水平;IAA含量变化规律不明显。

The preventive measures for the harmful defects of alkali metals are as follows: 1, reducing the alkali metals content in the raw materials; 2, increasing the MgO content of the sinter , decreasing the basicity of slag , decreasing the Si content of the pig iron, increasing relative slag volume; 3 , introducing prereduced ore pellets or partly reducted sinter; 4increasing the ability of coke resisting alkali metals; 5, using refractories that have the ability of resisting corrasion of alkali metals; 6 , cleaning the blast furnace periodically. The above recommendations are necessary for decreasing the circulation and accumulation of alkali metals effectively in blast furnace, reducing the harmful influence of alkali metals on blast furnace, increasing the smelting intensity, decreasing the coke rate, improving the gas permeability.

基于碱金属对高炉冶炼的上述危害,本文结合湘钢高炉的实际生产情况,通过理论分析、计算以及其他钢厂防治碱害的经验,提出防治高炉碱害的措施:1、减少入炉原、燃料的碱金属含量;2、提高烧结矿中的MgO含量、降低炉渣碱度、降低生铁含硅量、适当增加渣量;3、采用预还原的金属化球团或部分还原的烧结矿;4、提高焦炭的抗碱能力;5采用抗碱侵蚀的耐火材料;6、周期性性洗炉,以有效地减少碱金属在高炉内的循环富集,降低碱金属对高炉的危害,提高高炉的冶炼强度,降低焦比,改善高炉透气性。

Several coterminous bands could be observed by PAGE of natural Eisenin Ⅰ and several coterminous peaks of Eisenin Ⅰ were also detected with MALDI-TOF-MS when the molecular weight of three main peaks are 24, 645, 25, 052 and 25, 281, separately. The amino acid composition of Eisenin Ⅰ(pI. 8) is specilized with high content of acidic amino acids and low content of alkaline amino acids; At the same time, the content of Ser and Thr are quite high and that of Lys, Met, Phe and Trp are quite low. Eisenin Ⅰ is highly homologous with serine proteases. Then, by fibrin plate assay, Eisenin Ⅰ was identified to be a plasmin and also a plasminogen activator, and the fibrinolytic activity was inhibited by PMSF (an inhibitor of serine proteases).

赤子素Ⅰ氨基酸组成特点为高的酸性氨基酸和低的碱性氨基酸含量,且Ser、Thr含量高而Lys、Met、Phe和Trp含量很低;等电聚焦电泳测得其等电点pI.8.N端序列比较结果显示赤子素Ⅰ与丝氨酸蛋白酶类高度同源,纤维蛋白平板法测得赤子素Ⅰ同时具有纤溶酶和纤溶酶激酶活性;通过PMSF对赤子素Ⅰ纤溶酶活性的抑制实验证明,赤子素Ⅰ属于丝氨酸蛋白酶类。

But the EGTA treatment had the opposite effect.(3)During chilling stress,Ca~(2+)treatment could delay the decrease of K~+,Mg~(2+), soluable protein content and the increase of Ca~(2+)content;And it could enhance the increase of soluable sugar,free amino acid,proline,heat stable protein and Na~+ content of the heat-shock-induced cucmber seedings.Then it enhanced the osmoregulation ability and delayed the decrease of water potential of the heat-shock-induced cucmber seedings.But the EGTA treatment had the opposite effect.

3钙处理能减缓冷胁迫下热激黄瓜幼苗的可溶性蛋白质、K~+、Mg~(2+)含量的下降以及Ca~(2+)含量的上升,增强可溶性糖、游离氨基酸、脯氨酸、热稳定蛋白和Na~+含量的上升,增强了热激黄瓜幼苗的渗透调节能力,从而缓解了低温下水势的下降;而EGTA处理则相反。

The results indicated that the content of lead and cadmium in all surveyed vegetables exceeds the limits of their standards out and away, the content of zinc only in root vegetable, shallot vegetable and leaf vegetables exceeds the limit of it standard a little, and the content of cupper in vegetables is under limit of it standard.

就一铅锌冶炼厂周边蔬菜对重金属的吸收与富集进行了研究,结果表明:所有被检测蔬菜中Pb和Cd含量严重超标;根类、葱类和叶菜类蔬菜中Zn含量有所超标,其它种类蔬菜一般未超标;蔬菜中的Cu含量未超标。

For the composites with a low content of TiC particle, the rupture manner was mainly the nucleation of cavity and following ductility splitting fracture. But for the composites with a high content of TiC particle, the cracking and decohesion of TiC particles were the main rupture mechanism. For the composite containing a middle TiC content, the rupture mechanism consisted of the above two styles, but the former was the dominating mechanism and the later was the subordinate mechanism.

对TiC体积分数较低的钢基复合材料,拉伸过程中TiC颗粒界面上的孔洞形核及随后塑性撕开机制是其断裂失效的主要机制;对TiC体积分数较高的钢基复合材料,拉伸过程中TiC颗粒的开裂及脱落是其断裂失效的主要机制:对TiC体积分数介于上述两者之间的钢基复合材料,拉伸过程中TiC颗粒界面上的孔洞形核及随后塑性撕开机制在其断裂失效过程中占主要地位,而TiC颗粒的开裂及脱落占次要地位。

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