Paper mill wastes and biochar improve physiochemical properties and reduce heavy metals leaching risks in podzolic soils

IF 2.5 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES Environmental Research Communications Pub Date : 2024-05-09 DOI:10.1088/2515-7620/ad4985
Muhammad M. Farhain, M. Cheema, Muhammad Nadeem, Y. Katanda, Raymond Thomas, Bilal Javed, L. Galagedara
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Abstract

Background: The incorporation of industrial wastes, such as wood ash and paper sludge, as soil amendments is vital for both environmental sustainability and agroecosystem productivity. Herein, we evaluated the effects of wood ash and paper sludge alone and in combination with biochar on the physicochemical properties and heavy metal leaching risks in podzolic soils. Methods: The treatments included limestone (control), wood ash, paper sludge, wood ash+paper sludge, limestone+biochar, wood ash+biochar, paper sludge+biochar and wood ash+paper sludge+biochar, arranged in a 4x2 factorial design with three replicates. The Hydrus-1D model was employed to simulate the water movement under these soil amendments using leaching colums. Results: Overall, wood ash, paper sludge and biochar application significantly increased the pH of amended soil compared to control. Paper sludge amended treatments alone or in combination with biochar significantly decreased bulk density (8-17%) and increased the total porosity (14-25%). While biochar addition to wood ash and paper sludge significantly reduced the concentrations of Cd (by 6.42%), Co (by 10.95%), Cu (by 11.76%), Pb (by 30%) and Ni (by 3.75%) in the collected leachates. The treatment paper sludge + biochar was found to be the most effective treatment to retain the heavy metals, with maximum plant available water (0.28 cm3 cm-3) and field capacity (0.36 cm3 cm-3) compared to control treatment. The predictions from Hydrus-1D showed that paper mill wastes with biochar has a significant potential to increase the volumetric moisture contents of amended podzolic soil, with the simulated leaching times and saturation levels closely aligning with the measured values. Conclusion: Paper sludge + biochar treatment showed improved soil physicochemical properties and displayed lower heavy metals than allowed limits to be used in soil. Further, experiments are needed to assess the effects of papermill waste products on podzolic soil properties under variable field conditions.
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造纸厂废料和生物炭可改善荚膜土壤的理化性质并降低重金属沥滤风险
背景:掺入木灰和造纸污泥等工业废料作为土壤改良剂对环境可持续性和农业生态系统的生产力至关重要。在此,我们评估了木灰和造纸污泥单独使用或与生物炭结合使用对豆荚状土壤理化性质和重金属沥滤风险的影响。方法处理包括石灰石(对照组)、木灰、造纸污泥、木灰+造纸污泥、石灰石+生物炭、木灰+生物炭、造纸污泥+生物炭和木灰+造纸污泥+生物炭,采用 4x2 因式设计,3 次重复。采用 Hydrus-1D 模型,利用浸出柱模拟这些土壤改良剂下的水分运动。研究结果总体而言,与对照组相比,施用木灰、造纸污泥和生物炭能显著提高改良土壤的 pH 值。单独施用或与生物炭一起施用的造纸污泥改良剂明显降低了容重(8%-17%),增加了总孔隙度(14%-25%)。在木灰和造纸污泥中添加生物炭后,收集到的浸出液中的镉(降低 6.42%)、钴(降低 10.95%)、铜(降低 11.76%)、铅(降低 30%)和镍(降低 3.75%)的浓度明显降低。与对照处理相比,纸质污泥 + 生物炭处理被认为是保留重金属最有效的处理方法,植物可用水量(0.28 cm3 cm-3)和田间容量(0.36 cm3 cm-3)最大。Hydrus-1D 的预测结果表明,含有生物炭的造纸厂废料在提高改良豆荚状土壤的体积含水量方面具有显著的潜力,模拟浸出时间和饱和度与测量值非常接近。结论造纸污泥+生物炭的处理方法改善了土壤的物理化学性质,重金属含量低于土壤中允许使用的限值。此外,还需要进行更多的实验,以评估造纸厂废品在多变的实地条件下对荚状土壤性质的影响。
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来源期刊
Environmental Research Communications
Environmental Research Communications ENVIRONMENTAL SCIENCES-
CiteScore
3.50
自引率
0.00%
发文量
136
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