首页> 外文期刊>Journal of Agricultural and Food Chemistry >Increased Agronomic and Environmental Value Provided by Biochars with Varied Physiochemical Properties Derived from Swine Manure Blended with Rice Straw
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Increased Agronomic and Environmental Value Provided by Biochars with Varied Physiochemical Properties Derived from Swine Manure Blended with Rice Straw

机译:猪粪与稻草混合得到的具有不同理化特性的生物炭提供的农艺和环境价值增加

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摘要

To compensate for the shortcomings of manure biochar, an lignocellulose-based feedstock (rice straw) was added into manure-based feedstock (swine manure) at 3:1, 1:1, and 1:3 (w/w) manure/straw ratios during biochar production within the pyrolysis temperature ranging from 300 to 700 °C. The results showed that the pyrolysis temperatures and the proportions of straw added both influenced the biochar properties. The overall properties of biochars at 300, 400, and 500 °C were thoroughly different from those at 600 and 700 °C by principal components analysis (PCA). The XRD, FTIR, and SEM spectra suggested that the addition of straw considerably changed the mineral crystals, functional groups, and porous structures in manure biochar, respectively. The Zn(II) adsorption batch experiments showed that the biochars with more proportions of manure had the largest Zn(II) adsorption capacity than other biochars at 300 °C, which was attributed to the mineral components, oxygen functional groups, and surface areas. To meet varied agronomic and environmental requirements, the different conditions including pyrolysis temperatures and proportions of straw added should be quantitated.
机译:为了弥补粪便生物炭的缺点,将木质纤维素基原料(稻草)以3:1、1、1:1和1:3(w / w)的粪便/秸秆添加到粪便基原料(猪粪)中。在300至700°C的热解温度范围内,生物炭生产过程中的比值。结果表明,热解温度和秸秆添加量均影响生物炭的性能。通过主成分分析(PCA),在300、400和500°C下生物炭的总体特性与在600和700°C下的生物炭完全不同。 XRD,FTIR和SEM光谱表明,添加秸秆分别显着改变了粪便生物炭中的矿物晶体,官能团和多孔结构。 Zn(II)吸附批实验表明,在300°C时,粪肥比例较高的生物炭具有最大的Zn(II)吸附能力,这归因于矿物成分,氧官能团和表面积。为了满足各种农学和环境要求,应对包括热解温度和所添加秸秆比例在内的不同条件进行定量。

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