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排序方式: 共有62条查询结果,搜索用时 16 毫秒
1.
Because vanadium (V) is easily reduced to a cationic form within plant cells, data from resin-extraction of soil were analysed for evidence of interactions between V and the resin-extractable concentrations of magnesium (Mg) and calcium (Ca) on soybean seed yield. Three varieties, 9091, 9061 and 704, were grown over a 3-year period in a corn–soybean–wheat rotation. Surface soil samples (0–15 cm) were extracted with ion-exchange resins, extracts were analysed by inductively coupled plasma methods (ICP), and the results were regressed against seed yield using SAS PROC STEPWISE analysis using forward selection, backward elimination and maximum R2 routines. The seed yield of each variety showed a correlation with a unique set of resin-extractable concentrations of V, phosphorus (P), Mg and Ca, and the V:(V + P), Mg:(Mg + Ca), Mg:(Mg + 1000 V) and Ca:(Ca + 1000 V) ratios. Variety 9091 was most sensitive to the Mg:(Mg + Ca) ratio. Variety 9061 was most sensitive to extractable V and to the V:(V + P) ratio. Variety 704 was sensitive to extractable P, V and Ca and the Mg:(Mg + 1000 V) ratio. For variety 9091, Mg fertilization (not currently practised) may be an economical practice, whereas P fertilization of 704 may not be economical. Each regression technique varied slightly in identification of important factors in seed yield. Concentrations and ratios of resin-extractable elements in soil provide insights into optimal genotype selection and possible management alternatives for a given soil.  相似文献   
2.
Converter vanadium recover is a very sophisticate reaction which is diverse and non- line. From the point of view of statistics and reaction mechanism, it is difficult to build up end- point control static model. Aim at this problem, the paper puts forward a model identify method based on incremental genetic RBF neural network to build up such a model, which can perfectly resolve the problem of random selection of RBF cluster center number and sample data clustering. Furthermore, in order to ensure structure of neural network to fit with continuous incremental data set, the paper presents a method of incremental data dealing, which is applied to amend the parameters of neural network. Then the request of continuous production is satisfied. Finally the result of test shows that after adopting the algorithm, the error of result is less than before and end- point hitting ratio satisfies to ninety percent. These indicate the algorithm has the engineering practicability.  相似文献   
3.
钒钼黄比色法测定食品中磷的研究   总被引:1,自引:0,他引:1  
建立了钒钼黄比色法测定食品中磷的检测技术 ,该法通过消解液酸度的调节 ,显色剂的替换 ,应用钒钼黄比色法测定食品中磷的含量.当磷溶液浓度范围在[1mg/L~20 mg/L ]时 ,线性回归良好 ;回收率范围为94%~97% .用此法测定了国家标准参考物质 ,与国标方法测定食品中磷的含量进行了比对 ,结果表明 :测定结果与国标方法的测定结果比较无显著统计学差别 ,说明该方法可用于食品中磷的测定.  相似文献   
4.
为了验证用CO2替代部分O2进行转炉氧化提钒的可行性,在实验室进行了CO2-O2混合喷吹提钒模拟实验。结果显示C的氧化量与C的氧化速率随CO2含量的增加而升高;V的氧化量随CO2含量的增加而降低,其中CO2含量为20%与纯O2对C、V的氧化量接近;纯O2喷吹时C的氧化量为34.56%,V的氧化量为96.85%;CO2含量为20%混合气体喷吹时C的氧化量为36.83%,V的氧化量为93.29%;以V的相对氧化量与C的相对氧化量的比值(ΔV/ΔC)来衡量提钒保碳能力,CO2含量为20%的最终ΔV/ΔC为5.96,CO2含量,40%、60%、80%的最终ΔV/ΔC均小于3.8;反应前期,V的氧化速率随CO2含量的增加而升高,反应后期V的氧化速率随CO2含量的增加而降低。  相似文献   
5.
通过盆栽试验和Tessier连续提取法,研究了蔬菜根际和非根际土壤中钒的形态分布与植物有效性。结果表明,钒在根际和非根际土壤中主要以残渣态和铁锰氧化物结合态存在,钒的含量随其形态不同而变化:当土壤中钒添加量从25mg·kg^-1增加到200mg·kg^-1时,根际土壤交换态钒的百分率增加了9.89%,碳酸盐结合态钒增加了9.38%,铁锰氧化物结合态钒增加了9.99%,残渣态钒的百分率下降了33.6%。土壤添加的钒量增加时,钒的迁移能力增强,使蔬菜的生物量显著降低,蔬菜对钒的吸收作用增强:钒添加量从0增至200mg·kg^-1时,蔬菜鲜质量降低了41.65%,而蔬菜中85%以上的钒积累在根部。根际土壤中碳酸盐结合态钒含量对植物的根、茎叶中钒含量有显著影响,碳酸盐结合态钒与蔬菜鲜质量呈显著负相关。  相似文献   
6.
通过盆栽试验,研究了钒(V)胁迫下不同品种水稻植株中钒的积累和化学形态。结果表明,不同品种水稻各器官中V的分布为根>茎>叶>子实,两种水稻品种吸收的V主要富集在根部。水稻生长期新优188水稻各器官中V的浓度均低于十优838水稻,如在V处理浓度为100 mg·kg-1时,在分蘖期、扬花期、灌浆期和成熟期,新优188水稻植株根中V含量分别为73.10、92.56、57.46、57.81 μg·g-1,茎叶中为8.79、4.52、2.13、2.56 μg·g-1;十优838水稻植株根中的V含量为59.14、94.93、88.59、89.70 μg·g-1,茎叶中为4.64、3.66、2.29、3.24 μg·g-1。推断十优838水稻较新优188水稻有较强的V吸收能力。两种水稻品种中,根部V主要以活性较低的盐酸提取态(FHCl)和醋酸提取态(FHAc)为主,茎和叶中V主要以盐酸提取态(FHCl)和水提取态(Fw)为主,认为V在水稻根部多以难溶于水的重金属磷酸盐或草酸盐而被固定,限制了水稻中V转移到茎和叶,从而避免了高浓度V对植物光合作用及其他生理过程的干扰。  相似文献   
7.
取1日龄AA肉仔鸡144只,随机分为对照组和试验组,在试验组鸡的基础日粮中按0、30mg/kg添加钒。试验期共42d,每周末从每组取鸡6只,称重后扑杀,取胸腺、腔上囊和脾称重,Bouin液固定,制作石蜡切片,观察、摄像,研究钒对肉鸡胸腺、腔上囊和脾等免疫器官质量、器官指数和组织结构发育的影响。结果显示,试验组鸡的胸腺、腔上囊和脾平均质量和器官指数显著或极显著高于同日龄对照组(P〈0.05或P〈0.01);试验组鸡的胸腺小叶皮质增厚,胸腺小体增多;腔上囊皱襞发达,腔上囊淋巴滤泡体积较大、皮质较厚、退化延缓;脾小结体积较大、生发中心明显,动脉周围淋巴鞘增厚,椭球增大。结果表明,在肉雏鸡的日粮中添加钒30mg/kg,可促进胸腺、腔上囊和脾的发育,延缓腔上囊的退化。  相似文献   
8.
Resin extraction of soil permits evaluation of ratios of readily extracted elements and correlation of concentrations obtained with crop yield. This information provides guidance on potential genotype selection and fertility management. Two hybrids of maize ( Zea mays L.), designated 2292 and 3895, were grown annually in rotational succession on a 3.2-ha site with soybean ( Glycine max L.) and wheat ( Triticum aestivum L.). Soil samples (0–15 cm) were extracted with ion-exchange resins and extracts were analysed with inductively coupled plasma. Data were regressed against crop yield using stepwise multiple correlation methods. Each hybrid was sensitive to unique combinations of extracted chemistries. Both hybrids of maize were sensitive to the resin-extractable V : (V + P) molar ratio and potential losses of ≥ 20 % were indicated as the ratio approached 0.2. A positive response to the Mg : (Mg + Ca) resin-extractable ratio was noted for maize hybrid 2292 in each of three successive years. Changes of yield potentials associated with the Mg : (Mg + Ca) ratio for hybrid 2292 ranged from none to ≥ 20 % as the ratio ranged from 0.2 to about 0.8. The results indicate that, in the presence of large extractable concentrations of competing or inhibitory ions, different approaches to nutrient management in the form of fertilizer nutrient analysis, application, and genotype selection are needed to overcome effects of competing ions.  相似文献   
9.
建立了适合全钒液流电池计算的电化学模型,并对部分电化学模型进行了简化;利用建立起来的电化学模型,数值模拟了在一个充放电循环过程中钒离子浓度、质子浓度、电流、温度与电解液流量对电堆性能的影响,数值模拟表明:电流越大,电堆的充放电时间越短,电堆的电压效率与能量效率越小;总钒离子浓度越大,电堆的充放电时间越长,电堆的电压效率与能量效率也越大;硫酸浓度、温度和电解液流量,不影响电堆的充放电时间,但影响电堆的电压效率与能量效率。  相似文献   
10.
利用1-(2-吡啶偶氮)-2萘酚(PAN)分光光度法测定了土壤中痕量钒,选择最能显著提高显色反应的灵敏度,且对反应最小干扰的表面活性剂。结果表明:在钒(V)-PAN形成的络合物中加入表面活性剂可以显著提高显色体系的灵敏度。在测量土壤中微量钒试验中选择十二烷基苯磺酸钠(SDBS)作为最佳表面活性剂。为了试验中络合物的吸光度最大且稳定,实验选取8%的十二烷基苯磺酸钠(SDBS)溶液1mL。  相似文献   
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