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首页> 外文期刊>Agroforestry Systems >Influence of fly ash mixtures on early tree growth and physicochemical properties of soil in semi-arid tropical Alfisols
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Influence of fly ash mixtures on early tree growth and physicochemical properties of soil in semi-arid tropical Alfisols

机译:粉煤灰混合物对半干旱热带铝土矿中树木早期生长和土壤理化特性的影响

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摘要

The beneficial effects of planting mixtures comprising of fly ash at the rate of 66%, 33% and 17% by soil volume were assessed for the early growth of two economic tree species, teak (Tectona grandis) and leucaena (Leucaena leucocephala) in rainfed Semi-Arid Tropical (SAT) Alfisols in India. Measurements of tree growth were made at six monthly intervals over a 3-year period. Fly ash at 66% by soil volume of the planting pit significantly increased the diameter of teak at breast height (dbh). In leucaena, application of fly ash at 17% by soil volume was found to be effective in increasing dbh during most of the study period. Changes in soil physicochemical properties (bulk density, water retention at 0.033 and 1.5 MPa, profile moisture content, pH, soluble salt content and organic carbon) were simultaneously studied. Among these soil properties, plant available water (PAW) and organic carbon (OC) contents explained variations in diameter at breast height (dbh) in teak during most of the sampling period, while none of the soil properties significantly explained dbh in leucaena. The highest dose of fly ash applied (66% by volume) decreased bulk density (BD) and increased PAW in teak and to an extent in leucaena during the first 2 years of tree growth. Higher profile moisture content was noted in pits treated with 66% fly ash during the dry period of November (after the end of seasonal rainfall which occurred from June to October) during the first and second year after application.
机译:评估了以土壤体积计分别以66%,33%和17%的比例包含粉煤灰的种植混合物对雨养两种柚木(Tectona grandis)和白桦(Leucaena leucocephala)的早期生长的有益影响。印度的半干旱热带(SAT)花粉。在3年的时间内,每六个月进行一次树木生长的测量。粉煤灰占种植坑土壤体积的66%,大大增加了柚木在胸高(dbh)时的直径。在白花树中,在大部分研究期间,发现以土壤体积的17%的量施用粉煤灰可有效提高dbh。同时研究了土壤理化性质的变化(堆积密度,0.033和1.5 MPa的保水量,剖面含水量,pH,可溶性盐含量和有机碳)。在这些土壤特性中,植物的有效水分(PAW)和有机碳(OC)含量可以解释在大多数采样期间柚木胸高(dbh)直径的变化,而没有任何土壤特性可以明显解释白桦树的dbh。在树木生长的前两年,施用的最高粉煤灰剂量(占体积的66%)降低了柚木中的堆积密度(BD),增加了PAW,并在一定程度上增加了白斑的PAW。在施用后的第一年和第二年,在11月的干燥时期(6月至10月的季节性降雨结束后),用66%粉煤灰处理过的矿坑中水分含量较高。

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