Acidity and Aluminum Speciation in Biochar Amended Tropical Soils

生物炭 化学 Ultisol公司 氧溶胶 溶解有机碳 土壤pH值 土壤水分 阳离子交换容量 环境化学 土壤科学 地质学 热解 有机化学
作者
Joseph Osafo Eduah,Eric Kwesi Nartey,Mark Kofi Abekoe,Samuel Kwesi Asomaning,Joseph Kobina Essibu,Stephan Weck Henriksen
出处
期刊:Communications in Soil Science and Plant Analysis [Taylor & Francis]
卷期号:53 (7): 913-927 被引量:8
标识
DOI:10.1080/00103624.2022.2034847
摘要

Soil acidification in the tropics has become a more pressing issue due to its associated aluminum (Al) phytotoxicity. The chemical reactive nature of biochar can alter Al speciation in soils. The study assessed the chemical properties and Al speciation in a Ultisol and an Oxisol amended with corn cob (CC) and rice husk (RH) biochars charred at 300, 450 and 650°C in an incubation study for 120 d. pH was determined periodically while organic carbon (OC), cation exchange capacity (CEC), exchangeable base cations, exchangeable acidity, and exchangeable Al3+ were measured at the end of the incubation period. Dissolved organic carbon (DOC) and pH were also determined in soil solution from each treatment. Throughout the incubation period CC and RH biochars significantly increased soil pH, with CC biochar showing a greater effect. Similar effects were also observed for OC, CEC, and exchangeable base cations (Ca2+, Mg2+ and K+). Soil exchangeable Al3+ and exchangeable acidity, soluble Al and Al3+ activity in soil solution decreased significantly upon biochar application; it was more significant at the 650°C. Biochars at 300–450°C exhibited a more notable increase in soil DOC. At pH ≤ 5.8, Al-DOC and free Al3+ dominated in soil solution while at pH > 5.8, Al species was mainly Al-OH ions (i.e. Al(OH)2+, Al(OH)2+, Al(OH)3, and Al(OH)4−). Biochars at 300–450°C promoted the large formation of Al-DOC while Al-OH ions dominated in 650°C-biochar treatments. Biochar can be used to ameliorate Al phytotoxicity in tropical acid soils, particularly at 300–450°C.
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