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Hydrolysis Lignin as a Sorbent and Basis for Solid Composite Biofuel
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作者 huo po Savitskaya Tatsiana +4 位作者 Reznikov Ivan Hrynshpan Dzmitry Tsygankova Nadejda Telysheva Galina Arshanitsa Alexandr 《Advances in Bioscience and Biotechnology》 2016年第11期501-530,共31页
New powdered sorbent Lignosorb based on the hydrophobized hydrolysis lignin has been developed at the Belarusian State University. Hydrolysis lignin is a commercial waste product of biomass processing in the hydrolysi... New powdered sorbent Lignosorb based on the hydrophobized hydrolysis lignin has been developed at the Belarusian State University. Hydrolysis lignin is a commercial waste product of biomass processing in the hydrolysis production of ethanol. In spite of the various proposals for hydrolysis lignin usage, the wide application has not found yet. Special area of hydrophobized hydrolysis lignin usage as a sorbent for oil spills removal and oil products waste recovery is discussed. Lignosorb, thanks to the rather high bulk density, can be applied manually or mechanically by conventional sprayers. It does not sink after oil adsorption and transforms liquid oil film on the water surface into the solid mass. The solid product is a complete mass and is easily collected from the surface of water. Lignosorb when blended with oil products waste in the volume forms the granular free-running product. The rheological properties of the Lignosorb suspensions in oil products at different sorbent to oil product ratio have been estimated. Saturated by different oil products Lignosorb one can granulate or pellet and utilize as a composite solid fuel including the co-firing regime of combustion. It has the higher heating value of 32.1 - 38.8 MJ/kg while the coal has 20.9 - 30.1 MJ/kg. It has been shown that composite fuel burning has less longstanding inflammation stage, more long stable burning stage and less longstanding phase of smoldering in the comparison to wood and Lignosorb burning. 展开更多
关键词 LIGNIN SORBENT Oil Spills Oil Products Waste Composite Fuel
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Bicomponent Solutions of Food Polysaccharide and Edible Films on Their Basis
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作者 huo po T. Savitskaya +3 位作者 L. Gotina S. Makarevich I. Reznikov D. Grinshpan 《Food and Nutrition Sciences》 2015年第16期1571-1581,共11页
The study of the rheological properties of aqueous solutions of corn starch (CS) blends with sodium alginate (SA) and agar-agar (AA) as well as the physical and mechanical properties of bicomponent films on their basi... The study of the rheological properties of aqueous solutions of corn starch (CS) blends with sodium alginate (SA) and agar-agar (AA) as well as the physical and mechanical properties of bicomponent films on their basis has been carried out. The data show that adding of both polymers to starch solution causes an increase in viscosity which is higher in the case of SA. Activation energy for viscosity flow of solutions of CS blended with SA has minimum value at CS:SA ratio = 98:2. The above mentioned dependence is not typical for AA, as flow activation energy in this case raises steadily with the growth of AA content in the solution, like viscosity of the CS:AA. The extreme behavior of polymer blends with low content of one of the polymers is described in terms of mutual solubility or thermodynamic compatibility. There is a tendency that mechanical properties and water solubility increase with the increasing of SA and AA polymers in corn starch matrix. Obtained data evidence the benefits of bicomponent films production instead of starch-based films. 展开更多
关键词 Corn Starch Sodium ALGINATE AGAR-AGAR Solutions Rheological PROPERTIES EDIBLE Films Physical and Mechanical PROPERTIES
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豌豆淀粉/ε-聚赖氨酸复合膜的制备及其性能 被引量:10
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作者 余作龙 饶桂维 +4 位作者 严小平 活泼 王超 塔兹娅娜.萨维斯卡娅 格林斯潘.达兹米特瑞 《食品工业科技》 CAS CSCD 北大核心 2018年第13期89-93,242,共6页
本文以豌豆淀粉/ε-聚赖氨酸为主要基材,以甘油、海藻酸钠等为增塑剂制备复合膜包装材料。采用单因素、正交实验等方法,在设定的工艺条件下流延成膜,进行复合膜的配方研究和最佳条件下膜性能研究。结果表明:最佳配方为100 m L水中加入10... 本文以豌豆淀粉/ε-聚赖氨酸为主要基材,以甘油、海藻酸钠等为增塑剂制备复合膜包装材料。采用单因素、正交实验等方法,在设定的工艺条件下流延成膜,进行复合膜的配方研究和最佳条件下膜性能研究。结果表明:最佳配方为100 m L水中加入10.5 g豌豆淀粉、1.5 g聚赖氨酸(调p H9)、1.80%甘油、0.50%海藻酸钠;产品性能检测表明,抗拉强度约为18.35 MPa,断裂延伸率约为34.79%,水蒸气透过率为12.10 g/(m^2·h),透油率为0.682 g·m/(m^2·h),对大肠杆菌具有较好的抑制性。本研究表明豌豆淀粉/ε-聚赖氨酸复合膜具有功能性包装应用的基础。 展开更多
关键词 豌豆淀粉 Ε-聚赖氨酸 复合膜 配方 性能
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