Editorial Board

IF 6.8 1区 农林科学 Q1 SOIL SCIENCE Soil & Tillage Research Pub Date : 2025-08-01 Epub Date: 2025-03-11 DOI:10.1016/S0167-1987(25)00094-7
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来源期刊
Soil & Tillage Research
Soil & Tillage Research 农林科学-土壤科学
CiteScore
13.00
自引率
6.20%
发文量
266
审稿时长
5 months
期刊介绍: Soil & Tillage Research examines the physical, chemical and biological changes in the soil caused by tillage and field traffic. Manuscripts will be considered on aspects of soil science, physics, technology, mechanization and applied engineering for a sustainable balance among productivity, environmental quality and profitability. The following are examples of suitable topics within the scope of the journal of Soil and Tillage Research: The agricultural and biosystems engineering associated with tillage (including no-tillage, reduced-tillage and direct drilling), irrigation and drainage, crops and crop rotations, fertilization, rehabilitation of mine spoils and processes used to modify soils. Soil change effects on establishment and yield of crops, growth of plants and roots, structure and erosion of soil, cycling of carbon and nutrients, greenhouse gas emissions, leaching, runoff and other processes that affect environmental quality. Characterization or modeling of tillage and field traffic responses, soil, climate, or topographic effects, soil deformation processes, tillage tools, traction devices, energy requirements, economics, surface and subsurface water quality effects, tillage effects on weed, pest and disease control, and their interactions.
期刊最新文献
Divergent temporal controls of biocrusts development on soil erodibility across coverage gradients in fruit forest land Green manuring outperforms cattle manure in soil carbon sequestration by reshaping dissolved organic matter composition and fungal life strategies An improved contact model considering the effect of both pressure and friction for wear prediction of blade surface in wet-adhesive soil Synergistic optimization of plastic film mulching and nitrogen management and water-soil-greenhouse gas coupling mechanism on the Loess Plateau Root morphological characteristics as predominant factors enhancing soil resistance in typical grasslands of the Chinese Loess Plateau
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