首页> 外文期刊>Journal of the Indian Society of Soil Science >Water Absorption and Release Characteristics of a Polymer and its Effect on Available Water Content, Tomato {Lycopersicon esculentum) Productivity and Water Use Efficiency in a Semi-arid Sandy Loam Soil
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Water Absorption and Release Characteristics of a Polymer and its Effect on Available Water Content, Tomato {Lycopersicon esculentum) Productivity and Water Use Efficiency in a Semi-arid Sandy Loam Soil

机译:半干旱沙壤土中聚合物的吸水和释放特性及其对有效水分,番茄{Lycopersicon esculentum}生产力和水分利用效率的影响

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The problem of inefficient use of rain and irrigation water by crops is most important on light textured soils of semi-arid and arid regions. Application of super absorbent polymers into the soil could be one of the effective ways to increase water use efficiency in crops. Therefore, laboratory and field investigations have been conducted to study water retention and release characteristics of a cross linked polymer of polyacrylamide and potassium acrylate (PAM) and to evaluate its effect on yield and water productivity in tomato grown on sandy loam soil under field conditions. In laboratory studies, irrespective of source of water, polymer showed rapid initial hydration followed by no more water absorption towards the point of equilibrium. Overall,the amount of water absorbed by one gram of polymer ranged from 247-369 g in distilled water, 141-175 g in 50% Hoagland solution, 120-155 g in irrigation water, 116-141 g in 100% Hoagland solution, 96-115 g in 0.01 M CaCl2 and 86-111 g in 200% Hoaglandsolution over 5 - 240 min saturation period. The amount of water absorbed by polymer decreased from 360 to 110 g g"1 with increasing electrical conductivity (EC) of the source of water from 0.03 to 2.23 dS m1. Application of polymer at graded rates (0.25-1.0% of soil, w/w) to sandy loam and sandy clay loam soils increased the available water content by 101-192 per cent as compared to untreated soils. In field experiment, at every week irrigation, application of polymer @ 25 or 50 kg ha-1 had no significant effect on tomato plant height and fruit yield. Similarly, application of polymer had no significant effect on plant height and fruit yield when tomato was irrigated every third week. But application of polymer at 25 kg ha-1 with alternate week irrigation not only produced the higher tomato yield but also increased the water productivity to 290.6 kg ha-mm-1 and thereby saved 180 ha-mm irrigation waters during a crop growth season.
机译:在半干旱和干旱地区的轻质土壤上,农作物不能有效利用雨水和灌溉水的问题最为重要。将高吸收性聚合物施用到土壤中可能是提高农作物水分利用效率的有效方法之一。因此,已经进行了实验室和田间调查,以研究聚丙烯酰胺和丙烯酸钾(PAM)交联聚合物的保水和释放特性,并评估其对田间条件下在沙壤土上种植的番茄的产量和水分生产率的影响。在实验室研究中,无论水源如何,聚合物均显示出快速的初始水合,随后在平衡点不再吸收水。总体而言,一克聚合物吸收的水量在蒸馏水中为247-369 g,在50%Hoagland溶液中为141-175 g,在灌溉水中为120-155 g,在100%Hoagland溶液中为116-141 g,在5-240分钟的饱和期内,在0.01 M CaCl2中溶解96-115 g,在200%Hoaglandsolution中溶解86-111 g。随着水源的电导率(EC)从0.03到2.23 dS m1的增加,聚合物吸收的水量从360降至110 gg“ 1。按渐变速率(土壤的0.25-1.0%,w / w)对于砂壤土和砂质壤土,与未处理的土壤相比,可利用的水分含量增加了101-192%。在田间试验中,在每周灌溉下,在25或50 kg ha-1下施用聚合物没有明显的影响。同样地,每三周灌溉一次,施用聚合物对番茄的株高和果实产量无显着影响,但每星期灌溉25 kg ha-1的聚合物施用不仅产生了番茄产量。番茄产量提高,但水分生产率提高至290.6 kg ha-mm-1,从而在作物生长季节节省了180 ha-mm的灌溉水。

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