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不同木材预处理对木材吸附-解吸利谷隆和甲霜灵的影响。

Effect of different wood pretreatments on the sorption-desorption of linuron and metalaxyl by woods.

作者信息

Rodríguez-Cruz M Sonia, Andrades M Soledad, Parada A María, Sánchez-Martín M Jesús

机构信息

Instituto de Recursos Naturales y Agrobiología de Salamanca, CSIC, P.O. Box 257, 37071 Salamanca, Spain.

出版信息

J Agric Food Chem. 2008 Aug 27;56(16):7339-46. doi: 10.1021/jf800980w. Epub 2008 Jul 19.

Abstract

The sorption-desorption of two different pesticides, linuron and metalaxyl, by woods was studied. Sorbent/solution ratio and sorption kinetics were also determined. Untreated wood and water, NaOH, HCl, and octadecyltrimethylammonium bromide (ODTMA) treated pine (softwood) and oak (hardwood) were used as sorbents. Linuron and metalaxyl were sorbed by untreated woods up to 80 and 40%, respectively, in a short time when the sorbent/solution ratio of 1:10 was used. Sorption of pesticides was significantly higher by pine, having higher lignin content, than by oak. Freundlich sorption constants (K(f)) were 96.2 and 74.4 (linuron) and 8.28 and 4.95 (metalaxyl) for untreated pine and oak woods and increased 1.04-2.35-fold (linuron) and 1.33-2.17-fold (metalaxyl) when woods were treated. The sorption was higher by HCl- and ODTMA-treated woods. Additionally, Freundlich desorption constants also indicated greater sorption irreversibility of both pesticides for treated woods than for untreated woods. The results revealed wood residues as a promising, low-cost, and environmentally friendly material to immobilize pesticides in soils, preventing water contamination. Wood treatments aimed at removing soluble wood extracts or at modifying wood chemical structure could increase their sorption capacity.

摘要

研究了两种不同农药利谷隆和甲霜灵在木材上的吸附-解吸情况。还测定了吸附剂/溶液比例和吸附动力学。未处理的木材以及用水、氢氧化钠、盐酸和十八烷基三甲基溴化铵(ODTMA)处理过的松树(软木)和橡树(硬木)用作吸附剂。当采用1:10的吸附剂/溶液比例时,未处理的木材在短时间内分别吸附了高达80%和40%的利谷隆和甲霜灵。木质素含量较高的松树对农药的吸附明显高于橡树。未处理的松树和橡树的弗伦德利希吸附常数(K(f))分别为96.2和74.4(利谷隆)以及8.28和4.95(甲霜灵),木材经处理后,该常数增加了1.04 - 2.35倍(利谷隆)和1.33 - 2.17倍(甲霜灵)。盐酸和ODTMA处理过的木材吸附量更高。此外,弗伦德利希解吸常数也表明,两种农药在处理过的木材上的吸附不可逆性比未处理的木材更大。结果表明,木材残渣是一种有前景的、低成本且环保的材料,可用于固定土壤中的农药,防止水污染。旨在去除可溶性木材提取物或改变木材化学结构的木材处理方法可以提高其吸附能力。

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