Microbial response to designer biochar and compost treatments for mining impacted soils

生物炭 家禽粪便 堆肥 环境科学 环境修复 土壤水分 修正案 农学 植被恢复 肥料 生物量(生态学) 化学 土地复垦 营养物 污染 土壤科学 生物 热解 生态学 有机化学 法学 政治学
作者
Thomas F. Ducey,J. M. Novak,Gilbert C. Sigua,James A. Ippolito,Hannah C. Rushmiller,D. W. Watts,Kristin M. Trippe,Kurt A. Spokas,Kenneth C. Stone,Mark G. Johnson
出处
期刊:Biochar [Springer Nature]
卷期号:3 (3): 299-314 被引量:12
标识
DOI:10.1007/s42773-021-00093-3
摘要

The Oronogo-Duenweg mining belt is a designated United States Environmental Protection Agency Superfund site due to lead-contaminated soil and groundwater by former mining and smelting operations. Sites that have undergone remediation - in which the O, A, and B horizons have been removed alongside the lead contamination - have an exposed C horizon and are incalcitrant to revegetation efforts. Soils also continue to contain quantifiable Cd and Zn concentrations. In order to improve soil conditions and encourage successful site revegetation, our study employed three biochars, sourced from different feedstocks (poultry litter, beef lot manure, and lodge pole pine), at two rates of application (2.5%, and 5%), coupled with compost (0%, 2.5% and 5% application rates). Two plant species - switchgrass (Panicum virgatum) and buffalograss (Bouteloua dactyloides) - were grown in the amended soils. Amendment of soils with poultry litter biochar applied at 5% resulted in the greatest reduction of soil bioavailable Cd and Zn. Above ground biomass yields were greatest with beef lot manure biochar applied at 2.5% with 5% compost, or with 5% biochar at 2.5% and 5% compost rates. Maximal microbial biomass was achieved with 5% poultry litter biochar and 5% compost, and microbial communities in soils amended with poultry litter biochar distinctly clustered away from all other soil treatments. Additionally, poultry litter biochar amended soils had the highest enzyme activity rates for β-glucosidase, N-acetyl-β-D-glucosaminidase, and esterase. These results suggest that soil reclamation using biochar and compost can improve mine-impacted soil biogeophysical characteristics, and potentially improve future remediation efforts.
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