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源自粪便、农作物残渣和城市固体废物的生物炭用作土壤改良剂时的稳定性、养分有效性及疏水性。

Stability, nutrient availability and hydrophobicity of biochars derived from manure, crop residues, and municipal solid waste for their use as soil amendments.

作者信息

Zornoza R, Moreno-Barriga F, Acosta J A, Muñoz M A, Faz A

机构信息

Sustainable Use, Management, and Reclamation of Soil and Water Research Group, Department of Agrarian Science and Technology, Universidad Politécnica de Cartagena, Paseo Alfonso XIII, 48, 30203, Cartagena, Spain.

Sustainable Use, Management, and Reclamation of Soil and Water Research Group, Department of Agrarian Science and Technology, Universidad Politécnica de Cartagena, Paseo Alfonso XIII, 48, 30203, Cartagena, Spain.

出版信息

Chemosphere. 2016 Feb;144:122-30. doi: 10.1016/j.chemosphere.2015.08.046. Epub 2015 Sep 5.

Abstract

We aimed to study the influence of feedstock properties, pyrolysis temperature and holding time on stability, nutrient contents and hydrophobicity of biochars derived from pig manure, crop residues and municipal solid waste. Biochars were prepared at 300 °C, 400 °C, 500 °C and 700 °C for 1 h, 2 h, 4 h and 5 h. All properties were influenced by feedstock except for pH and hydrophobicity. Temperature influenced all properties, whereas no effect of holding time was observed except for hydrophobicity and thermal stability. Increasing temperature increased aromatization and stability. Low temperatures provided higher cation exchange capacity and available nutrients, and lower salinity and alkalinity. Precipitation of phosphates and carbonates occurred with charring, explaining the decrease of available nutrients. Biochars produced at 300 °C showed high hydrophobity, which disappeared over 500 °C owing to the loss of labile aliphatic compounds. The high pH and carbonates contents at >500 °C resulted in suitable biochars for soil liming and decreasing soil metals availability.

摘要

我们旨在研究原料特性、热解温度和保温时间对源自猪粪、农作物秸秆和城市固体废物的生物炭的稳定性、养分含量及疏水性的影响。生物炭分别在300℃、400℃、500℃和700℃下制备1小时、2小时、4小时和5小时。除pH值和疏水性外,所有特性均受原料影响。温度影响所有特性,而除疏水性和热稳定性外,未观察到保温时间的影响。温度升高会增加芳构化程度和稳定性。低温下生物炭具有更高的阳离子交换容量和有效养分,以及更低的盐分和碱度。磷酸盐和碳酸盐会随着炭化过程而沉淀,这解释了有效养分的减少。在300℃制备的生物炭具有高疏水性,而在500℃以上这种疏水性消失,这是由于不稳定脂肪族化合物的损失。500℃以上的生物炭具有高pH值和碳酸盐含量,使其适合用于土壤改良及降低土壤中金属的有效性。

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