印度-甘肃平原西部以甘蔗为基础的种植系统中的锌吸附-解吸行为和可萃取池序列

IF 1.8 3区 农林科学 Q2 AGRONOMY
Shivam Singh, Satendra Kumar, Debashis Dutta, Richa Raghuvanshi, Jagannath Pathak, Uday Pratap Shahi, B. P. Dhyani, Ankit Kumar, Mahendra Pratap Singh, Himanshu Panday, A. K. Shah
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引用次数: 0

摘要

锌的分馏及其在土壤基质中的吸附作用对于在西印度-甘地平原地区实现可持续发展的精细管理至关重要。为了实现这些目标,研究人员于 2021-2022 年从农民田间采集了三个深度(15、30 和 45 厘米)的土壤,分别来自五个不同的种植系统(甘蔗-番茄-小麦、甘蔗-番茄-小麦-水稻、甘蔗-芥菜-番茄-水稻、甘蔗-黄瓜-番茄和甘蔗-番茄-土豆),这五个种植系统自 12 年以来一直采用相同的种植顺序。土壤质地为沙壤土至沙粘壤土,BD 为 1.33 gm/cc,持水量为 22%。pH 值和 EC 值显示为中性至中度碱性,低至中度有机碳(0.59 毫克/千克),中至高奥尔森磷(30.14 毫克/千克),低至充足的 DTPA-锌(1.82 毫克/千克)。甘蔗-番茄-小麦种植系统的总锌含量(86.94 毫克/千克)、残余锌含量(67.95 毫克/千克)和可依次提取的锌含量(19 毫克/千克)最高,这意味着锌的保留和释放时间较长。锌在土壤基质中的保留通过吸附机制得到了进一步的澄清,吸附机制表明最大的锌吸附率出现在 S1(49.17%)。锌在土壤中的吸附现象是自发的(ΔG 为负值),属于物理吸附(E < 8 kJ/mol)。根据 Langmuir 等温线常数(Qo = 8.67 µg/gm, KL = 0.25 ml/µg)可知,淤泥(r2 = 0.813*)和碳酸钙表面(r2 = 0.而在表层土壤的次表层,根据 Freundlich 等温线常数 (KF = 3.07 µg/gm, n = 6.27 gm/ml),多层吸附与 pH 值有关 (r2 = 0.910*),并且发生在粘土表面 (r2 = 0.812*)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Zinc Adsorption–Desorption Behavior and Sequential Extractable Pools in Sugarcane-Based Cropping Systems of Western Indo-Gangetic Plain

Zinc Adsorption–Desorption Behavior and Sequential Extractable Pools in Sugarcane-Based Cropping Systems of Western Indo-Gangetic Plain

The fractionation of Zn and its adsorption at soil matrix are crucial for careful management to attain the sustainability in Western Indo-Gangetic Plain region. To fulfil the objectives, the soil at the three depths (15, 30 and 45 cm) was collected from the farmers field in 2021–2022 from five different cropping systems (sugarcane–ratoon–wheat, sugarcane–ratoon–wheat–rice, sugarcane–mustard–ratoon–rice, sugarcane–cucumber–ratoon, and sugarcane–ratoon–potato) which are practicing the same cropping sequence since from 12 years and a reference soil which remains uncultivated from last 50 years. The soil was sandy loam to sandy clay loam in texture with BD 1.33 gm/cc and 22% water holding capacity. The pH and EC revealed neutral-to-moderate alkaline, low-to-medium organic carbon (0.59 mg/kg), medium-to-high Olsen’s phosphorous (30.14 mg/kg) and low to sufficient DTPA-Zn (1.82 mg/kg). Sugarcane–ratoon–wheat among cropping system revealed highest total (86.94 mg/kg), residual (67.95 mg/kg) and sequentially extractable Zn (19 mg/kg) fractions which implies that Zn is retained and released for longer duration. The retention of Zn at the soil matrix was further clarified by sorption mechanism which invoked maximum %Zn sorption occurred at S1 (49.17%). The sorption phenomena of Zn on soils are spontaneous (ΔG is negative) and are physically adsorbed (E < 8 kJ/mol). Monolayered-Zn sorption depicted from Langmuir Isotherm constants (Qo = 8.67 µg/gm, KL = 0.25 ml/µg) occurs at silt (r2 = 0.813*) and calcium carbonate surface (r2 = 0.943*) of top soil, while at subsurface multilayered sorption from Freundlich isotherm constant (KF = 3.07 µg/gm, n = 6.27 gm/ml) is pH-dependent (r2 = 0.910*) and occurs at clay surface (r2 = 0.812*).

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来源期刊
Sugar Tech
Sugar Tech AGRONOMY-
CiteScore
3.90
自引率
21.10%
发文量
145
期刊介绍: The journal Sugar Tech is planned with every aim and objectives to provide a high-profile and updated research publications, comments and reviews on the most innovative, original and rigorous development in agriculture technologies for better crop improvement and production of sugar crops (sugarcane, sugar beet, sweet sorghum, Stevia, palm sugar, etc), sugar processing, bioethanol production, bioenergy, value addition and by-products. Inter-disciplinary studies of fundamental problems on the subjects are also given high priority. Thus, in addition to its full length and short papers on original research, the journal also covers regular feature articles, reviews, comments, scientific correspondence, etc.
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