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首页> 外文期刊>The Science of the Total Environment >Influence of pyrolysis temperature and hardwood species on resulting biochar properties and their effect on azimsulfuron sorption as compared to other sorbents
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Influence of pyrolysis temperature and hardwood species on resulting biochar properties and their effect on azimsulfuron sorption as compared to other sorbents

机译:与其他吸附剂相比,热解温度和硬木树种对所得生物炭特性的影响及其对阿齐磺隆吸附的影响

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Azimsulfuron is an acidic herbicide with a high water solubility which makes risk of ground water contamination a concern. Various wood based biochars produced at different pyrolysis temperatures were characterized along with their sorption capacity for the herbicide azimsulfuron. In addition, we compared sorption on biochars with sorption on mineral sorbents such as clay minerals and iron oxides. In biochar formed at high temperatures (500 ℃ and 700 ℃), FT-IR studies confirmed the increase in aromaticity. Scanning electron microscope (SEM) images of the biochars showed differences in the macroporous structure and lower size pores at higher temperatures. SSA (Specific Surface Area) of the biochars increased with pyrolysis temperature and, for all different biochars, this resulted in higher sorption of azimsulfuron. In the case of mineral sorbents, sorption is not related to SSA. Higher sorption is observed in a montmorillonite, of lower SSA, than in mixture of clay minerals with 30% smectite (w/w). On the contrary as with the clays, sorption on the two iron oxyhydroxides increased with SSA. Desorption studies showed hysteresis. Leaching studies showed no effect on azimsulfuron retention on soil column amended with apple wood biochar, while a reduction of azimsulfuron in leachates in soil columns amended with the modified montmorillonite and alder wood biochar (500 ℃). Total retention was shown for alder wood biochar.
机译:嘧磺隆是一种具有高水溶性的酸性除草剂,这使人们担心地下水污染的风险。表征了在不同热解温度下产生的各种木质生物炭及其对除草剂阿齐磺隆的吸附能力。此外,我们将生物炭的吸附与矿物吸附剂(如粘土矿物和氧化铁)的吸附进行了比较。在高温(500℃和700℃)下形成的生物炭中,FT-IR研究证实了芳香性的增加。生物炭的扫描电子显微镜(SEM)图像显示,在较高温度下,大孔结构和较小尺寸的孔存在差异。生物炭的SSA(比表面积)随热解温度的增加而增加,并且对于所有不同的生物炭,这都会导致阿齐磺隆的更高吸附。对于矿物吸附剂,吸附与SSA无关。与具有30%蒙脱石(w / w)的粘土矿物混合物相比,在较低SSA的蒙脱土中观察到更高的吸附。与粘土相反,SSA使两种羟基氧化铁上的吸附增加。解吸研究显示出滞后现象。浸出研究表明,用苹果木生物炭改良的土壤柱对阿齐磺隆的保留没有影响,而用改性蒙脱石和al木生物炭(500℃)改良的土壤柱中浸出液中的阿齐磺隆减少了。显示了al木生物炭的总保留量。

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