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老化对作为土壤改良剂的铝基饮用水处理残余物反应性的影响。

Aging effects on reactivity of an aluminum-based drinking-water treatment residual as a soil amendment.

作者信息

Agyin-Birikorang S, O'Connor G A

机构信息

Soil and Water Science Department, University of Florida, 106 Newell Hall, P.O. Box 110510, Gainesville, Fl 32611-0510, United States.

出版信息

Sci Total Environ. 2009 Jan 1;407(2):826-34. doi: 10.1016/j.scitotenv.2008.09.025. Epub 2008 Oct 31.

Abstract

Several studies have shown that drinking-water treatment residuals (WTR) could be used to control mobility of excess phosphorus (P) and other oxyanions in poorly sorbing soils. Presently, only "aged" WTRs (those left, or manipulated, to dewater) are land applied. However, if demand for WTRs increase in the near future, freshly-generated WTRs could be considered for land application. To our knowledge, few studies have examined the reactivity and equilibration time of freshly-generated alum-based WTR (Al-WTR). A laboratory thermal incubation study was, therefore, conducted to determine various extractable Al forms in Al-WTR as a function of WTR "age", and the time required for freshly generated Al-WTR to stabilize. Freshly-generated Al-WTR samples were collected directly from the discharge pumps of a drinking-water treatment plant, and thermally incubated at 52 degrees C, either with or without moisture control, for < or = 24 wk. Additional dewatered Al-WTR samples of various ages (2 wk- to 2 y old) were also included in the study. Various methods of extracting Al [total-, oxalate (200 and 5 mM), and Mehlich 1 extractants] were utilized to assess Al extractability over time. Freshly-generated Al-WTR samples were potentially more reactive (as reflected in greater 5 mM oxalate extractable Al concentration) than dewatered Al-WTR samples stockpiled for > or = 6 mo. Aluminum reactivity of the freshly-generated Al-WTR decreased with time. At least 6 wk of thermal incubation (corresponding to > or = 6 mo of field drying) was required to stabilize the most reactive Al form (5mM oxalate extractable Al concentration) of the Al-WTR. Although no adverse Al-WTR effects have been reported on plants and grazing animals (apparently because of low availability of free Al(3+) in Al-WTR), land application of freshly-generated Al-WTRs (at least, those with similar physicochemical characteristics as the one utilized for the study) should be avoided.

摘要

多项研究表明,饮用水处理残余物(WTR)可用于控制吸附性差的土壤中过量磷(P)和其他含氧阴离子的迁移性。目前,只有“老化”的WTR(那些留存或经过处理以脱水的)才用于土地施用。然而,如果未来对WTR的需求增加,可以考虑将新产生的WTR用于土地施用。据我们所知,很少有研究考察新产生的铝基WTR(Al-WTR)的反应性和平衡时间。因此,开展了一项实验室热培养研究,以确定Al-WTR中各种可提取铝形态随WTR“老化程度”的变化情况,以及新产生的Al-WTR达到稳定所需的时间。新产生的Al-WTR样品直接从一家饮用水处理厂的排放泵收集,并在52摄氏度下进行热培养,有或没有湿度控制,培养时间≤24周。该研究还纳入了不同老化程度(2周龄至2年)的额外脱水Al-WTR样品。采用多种提取铝的方法[总铝、草酸盐(200和5 mM)以及Mehlich 1提取剂]来评估不同时间的铝提取率。新产生的Al-WTR样品可能比储存≥6个月的脱水Al-WTR样品反应性更强(如5 mM草酸盐可提取铝浓度更高所反映)。新产生的Al-WTR的铝反应性随时间降低。至少需要6周的热培养(相当于≥6个月的田间干燥)才能使Al-WTR中反应性最强的铝形态(5 mM草酸盐可提取铝浓度)达到稳定。尽管尚未有关于Al-WTR对植物和放牧动物产生不利影响的报道(显然是因为Al-WTR中游离Al(3+)的有效性较低),但应避免施用新产生的Al-WTR(至少是那些具有与本研究中所用材料相似理化特性的Al-WTR)。

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