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  4. Metal oxide modified biochars for fertile soil management: Effects on soil phosphorus transformation, enzyme activity, microbe community, and plant growth
 
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Metal oxide modified biochars for fertile soil management: Effects on soil phosphorus transformation, enzyme activity, microbe community, and plant growth

Journal
Environmental Research
Journal Volume
231
Date Issued
2023
Author(s)
Peng, Yutao
Chen, Qing
CHUNG-YU GUAN  
Yang, Xiao
Jiang, Xiaoqian
Wei, Mi
Tan, Jinfang
Li, Xiaoyun
DOI
10.1016/j.envres.2023.116258
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85160751551&doi=10.1016%2fj.envres.2023.116258&partnerID=40&md5=cddf067f6cd2356890817ba5868761eb
https://scholars.lib.ntu.edu.tw/handle/123456789/721721
Abstract
Metal oxide modified biochars are increasingly being used for intensive agricultural soil remediation, but there has been limited research on their effects on soil phosphorus transformation, soil enzyme activity, microbe community and plant growth. Two highly-performance metal oxides biochars (FeAl-biochar and MgAl-biochar) were investigated for their effects on soil phosphorus availability, fractions, enzyme activity, microbe community and plant growth in two typical intensive fertile agricultural soils. Adding raw biochar to acidic soil increased NH4Cl–P content, while metal oxide biochar reduced NH4Cl–P content by binding to phosphorus. Original biochar slightly reduced Al–P content in lateritic red soil, while metal oxide biochar increased it. LBC and FBC significantly reduced Ca2–P and Ca8–P properties while improving Al–P and Fe–P, respectively. Inorganic phosphorus-solubilizing bacteria increased in abundance with biochar amendment in both soil types, and biochar addition affected soil pH and phosphorus fractions, leading to changes in bacterial growth and community structure. Biochar's microporous structure allowed it to adsorb phosphorus and aluminum ions, making them more available for plants and reducing leaching. In calcareous soils, biochar additions may dominantly increase the Ca (hydro)oxides bounded P or soluble P instead of Fe–P or Al–P through biotic pathways, favoring plant growth. The recommendations for using metal oxides biochar for fertile soil management include using LBC biochar for optimal performance in both P leaching reduction and plant growth promotion, with the mechanisms differing depending on soil type. This research highlights the potential of metal oxide modified biochars for improving soil fertility and reducing phosphorus leaching, with specific recommendations for their use in different soil types. © 2023 Elsevier Inc.
Subjects
Metal oxides biochar
Microbial community
Phosphorus fraction
Plant growth
Soil enzyme
Type
journal article

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