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Preparation and Properties of Starch/Poly(vinyl alcohol) Composite Foams

机译:淀粉/聚(乙烯醇)复合泡沫的制备及性能

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Starch/poly(vinyl alcohol) (PVA) composite foams were prepared by baking a mixture of starch, PVA, and other ingredients in a hot mold. The effects of relative humidity, storage period, PVA content, and type and content of plasticizer (e.g. glycerol, urea, or ammonium chloride) on moisture content, water absorption, mechanical properties, and biodegradability of the as-prepared foams were investigated. In all of the testing conditions investigated, the ultimate tensile strength was shown to be a maximum when the relative humidity was 42%RH (for a fixed storage period of 7 days) and when the storage period was 2 days (for a fixed relative humidity of 42%RH). Addition of PVA improved the ultimate strength and the elongation at break of the composite foams. An increase in the amount of added plasticizer was responsible in an increase in the percentage of elongation at break at the expense of the tensile strength of the composite foams. Resistance to water absorption of starch/PVA composites foams was found to be superior to that of pure starch foams. Lastly, enzymatic degradation tests with α-amylase showed that addition of PVA affected a little to the enzymatic degradability of the composite foams.
机译:通过在热模具中烘烤淀粉,PVA和其他成分的混合物来制备淀粉/聚(乙烯醇)(PVA)复合泡沫。研究了相对湿度,储存期,PVA含量和型增塑剂(例如甘油,尿素,氯化铵)对水分含量,吸水,机械性能和制备泡沫的生物降解性的影响。在研究的所有测试条件下,当相对湿度为42%RH(用于固定储存期为7天)并且储存时期为2天(用于固定的相对湿度时,最大的拉伸强度显示为最大值42%RH)。添加PVA改善了复合泡沫破裂的极限强度和伸长率。增加增塑剂量的增加在突破的伸长率的百分比增加时,以牺牲复合泡沫的拉伸强度的牺牲品的百分比增加。发现对淀粉/ PVA复合材料泡沫的吸水性耐受泡沫的耐受性优于纯淀粉泡沫。最后,用α-淀粉酶的酶促降解试验显示,添加PVA影响了复合泡沫的酶促可降解性。

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