Restricted colloidal-bound phosphorus release controlled by alternating flooding and drying cycles in an alkaline calcareous soil
文献类型: 外文期刊
作者: Ding S.;Zhang S.;Wang Y.;Chen S.;Chen Q.
作者机构:
关键词: Colloidal transport;Ionic strength;Moisture management;Phosphorus loss;Phosphorus sorption
期刊名称: Environmental Pollution
ISSN: 0269-7491
年卷期: 2024 年 343 卷
页码:
收录情况: SCIE(2024版) ; ; EI(2024版)
摘要: Colloid-facilitated phosphorus (P) migration plays an important role in P loss from farmland to adjacent water bodies. However, the dynamics of colloidal P (Pcoll) release as influenced by irrigation in alkaline calcareous soil remains a knowledge gap. The present study, monitored the dynamic change of Pcoll under different water management strategies: 1) control, 2) flooding, and 3) alternating flooding and drying cycles. Soil water-dispersible colloids (0.6 nm-1 μm) were extracted by combining filtration and ultrafiltration methods. The contents of P, cation and organic carbon in the water-dispersible colloids were determined and the stability and mineral composition of colloidal fractions were characterized. The results showed that Pcoll ranged from 16.5 to 25.5 mg kg−1 and represented 42.8%–64.9% of the water-extracted P in the control. Flooding significantly decreased the Pcoll content by 16.0%–62.1% (mean 32.7%) and it may be attributed to the dissolution of colloidal iron (Fe) bound P. The alternating flooding and drying treatment significantly reduced the Pcoll content by 11.6%–88.0% (mean 67.6%). The Pcoll content of the flooding event was always greater than the Pcoll content of the drying event during flooding and drying cycles. Redundancy analysis and random forest modeling showed that the colloidal calcium (Ca) and ionic strength in soil solutions had negative correlations with the Pcoll content, and pH, ionic strength and truly dissolved P were the critical factors affecting Pcoll. Drying of the flooded soil led to the decrease of pH and the increase of ionic strength, colloidal Ca content and positive charges of colloid surfaces, which promoted colloid aggregation and enhanced soil P sorption capacity. This restricted the loss potential of Pcoll. In summary, controlled flooding and drainage when managed correctly have a role to play in mitigating Pcoll loss from P-enriched calcareous soils. © 2023 Elsevier Ltd
分类号:
- 相关文献
作者其他论文 更多>>
-
Comprehensive study of non-volatile and volatile metabolites in five water lily species and varieties (Nymphaea spp.) using widely targeted metabolomics
作者:Yang G.;Wei J.;Wu Y.;Chen S.;Yu C.;Zhu Y.;Lin Z.;Lv H.;Chen Y.
关键词:
-
A survey of efficient fine-tuning methods for Vision-Language Models — Prompt and Adapter
作者:Xing J.;Liu J.;Wang J.;Sun L.;Chen X.;Gu X.;Wang Y.
关键词:Adapter;Computer vision;Efficient fine-tuning;Pre-training model;Prompt;Vision-language
-
Pan-genome and phylogenomic analyses highlight Hevea species delineation and rubber trait evolution
作者:Fang Y.;Xiao X.;Lin J.;Lin Q.;Wang J.;Liu K.;Li Z.;Xing J.;Liu Z.;Wang B.;Qi Y.;Long X.;Zeng X.;Hu Y.;Qi J.;Qin Y.;Yang J.;Zhang Y.;Zhang S.;Ye D.;Zhang J.;Liu J.;Tang C.
关键词:
-
Glucose restriction enhances oxidative fiber formation: A multi-omic signal network involving AMPK and CaMK2
作者:Zhang K.;Xie N.;Ye H.;Miao J.;Xia B.;Yang Y.;Peng H.;Xu S.;Wu T.;Tao C.;Ruan J.;Wang Y.;Yang S.
关键词:Comp;Genomics;Metabolomics;Omics;Proteomics
-
Synergistic dual-mechanism raised structure and vertically aligned porous 3D hydrogel fabric for ultra-high salt-resistant water desalination
作者:Zhang Z.;Wang X.;Li G.;Zhao K.;Liu G.;Wang Y.;Li Z.;Huang J.;Xu Z.;Lai Y.;Qian X.;Zhang S.
关键词:PVA hydrogel;Raised fabric;Seawater desalination;Solar evaporator
-
Mercapto–palygorskite decreases the Cd uptake of wheat by changing Fe and Mn fraction in Cd contaminated alkaline soil
作者:Yong Y.;Yang T.;Wang Y.;Xu Y.;Huang Q.;Liang X.;Sun Y.;Wang L.
关键词:Alkaline soil;Cd pollution;Fe (Mn) oxides;Mercapto–palygorskite;Soil colloid;Wheat
-
Tembusu virus induced apoptosis in vacuolate spermatogenic cells is mediated by Cytc-mediated mitochondrial apoptotic signaling pathway
作者:Huang Y.;Zhang Y.;Yang S.;Shi Y.;Chu X.;Ahmed N.;Wu J.;Chen Q.
关键词:Apoptosis;Cytochrome c;Duck tembusu virus;Spermatogenic cells;Testis