Raising the Efficiency of Calcareous Sandy Loam Soil Production by Applying Organic Low Economic Value

Azza. R. Ahmed
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Abstract

A field experiment was undertaken at the Nubaria Agricultural Research Station farm in two consecutive years, 2019/2020 and 2020/2021. (Calcareous soil). The goal of this study was to improve the poor state of calcareous sand loamy soil, increase its efficiency, and convert the negative impact of certain by-products, such as sugar beet waste (low economic value), on pollution into a positive impact on agricultural soil qualities. The effect and residual effect of different organic amendments (sugar beet waste (S.B.W.), compost (Comp), sugar beet waste 50 percent combined with compost 50 percent application under two different tillage practices of tillage surface (P1) and deep tillage (P2) on some soil hydro-physical and chemical properties, as well as canola and sunflower seeds yields tonfed -1 , were investigated. In the first and second years for surface tillage P1, employing (S.B.W) in combination with compost treatment yielded the greatest values of O.C percent. 83 percent and O.C.F 17.7 percent, respectively. The addition of diverse organic amendments had a substantial influence on each of the hydro-physical and chemical parameters, such as USC and Db, with the lowest values for Db being in the second winter season, highlighted by S.B.W. mixed with compost treatment. Applying the same treatment under deep tillage technique (P2) 2.79, 2.8 USC for two summer seasons, respectively, yielded the lowest USC value. The application of mixed sugar beet with compost treatment resulted in the greatest mean values for Kh (cmh -1 ), I.R (mmh -1 ) and porosity percent, which were 3.92 P2 Kh (cmh -1 ), 6.94 P2 I.R (mmh -1 ) and 50 P2 E percent for both winter seasons. Data indicated that when various organic amendments were applied to big aggregate size fractions >2mm (by percentage), the aggregate sizes dispersion tended to increase. In comparison to the control treatment, 4.05 percent S.B.W, 13.76 percent Comp, and 15.8 percent combination S.B.W with compost treatments were found. For both surface and deep tillage, the greatest values for aggregate state and degree owing to treatment (Comp and S.B.W) were about 72.88 percent aggre. state and 76.6 percent aggre. Degrees also account for 42 percent of aggre. state and 47.95 percent of aggre. degrees, respectively. The greatest mean A.S.I values were achieved using the (Comp and S.B.W) treatments with P1 (0.82) and P2 (0.7), respectively. Which were thought to be excellent A.S.I. Conversely, the largest seed yields of canola or sunflower plants were achieved with the application of S.B.W mixed with Comp. by both surface and deep tillage, yielding 1.19 (P1), 0.981 (P2) ton fed -1 of canola plant and 1.56, and 1.51ton fed -1 of sunflower plant, respectively. For both surface and deep tillage, however, both S.B.W and Comp. treatments, either alone or in combination, resulted in significantly higher R.I.Y than the control. However, for improved yield and water consumption, more effort of organic amendments with low economic value on economic and ecological sides should be considered.
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施用低经济价值有机肥料提高钙质砂壤土生产效率
2019/2020年和2020/2021年连续两年在Nubaria农业研究站农场进行田间试验。(石灰土)。本研究的目的是改善钙质砂壤土的不良状况,提高其效率,并将某些副产品(如甜菜废料(低经济价值))对污染的负面影响转化为对农业土壤质量的积极影响。研究了表层耕作(P1)和深层耕作(P2)两种不同耕作方式下,不同有机改良剂(甜菜渣(S.B.W.)、堆肥(Comp)、甜菜渣50%配堆肥50%施用对土壤水理化性质及油菜籽和葵花籽产量的影响和残留效应。在表层耕作P1的第1年和第2年,施用(sb.w)和堆肥处理的土壤有机质含量最高。分别为83%和17.7%。不同有机改良剂的添加对各水文物理和化学参数(如USC和Db)都有显著影响,其中Db在第二个冬季达到最低值,以S.B.W.与堆肥处理混合时最为突出。深耕技术(P2) 2.79、2.8 USC处理两个夏季的USC值最低。混合甜菜配堆肥处理的土壤Kh (cmh -1)、I.R (mmh -1)和孔隙率均值均最大,冬季分别为3.92 P2 Kh (cmh -1)、6.94 P2 I.R (mmh -1)和50 P2 E %。数据表明,当不同有机改性剂应用于大于2mm(按百分比)的大骨料级分数时,骨料的分散性有增加的趋势。与对照处理相比,三叶草与堆肥处理的回收率分别为4.05%、13.76%和15.8%。在深耕和浅耕条件下,处理后的团聚状态和团聚度最大值约为72.88%。州和76.6%的人同意。学历也占了42%。州和47.95%的人同意。度,分别。Comp和S.B.W处理的平均A.S.I值最高,分别为P1(0.82)和P2(0.7)。相反,油菜籽和葵花种子产量最高的是施用sb.w与comps混合进行表面和深层耕作,油菜籽分别获得1.19 (P1)、0.981 (P2)吨饲喂-1,向日葵分别获得1.56、1.51吨饲喂-1。然而,在深耕和浅耕中,单作或联合作均显著高于对照。然而,为了提高产量和耗水量,应考虑在经济和生态方面经济价值较低的有机改良剂方面投入更多的精力。
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