MOE Key Laboratory of Pollution Processes and Environmental Criteria, College of Environmental Science and Engineering, Nankai University, Tianjin 300350, China; Tianjin Engineering Center of Environmental Diagnosis and Contamination Remediation, Tianjin 300350, China.
State Key Laboratory of Water Environment Simulation, School of Environment, Beijing Normal University, Beijing 100875, China.
Sci Total Environ. 2022 Mar 20;813:152648. doi: 10.1016/j.scitotenv.2021.152648. Epub 2021 Dec 25.
Pyrolytic biochar is a good material for remediating soils contaminated with heavy metals; however, it exhibits strong alkalinity, which easily causes soil alkalization and fertility reduction. Herein, a series of novel biochar materials (BPBCs) were prepared by combined ball milling and phosphorus (P)-loading. The optimized BPBC were fabricated in the basis of Cd and Pb adsorption capacities of the biochar, with pyrolysis at 700 °C, ball milling for 12 h and the addition of 5% red P (BPBC700). Ball milling could effectively grind pristine biochar into submicron particles and nanoscale P particles could be uniformly loaded on BPBC700. Moreover, the oxidative conversion of red P into phosphorus oxides, phosphoric acid and (hydro)phosphates was promoted due to reactions with the carbonates, alkaline minerals and O-containing functional groups of biochar. These reactions also decreased the biochar and soil pH to nearly neutral by acid-base neutralization. Pot experiments showed that BPBC700 had better effects than the pristine or ball-milled biochar in improving soil properties (e.g., cation exchange capacity and organic carbon), increasing the concentrations of soil nutrients (e.g., N and P), promoting alkaline phosphatase, catalase and urease activities, decreasing soil mobility and plant accumulation of Cd and Pb, and alleviating Cd and Pb stress on maize plants. Thus, BPBC is a promising and ecofriendly amendment to enhance its adsorption ability on Cd and Pb, soil quality and plant productivity in contaminated soil.
热解生物炭是一种修复重金属污染土壤的优良材料;然而,它表现出很强的碱性,容易导致土壤碱化和肥力下降。在此,通过联合球磨和磷(P)负载制备了一系列新型生物炭材料(BPBCs)。在生物炭对 Cd 和 Pb 的吸附容量的基础上,优化了热解温度为 700°C、球磨 12 h 和添加 5%红磷(BPBC700)的条件。球磨可以有效地将原始生物炭研磨成亚微米颗粒,纳米级 P 颗粒可以均匀地负载在 BPBC700 上。此外,由于与生物炭中的碳酸盐、碱性矿物和含 O 官能团的反应,红磷被氧化转化为磷氧化物、磷酸和(羟)磷酸盐。这些反应也通过酸碱中和将生物炭和土壤 pH 降低到接近中性。盆栽实验表明,BPBC700 在改善土壤性质(如阳离子交换容量和有机碳)、提高土壤养分浓度(如 N 和 P)、促进碱性磷酸酶、过氧化氢酶和脲酶活性、降低土壤 Cd 和 Pb 的迁移性和植物积累量以及减轻 Cd 和 Pb 对玉米植株的胁迫方面,比原始或球磨生物炭具有更好的效果。因此,BPBC 是一种很有前景的环保改良剂,可以提高其对 Cd 和 Pb 的吸附能力、土壤质量和受污染土壤中植物的生产力。