School of Environment and Life Science, University of Salford, Greater Manchester M5 4WT United Kingdom.
School of Environment and Life Science, University of Salford, Greater Manchester M5 4WT United Kingdom.
Ecotoxicol Environ Saf. 2018 Dec 15;165:219-223. doi: 10.1016/j.ecoenv.2018.09.005. Epub 2018 Sep 7.
Biochar materials originated from sewage sludge may contain elevated levels of potentially toxic elements. There was a lack of information on the mobility of biochar-borne elements, as driven by low-molecular-weight organic acids (LMWOAs) contained in plant root exudates. A batch experiment was conducted to examine the effects of three common LMWOAs on the release of major elements and trace elements with a focus on various potentially toxic trace elements. The results showed that substantial amounts of Al, Mn, Fe, K, Na and Mg were extracted from two sewage sludge-derived biochar materials by the LMWOAs. A much higher release rate of potentially toxic trace elements was observed in the presence of LMWOAs, as compared to reported data using extractants not encountered in root exudates. The LMWOA-driven releasibility of various potentially toxic trace elements was in the following decreasing order: Zn > Ni > Pb > Cu > Cr >Co = Cd. Other trace elements that are subject to mobilization in the presence of LMWOAs included B, Ba, In, Li and Sr except Ba under oxalic acid extraction. Among the three LMWOAs, oxalic acid showed a generally stronger capacity to mobilize these metals. The findings obtained from this study provides new information that can be used for better evaluating the phyto-availability of trace elements bound to sewage sludge-originated biochar materials.
生物炭材料源于污水污泥可能含有高水平的潜在有毒元素。由于植物根分泌物中含有低分子量有机酸(LMWOAs),生物炭携带元素的迁移性信息缺乏。进行了批处理实验,以研究三种常见的低分子量有机酸对主要元素和微量元素释放的影响,重点是各种潜在的有毒微量元素。结果表明,两种污水污泥衍生的生物炭材料中大量的 Al、Mn、Fe、K、Na 和 Mg 被低分子量有机酸提取。与根分泌物中未遇到的提取剂相比,在存在低分子量有机酸的情况下,观察到潜在有毒微量元素的释放率要高得多。低分子量有机酸驱动的各种潜在有毒微量元素的释放率顺序如下:Zn > Ni > Pb > Cu > Cr > Co = Cd。在低分子量有机酸存在下可发生迁移的其他微量元素包括 B、Ba、In、Li 和 Sr,但在草酸提取条件下 Ba 除外。在这三种低分子量有机酸中,草酸通常具有更强的金属迁移能力。本研究的结果提供了新的信息,可以用于更好地评估与污水污泥衍生的生物炭材料结合的微量元素的植物有效性。