Cuixia Wu
China Agricultural University
41 Papers
86 Citations
Cuixia Wu is an academic researcher from China Agricultural University. The author has contributed to research in topics: Soil water & Chemistry. The author has an hindex of 8, co-authored 32 publications.
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Papers
Long-term manure application enhances the stability of aggregates and aggregate-associated carbon by regulating soil physicochemical characteristics
TL;DR: In this article, the authors investigated the correlations between 20 soil physicochemical factors and stability indices of aggregates and aggregate-associated carbon under the influence of long-term fertilization.
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Effect of aging on the bioavailability and fractionation of arsenic in soils derived from five parent materials in a red soil region of Southern China.
TL;DR: The results indicated that As bioavailability in all soils decreased during aging, especially with a sharp decline occurring in the first 30 days, and Al oxides played a more crucial role than did Fe oxides in controlling the rate of As aging.
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Dynamic arsenic aging processes and their mechanisms in nine types of Chinese soils
TL;DR: The approximate aging equilibrium time (T) for As is proposed, which was mainly influenced by soil clay content, and is the first to propose the approximate Aging equilibrium time for As.
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The effect of the ferrihydrite dissolution/transformation process on mobility of arsenic in soils: Investigated by coupling a two-step sequential extraction with the diffusive gradient in the thin films (DGT) technique
TL;DR: In this paper, sequential extraction was coupled with a newly established method, chelex-metsorb diffusive gradient in thin films (DGT), to study the ferrihydrite transformation/dissolution process and its effect on the mobility of arsenic in soil.
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The performance and mechanism of cadmium availability mitigation by biochars differ among soils with different pH: Hints for the reasonable choice of passivators.
Yuehui Jia,Jing Li,Xibai Zeng,Nan Zhang,Jiong Wen,Jie Liu,Md. Abu Sayem Jiku,Cuixia Wu,Shiming Su +8 more
TL;DR: In this article , the performance of passivation materials mitigating Cadmium (Cd) bioavailability considerably vary with the pH condition of Cd-contaminated soils, and more information was available for the method of improving Cd passivation efficiency taking into account the pH of the targeted soil.
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