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首页> 外文期刊>European Journal of Soil Science >Sorption of copper (II) and sulphate to different biochars before and after composting with farmyard manure
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Sorption of copper (II) and sulphate to different biochars before and after composting with farmyard manure

机译:用农家肥料堆肥前后将铜和硫酸盐吸附到不同的生物炭中

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Biochar application has been suggested for reducing toxic levels of metals in contaminated soils and enhancing nutrient retention in agro-ecosystems. We studied sorption of copper (Cu(II)) and sulphate-sulphur (SO4-S) to charcoal, gasification coke and flash-pyrolysis biochar in order to relate sorption to char properties. Furthermore, we investigated the effect of composting of charcoal and gasification coke on sorptive properties. Langmuir sorption affinity coefficients for Cu(II) for non-composted biochars increased in the order flash-pyrolysis char < charcoal < gasification coke. The sorption capacity for Cu(II) of the chars decreased in the order gasification coke (629 mg kg-1) > flash-pyrolysis char (196 mg kg-1) > charcoal (56 mg kg-1). Composting significantly increased the sorption affinity coefficient approximately by a factor of 5 for charcoal (up to 1.1 l mg-1) and by a factor of 34 for gasification coke (up to 3.2 l mg-1). Whereas Cu(II) sorption to gasification coke (composted or not) was largely irreversible, sorption to flash-pyrolysis char and charcoal showed higher reversibility. Relationships between Cu(II) sorption and biochar properties such as cation exchange capacity, specific surface area or aromaticity suggest that sorption was largely determined by complexation with organic matter. Sorption of SO4-S was negligible by non-composted and composted biochars. Composted gasification coke might be suited to reducing toxic Cu(II) concentrations in contaminated soils. Composted charcoal can potentially improve Cu(II) retention in a plant available form in acidic, sandy soils with small organic matter contents. Transient effects of biochars on soil pH can over-ride the influence of sorption to biochars on concentrations of trace elements in soil solution and their availability to plants.
机译:已经提出了生物炭的应用,以减少污染土壤中金属的毒性水平,并增强农业生态系统中的养分保留能力。我们研究了木炭,气化焦炭和快速热解生物炭对铜(Cu(II))和硫酸盐-硫(SO4-S)的吸附,以便将吸附与炭的性能联系起来。此外,我们研究了木炭和气化焦炭堆肥对吸附性能的影响。 Langmuir对未混合生物炭中Cu(II)的吸附亲和系数按闪速热解炭<木炭<气化焦炭的顺序增加。焦炭对Cu(II)的吸附能力依次为气化焦炭(629 mg kg-1)>急速热解炭(196 mg kg-1)>木炭(56 mg kg-1)。堆肥显着提高了木炭的吸附亲和系数,约为5倍(最高1.1 l mg-1),而气化焦炭的吸附亲和系数约为34(最高3.2 l mg-1)。尽管Cu(II)吸附到气化焦炭(无论有无腐烂)在很大程度上是不可逆的,但闪速热解炭和木炭的吸附却显示出更高的可逆性。 Cu(II)吸附与生物炭特性(如阳离子交换容量,比表面积或芳香性)之间的关系表明,吸附主要取决于与有机物的络合。未堆肥和堆肥的生物炭对SO4-S的吸附作用可以忽略不计。堆肥气化焦炭可能适合降低污染土壤中的有毒Cu(II)浓度。堆肥木炭可以潜在地改善植物(有机酸含量低的酸性,沙质土壤)中Cu(II)的保留形式。生物炭对土壤pH的瞬时影响可以超过对生物炭的吸附对土壤溶液中微量元素的浓度及其对植物的利用率的影响。

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