25 resultados para soybean soapstock (SS)

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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This paper describes an attractive method to make biodiesel from soybean soapstock (SS). A novel recovery technology of acid oil (AO) from SS has been developed with only sulfuric acid solution under the ambient temperature (25 +/- 2 degrees C). After drying, AO contained 50.0% FFA, 15.5% TAG 6.9% DAG 3.1% MAG 0.8% water and other inert materials. The recovery yield of AO was about 97% (w/w) based on the total fatty acids of the SS. The acid oil could be directly converted into biodiesel at 95 degrees C in a pressurized reactor within 5 hours. Optimal esterification conditions were determined to be a weight ratio of 1 : 1.5 : 0.1 of AO/methanol/sulfuric acid. Higher reaction temperature helps to shorten the reaction time and requires less catalyst and methanol. Ester content of the biodiesel derived from AO through one-step acid catalyzed reaction is around 92%. After distillation, the purity of the biodiesel produced from AO is 97.6% which meets the Biodiesel Specification of Korea. The yield of purified biodiesel was 94% (w/w) based on the total fatty acids of the soapstock.

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野大豆群体3和群体4属盐渍群体,其个体有的是抗盐的,有的是敏感的,有的是中等抗盐的,本文通过随机扩增多态性DNA (RAPD)和DNA扩增指纹(DAF)分析野大豆群体抗盐性与分子标记之间的关系,从而更好地研究野大豆群体的盐适应机理。通过12个RAPD引物和3个DAF引物扩增发现:引物OPF05,OPF19和OPH02的扩增产物中有与抗盐性可能相关的特异标记,分别是OPF05_(213);OPF19_(4361);OPF19_(1727);OPF19_(1400);OPF19_(700);OPH02_(1350)。这些特异标记在所研究的抗盐植株中都存在;在敏感型植株中都不存在;在中等抗盐植株中有的存在,有的不存在。以上表明野大豆群体的抗盐性与RAPD分子标记有一定的相关性。为进一步研究抗盐性的特异标记,本文对栽培大豆抗盐品种Morgan和文丰七号的特异DAF标记片断8-27_(240) (Zhong et al., 1997)进行了克隆测序,测序结果通过BLASTn程序与基因库中的基因序列进行同源比较,发现上的DNA序列中的19组(每组大约二十到三十个碱基)序列与基因库中的其它基因相应序列有很高的同源性,几乎全部100%同源。尤其目的序列第15个碱基到第33个碱基(共19个碱基)之间的序列与基因库中的25个基因的相应序列的同源性全部是100%,并且与之相比的基因大多来自动物和人。因而推测其有可能是保守区,而不是编码区。进一步用DNASIS软件分析其碱基组成(A/T含量是64.9%,G/C含量是35.1%)并进行翻译,结果同样表明此序列可能是一调控序列并非编码区。至于这段序列是否与抗盐紧密相关,这有待于以后把此序列转到敏感型植株中然后检测其抗性来验证。 本文还通过RAPD分析野大豆群体3和群体4的多态性,发现群体3的多态性明显高于群体4。野大豆群体3的抗盐性大于群体4早已通过生理指标的鉴定,至于多态性与抗盐性之间是否有必然联系,还需进一步研究讨论。利用RAPD数据,通过MEGA软件中的NJ计算遗传距离的方法对群体3和4进行聚类分析,研究野大豆群体间及群体内个体间的亲缘及进化关系,探讨野大豆群体盐适应机理的分子起源。

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本论文由三部分组成: 1) 大豆高产品种黑农40与低产品种黑农37不同发育时期叶片光合生理生态特性的研究;以不同产量水平的东北大豆黑农40和对照品种黑农37为试验材料,研究了从幼苗期到衰老期五个不同发育时期叶片光合作用特性的变化。尤其是系统的研究了光合作用、蒸腾作用和水分利用效率的变化之间的联系,以及气孔导度和胞间CO2浓度的相随变化。发现净光合速率和产量之间存在明显的正相关关系,各个光合生理生态参数之间也有密切的关系。 2) 在大豆生长过程的重要时期结荚期,对大豆品种黑农37和黑农40的光合和水分特性的日变化研究;测定结荚期黑农37和黑农40的光合作用、蒸腾作用、气孔导度和水分特征(水分利用效率和水势)的日变化以及它们之间可能存在的联系,并分析了光抑制的现象,研究表明在晴朗的一天中,光合速率的日变化呈双峰曲线,在整个日变化中,黑农40的净光合速率都比黑农37的要高。黑农40和黑农37相比,在水分亏缺的情况下黑农40能维持较高的水势和水分利用效率,特别是在中午的时候,差别更加明显。 3) 比较研究了1970s 、1980s 和1990s 期间不同大豆 (Glycine max (L) Merr.)品种的生理生态特性:光合作用、蒸腾作用、水分利用效率和叶片水势,分析了各生理生态特性之间以及与产量的关系。研究表明光合速率和产量之间存在显著的相关关系,大豆叶片水势和净光合速率之间也存在明显正相关关系,高产大豆在水分亏缺的情况下仍能维持较高的的水分利用效率和水势。

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The characteristic of biodiesel fuel production from transesterification of soybean oil is studied. The reactant solution is the mixture of soybean oil, methanol, and solvent. A new lipase immobilization method, textile cloth immobilization, was developed in this study. Immobilized Candida lipase sp. 99-125 was applied as the enzyme catalyst. The effect of flow rate of reaction liquid, solvents, reaction time, and water content on the biodiesel yield is investigated. Products analysis shows that the main components in biodiesel are methyl sterate, methyl hexadecanoate, methyl oleate, methyl linoleate, and methyl linolenate. The test results indicate that the maximum yield of biodiesel of 92% was obtained at the conditions of hexane being the solvent, water content being 20 wt%, and reaction time being 24 h.

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The feasibility of biodiesel production from soapstock containing high water content and fatty matters by a solid acid catalyst was investigated. Soapstock was converted to high-acid acid oil (HAAO) by the hydrolysis by KOH and the acidulation by sulfuric acid. The acid value of soapstock-HAAO increased to 199.1 mg KOH/g but a large amount of potassium sulfate was produced. To resolve the formation of potassium sulfate, acid oil was extracted from soapstock and was converted to HAAO by using sodium dodecyl benzene sulfonate (SDBS). The maximum acid value of acid oil-HAAO was 194.2 mg KOH/g when the mass ratio of acid oil, sulfuric acid, and water was 10:4:10 at 2% of SDBS. In the esterification of HAAO using Amberylst-15, fatty acid methyl ester (FAME) concentration was 91.7 and 81.3% for soapstock and acid oil, respectively. After the distillation, FAME concentration became 98.1% and 96.7% for soapstock and acid oil. The distillation process decreased the total glycerin and the acid value of FAME produced a little.