Sulphur Compost Properties and its Amelioration Effect on Salt Affected Soil Characteristics and Productivity

IF 1.9 Q3 SOIL SCIENCE
A. Elbaalawy, elhusieny abouhussien, M. Tantawy, Esraa Abd Elhafez, W. Nada
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引用次数: 1

Abstract

WO consecutive experiments were conducted, the first one aims to find out the effect of elemental sulphur on the characteristics of the produced compost, and the second one was to study the effect of the compost produced from the first experiment on the chemical properties and soil fertility of a salt affected soil and its productivity of wheat ( Triticum aestivum , Giza 12). These experiments were carried out at the greenhouse of Soil Science Department, Faculty of Agriculture, Menoufia University, Shebin El-Kom, Egypt during the winter growing season of 2020/2021. The S was mixed with compost raw materials (maize stalks and farmyard manure) at rates of 0.0 (CS0), 1.0 (CS1), 2.0 (CS2) and 3.0 % (CS3) which incubated for 60 days. Individually in pot trial, the produced composts were mixed with salt affected soil at 0.0, 0.5, 1.0, and 2.0 % application rates and sowed by wheat. The results estimated of the produced compost showed that, addition of S led to the improvement of compost chemical properties. Obtained results show that S addition to composted materials resulted in a decrease pH and organic matter (OM) values of S-treated compost compared to untreated type (CS0), while the compost values of electrical conductivity (EC) and available nutrients (N, P, K and S) increased. Moreover, addition of different types and rates of the produced sulphur compost to a salt affected soil led to significant improvements in soil chemical properties and its content of available nutrients. Soil pH, EC, exchangeable Na and exchangeable sodium percentage (ESP) values decreased with the increase of S in the applied compost, as well as with the increase its addition rate. Also, treating soil with compost that has a higher amount of S led to an increase in the soil value of OM, cation exchange capacity, exchangeable cation (Ca, Mg and K), S forms (soluble, available and organic) and available nutrients (N, P and K ). Increasing rate of added compost either of unsulphur or sulphur form resulted in a significant increase in yields (straw, grains and biological) of wheat under saline soil conditions. In conclusion, the addition of sulphur improved the characteristics of compost, which by adding it to salt affected soil improved its chemical properties and productivity.
硫堆肥特性及其对受盐影响土壤特性和生产力的改良作用
进行了WO连续实验,第一个实验旨在找出元素硫对生产的堆肥特性的影响,第二个实验旨在研究第一个实验生产的堆肥对受盐影响的土壤的化学性质和土壤肥力及其小麦(Triticum aestivum,Giza 12)生产力的影响。这些实验是在2020/2021年冬季生长季节在埃及Shebin El Kom梅努菲亚大学农业学院土壤科学系的温室中进行的。将S与堆肥原料(玉米秸秆和农家肥)以0.0(CS0)、1.0(CS1)、2.0(CS2)和3.0%(CS3)的比例混合,培养60天。在盆栽试验中,将生产的堆肥与受盐影响的土壤以0.0、0.5、1.0和2.0%的施用率混合,并用小麦播种。对所生产的堆肥的评价结果表明,添加S可以改善堆肥的化学性质。结果表明,与未处理的类型(CS0)相比,向堆肥材料中添加S导致S处理的堆肥的pH值和有机物(OM)值降低,而电导率(EC)和有效养分(N、P、K和S)的堆肥值增加。此外,在受盐影响的土壤中添加不同类型和比例的硫堆肥,可以显著改善土壤化学性质及其有效养分含量。土壤pH值、EC值、交换性Na值和交换性钠百分比(ESP)值随堆肥中S的增加而降低,也随堆肥添加量的增加而下降。此外,用含S量较高的堆肥处理土壤,可提高土壤OM值、阳离子交换能力、可交换阳离子(Ca、Mg和K)、S形式(可溶性、有效性和有机性)和有效养分(N、P和K)。在盐碱地条件下,增加无硫堆肥或硫堆肥的添加率可显著提高小麦的产量(秸秆、谷物和生物)。总之,硫的添加改善了堆肥的特性,通过将硫添加到受盐影响的土壤中,可以提高堆肥的化学性质和生产力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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