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首页> 外文期刊>International Journal of Environmental Research and Public Health >Effect of Sewage Irrigation on the CT-Measured Soil Pore Characteristics of a Clay Farmland in Northern China
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Effect of Sewage Irrigation on the CT-Measured Soil Pore Characteristics of a Clay Farmland in Northern China

机译:污水灌溉对中国北方粘土农田CT测量土壤孔隙特征的影响

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Sewage irrigation has a strong influence on the physical, chemical, and biological properties of soil. However, the effects of sewage irrigation on the pore characteristics of soil are not well understood. This study compares the effects of sewage irrigation and groundwater irrigation on computed tomography (CT)-measured pore parameters and examines the relationships between CT-measured pore parameters and soil physicochemical and microbial properties. Intact soil cores were collected from S1 irrigated with sewage for 25 years, S2 irrigated with sewage for 52 years, and CK irrigated with groundwater. Various soil pore characteristics were determined, including the total pore number, macropore number (1 mm diam.), coarse mesopore number (0.264–1 mm diam.), total porosity, macroporosity, coarse mesoporosity, and circularity. The results indicated that sewage irrigation significantly affected soil pore number and porosity. Compared with S1 and S2, CK exhibited a higher average total pore number (91), macropore number (40), coarse mesopore number (51), total porosity (2.08%), macroporosity (1.90%), and coarse mesoporosity (0.18%) throughout the 50–350 mm layer. At depths of 200–350 mm, S2 exhibited the lowest average total pore number (33), macropore number (13), coarse mesopore number (21), total porosity (0.42%), macroporosity (0.35%), and coarse mesoporosity (0.07%) among the three sites. In addition, the average pore numbers and porosity at depths of 200–350 mm decreased with increasing sewage irrigation time. There were significant positive correlations between pore features (including pore numbers and porosity) and soil properties (phosphorus content and fungi numbers). Our results suggest that decreased macropore numbers and macroporosity in the sewage-irrigated farmland may strongly intensify the accumulation of metals and nutrients in the upper layer. The findings of this study are useful for understanding the negative effects of sewage irrigation on soil pore structure and are critical for developing sustainable strategies in agriculture.
机译:污水灌溉对土壤的物理,化学和生物学特性有很大的影响。但是,污水灌溉对土壤孔隙特征的影响尚不十分清楚。本研究比较了污水灌溉和地下水灌溉对计算机断层扫描(CT)测得的孔隙参数的影响,并研究了CT测得的孔隙参数与土壤理化和微生物特性之间的关系。从污水灌溉S1收集25年的完整土壤芯,污水灌溉S2收集52年的完整土壤芯,以及地下水灌溉的CK收集。确定了各种土壤孔隙特征,包括总孔隙数,大孔数(直径大于1毫米),中孔粗数(直径0.264-1毫米),总孔隙率,大孔隙度,粗孔和圆形度。结果表明,污水灌溉显着影响土壤孔隙数和孔隙度。与S1和S2相比,CK表现出更高的平均总孔数(91),大孔数(40),粗孔率(51),总孔隙率(2.08%),大孔率(1.90%)和粗孔率(0.18%) )覆盖整个50-350毫米的层。在200-350 mm的深度,S2的平均总孔数最低(33),大孔数(13),中孔粗数(21),总孔隙率(0.42%),大孔率(0.35%)和中孔率最低( 0.07%)。此外,随着污水灌溉时间的增加,深度在200-350 mm的平均孔数和孔隙率降低。孔隙特征(包括孔隙数和孔隙度)与土壤特性(磷含量和真菌数)之间存在显着的正相关。我们的结果表明,污水灌溉农田中大孔数量和大孔隙度的下降可能会强烈加剧上层金属和养分的积累。这项研究的结果对于理解污水灌溉对土壤孔隙结构的负面影响是有用的,并且对于制定农业可持续策略至关重要。

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