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Secondary steel mill slags with pulp and paper mill solid residues for soil amendment: mineralogy, relevant physicochemical properties and trace element availability

机译:二级钢厂矿渣和纸浆厂和造纸厂的固体残留物,用于土壤改良:矿物学,相关的理化性质和微量元素的有效性

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Inter-industrial utilisation of solid residues for soil amendment was investigated by combining secondary steel mill slags with residuals from a pulp and paper mill. Sample analysis included mineralogical characterisation by X-ray diffraction, relevant physicochemical properties and trace element availability by the original three-stage sequential BCR extraction procedure (CH_3COOH, NH_2OHHC1 and H_2O_2 + CH_3COONH_4) and residual fraction determination by acid digestion (USEPA 3051 A). Respectively, the pseudo-total concentrations of trace elements were determined according to USEPA method 3051 A. Consequently, the alkalinity of the samples (pH values 12.1-12.2) suggests significant buffering and acid neutralisation capacity with liming effect values (34.9%-35.6%, Ca-equivalents, d.w.) comparable to commercial ground limestone. This was supported by XRD, which only revealed the existence of portlandite [Ca(OH)_2] an calcite [CaCO_3]. Additionally, the pseudo-total concentrations of trace elements were lower than the respective limit values for EU soil improvers (2006/799/EC). However, Ba and V recovery during sequential extraction (Ba: 40.1-56.0 mg·kg~(-1), d.w., by CH_3COOH; and V: 72.2-96.5 mg·kg~(-1), d.w., by NH_2OHHC1) indicates potential phytoavailability.
机译:通过将二级钢厂矿渣与制浆造纸厂的残余物结合起来,研究了工业残余物在工业间用于土壤改良的利用。样品分析包括通过X射线衍射进行矿物学表征,相关的理化性质和通过原始的三阶段连续BCR萃取程序(CH_3COOH,NH_2OHHC1和H_2O_2 + CH_3COONH_4)进行的微量元素有效性以及通过酸消解法测定的残留分数(USEPA 3051 A)。痕量元素的伪总浓度分别根据USEPA方法3051 A确定。因此,样品的碱度(pH值12.1-12.2)表明具有显着的缓冲和酸中和能力,并具有石灰效应值(34.9%-35.6%) ,钙当量,dw)可与市售石灰石媲美。这得到了XRD的支持,XRD仅显示了方解石[CaCO_3]和钙铁矿[Ca(OH)_2]的存在。此外,微量元素的伪总浓度低于欧盟土壤改良剂的相应限值(2006/799 / EC)。但是,连续萃取过程中Ba和V的回收率(CH_3COOH的Ba:40.1-56.0 mg·kg〜(-1)dw; NH_2OHHC1的V:72.2-96.5 mg·kg〜(-1)dw)表示潜在的植物利用率。

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