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引用次数: 0
摘要
利用覆盖物是治理风蚀、稳定土壤和流沙的重要方法。本研究旨在探讨桉树木材经二氧化硫-乙醇-水(SEW)分馏后产生的不同浓度废液(20%、30% 和 50% v/v)对沙子物理和机械性能的影响。这些特性包括含水量、厚度、温度、导电率(EC)、风蚀性、抗穿透性和种子发芽率。研究结果表明,含 50% SEW 废液的地膜抗压强度最高(0.76 兆帕),与对照处理相比,抗渗透性提高了 3.3 倍。此外,20%浓度的废液不会对黑刺桐(Haloxylon ammodendron)的发芽造成不利影响,而 50%浓度的废液则会导致种子发芽率最低。根据测得的参数,稳定流沙的最佳地膜处理方法是使用浓度为 50%(v/v)的地膜。这项研究强调了 SEW 废液在粉尘控制和减轻环境影响方面的功效,从而突出了其在可持续土壤管理实践中的潜力。
Influence of spent liquor obtained from SO2–ethanol–water (SEW) fractionation of Eucalyptus on drifting sands stabilization
The utilization of mulch stands as a paramount approach in the management of wind erosion and the stabilization of soil and drifting sands. This study aimed to explore the impact of various concentrations of spent liquor (20 %, 30 %, and 50 % v/v) derived from SO2–ethanol–water (SEW) fractionation of Eucalyptus wood on the physical and mechanical properties of sand. These properties encompassed moisture content, thickness, temperature, electrical conductivity (EC), wind erodibility, penetration resistance, and seed germination. The findings revealed that the highest compressive strength (0.76 MPa) was attained with mulch consisting of 50 % SEW spent liquor, resulting in a 3.3-fold increase in penetration resistance compared to the control treatment. Furthermore, the 20 % concentration of spent liquor did not adversely affect the germination of black saxaul (Haloxylon ammodendron), whereas the lowest seed germination rate was associated with the 50 % concentration. Based on the measured parameters, the optimal mulch treatment for stabilizing drifting sands was identified as mulch with a 50 % (v/v) concentration. This study underscores the efficacy of SEW spent liquor in dust control and mitigating its environmental impacts, thus highlighting its potential in sustainable soil management practices.
期刊介绍:
Nordic Pulp & Paper Research Journal (NPPRJ) is a peer-reviewed, international scientific journal covering to-date science and technology research in the areas of wood-based biomass:
Pulp and paper: products and processes
Wood constituents: characterization and nanotechnologies
Bio-refining, recovery and energy issues
Utilization of side-streams from pulping processes
Novel fibre-based, sustainable and smart materials.
The editors and the publisher are committed to high quality standards and rapid handling of the peer review and publication processes.
Topics
Cutting-edge topics such as, but not limited to, the following:
Biorefining, energy issues
Wood fibre characterization and nanotechnology
Side-streams and new products from wood pulping processes
Mechanical pulping
Chemical pulping, recovery and bleaching
Paper technology
Paper chemistry and physics
Coating
Paper-ink-interactions
Recycling
Environmental issues.