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添加肉骨粉和干酒糟焚烧灰的草原土壤中的磷形态:连续化学提取和基于同步加速器的X射线吸收近边结构光谱研究

Phosphorus speciation in a prairie soil amended with MBM and DDG ash: Sequential chemical extraction and synchrotron-based XANES spectroscopy investigations.

作者信息

Alotaibi Khaled D, Schoenau Jeff J, Kar Gourango, Peak Derek, Fonstad Terry

机构信息

Department of Soil Science, King Saud University, Box 2460, Riyadh, 11451, Saudi Arabia.

Department of Soil Science, University of Saskatchewan, 51 Campus Drive, Saskatoon, Sk, S7N 5A8, Canada.

出版信息

Sci Rep. 2018 Feb 26;8(1):3617. doi: 10.1038/s41598-018-21935-4.

Abstract

Sequential chemical extraction and synchrotron-based XANES spectroscopy techniques were used to identify P species in two ashes before and after addition to a prairie soil. The used ashes were: meat and bone meal ash (MBMA) and dried distillers grains ash (DDGA) plus mineral P fertilizer (MP) for comparison. Soil treated with MP contained higher content of resin-Pi and NaHCO-Pi followed by DDGA and MBMA. The MBMA amended soil had the highest (47%) proportion of the soil P contained in recalcitrant HCl extractable fraction, reflecting more Ca-bound P present and being formed in soil after application. Analysis of both ashes with XANES spectroscopy before application to soil revealed that MBMA had strong spectral features consistent with hydroxyapatite (Ca(PO)(OH)). DDGA exhibited spectral features consistent with a mixture of several Mg and K phosphate salts rather than a single mineral species. The distinctive features in the XANES spectra of both ashes largely disappeared after amendment to the soil, suggesting transformation to different P forms in the soil after application. It is also possible that the added amount of P to the studied soil via DDGS or MBMA was small enough so that P speciation is not different from the background P level.

摘要

采用连续化学提取和基于同步加速器的X射线吸收近边结构(XANES)光谱技术,对添加到草原土壤前后的两种灰烬中的磷形态进行了鉴定。所用的灰烬为:肉骨粉灰(MBMA)和干酒糟灰(DDGA),并添加矿物磷肥(MP)作为对照。用MP处理的土壤中树脂态磷(Pi)和碳酸氢钠提取态磷(Pi)含量较高,其次是DDGA和MBMA。用MBMA改良的土壤中,难溶性盐酸可提取态磷占土壤总磷的比例最高(47%),这反映出施用后土壤中存在更多与钙结合的磷并形成了这种形态。在将两种灰烬施用到土壤之前,用XANES光谱分析发现,MBMA具有与羟基磷灰石(Ca(PO)(OH))一致的强光谱特征。DDGA呈现出与几种镁和钾磷酸盐混合物一致的光谱特征,而不是单一矿物形态。两种灰烬的XANES光谱中的独特特征在施用到土壤后基本消失,这表明施用后土壤中磷转化为了不同的形态。也有可能通过DDGS或MBMA添加到研究土壤中的磷量足够少,以至于磷的形态与背景磷水平没有差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76d0/5827736/d68d14fb05e2/41598_2018_21935_Fig1_HTML.jpg

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