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首页> 外文期刊>Sugar Tech >Effects of Superabsorbent Polymer on Soil Water Content and Sugarcane Germination and Early Growth in Sandy Soil Conditions
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Effects of Superabsorbent Polymer on Soil Water Content and Sugarcane Germination and Early Growth in Sandy Soil Conditions

机译:沙质土壤中高吸收性聚合物对土壤水分和甘蔗萌发及早期生长的影响

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摘要

Drought is one of the major environmental stress factors limiting sugarcane production. Under rainfed conditions, sugarcane crops are highly at risk of drought, especially after planting. The use of superabsorbent polymers capable of absorbing huge amounts of water is of great prospect; however, information on its use in sugarcane production under drought is relatively scarce. Greenhouse experiments were thus carried out to examine the effects of polymer application at planting on sugarcane germination and early growth as well as water content in sandy soils. When mixed with sandy soils in different ratios (0, 0.1, 0.3, and 0.5% in Experiment 1; 0, 0.05, 0.1, 0.15, and 0.2% in Experiment 2), the polymers significantly improved soil water-holding capacity as the ratios increased, though the treatments did not affect the water release rate. The best germination rates were obtained with the applications of 0.1% and 0.15% polymer in Experiments 1 and 2, respectively, which further yielded the highest biomass production. Despite higher water contents, the applications of 0.3% and 0.5% polymer remarkably lowered the germination rates in Experiment 1. One of the possible reasons for its negative impact is that the water contents greatly exceeded the optimum level for sugarcane germination in the sandy soil. From this study, it is suggested that the application of 0.15% polymer is likely to be most suitable. Meanwhile, the available water in the soil at the time of polymer application must be considered as high moisture contents rather resulted in impairing sugarcane germination and growth.
机译:干旱是限制甘蔗生产的主要环境压力因素之一。在雨养条件下,甘蔗作物极有干旱的风险,尤其是在种植后。使用能够吸收大量水的超吸收性聚合物具有广阔的前景。但是,有关其在干旱条件下用于甘蔗生产的用途的信息相对较少。因此进行了温室试验,以检验种植时施用聚合物对甘蔗发芽和早期生长以及沙质土壤中水分的影响。当以不同比例(在实验1中为0、0.1、0.3和0.5%;在实验2中为0、0.05、0.1、0.15和0.2%)与沙质土壤混合时,该聚合物显着提高了土壤持水能力。虽然处理不影响水的释放速率,但增加了。分别在实验1和2中应用0.1%和0.15%的聚合物可获得最佳的发芽率,这进一步产生了最高的生物量产量。尽管含水量较高,但在实验1中施用0.3%和0.5%的聚合物会明显降低发芽率。其负面影响的可能原因之一是,含水量大大超出了沙土中甘蔗发芽的最佳水平。根据这项研究,建议使用0.15%的聚合物最合适。同时,必须考虑在施用聚合物时土壤中的可用水分含量高,而导致甘蔗发芽和生长受到损害。

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