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Tests of Starch-based Biodegradable Plastic Film’s Degradation Effects

机译:淀粉基可降解塑料薄膜降解效果的测试

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The degradation effects of three kinds of starch-based degradable mulching films in soil were compared with ordinary mulching film as control using lab simulation. The effects of different films on soil catalase, invertase activities and microorganisms were also studied. The results showed that starch-based degradable film C, the most degradable one, was degradable completely in there months in humus soil and six months in pure sandy soil, and degradable film A, B was degradable completely in six months in humus soil. The soil enzyme activities of all treatments in the hums soil were higher than those in the pure sandy soil, while in the same soil the treatment C had the highest soil enzyme activities, A,B secondly, but they have no significant difference. The regularities of bacteria and actinomycetes were consistent with that of soil enzyme activities. No significant difference of fungi number was observed between two kinds of soil while C treatment had larger fungi number than other treatments in the same soil.
机译:通过实验室模拟,比较了三种淀粉基可降解地膜在土壤中的降解效果与作为对照的普通地膜。还研究了不同膜对土壤过氧化氢酶,转化酶活性和微生物的影响。结果表明,降解性最强的淀粉基可降解膜C在腐殖质土壤中可完全降解,而在纯砂土中可降解六个月,而腐殖质土壤中可降解膜A,B可在六个月内完全降解。腐殖质土壤中所有处理的土壤酶活性均高于纯砂质土壤,而在相同土壤中,处理C的土壤酶活性最高,其次是A,B,但差异无统计学意义。细菌和放线菌的规律与土壤酶活性的规律一致。在相同的土壤中,两种土壤之间的真菌数量没有观察到显着差异,而C处理的真菌数量大于其他处理。

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