School of Life and Environmental Sciences, Wenzhou University, Wenzhou 325035, Zhejiang, China.
Environ Toxicol Chem. 2010 Sep;29(9):1967-75. doi: 10.1002/etc.253.
The objectives of the present study were to elucidate the chemical and structural properties of dissolved organic matter (DOM) derived from aerobic decay of rice straw and to quantify the effect of the DOM on the sorption of pyrene on soil. The DOM samples were obtained from microcosms incubated at 0, 21, 63, and 180 d. The bulk DOM samples were fractionated to four fractions: hydrophilic matter (HIM), acid-insoluble matter (AIM), hydrophobic acid (HOA), and hydrophobic neutral (HON) fractions. The bulk DOM and the four DOM fractions were characterized for their elemental compositions and functionalities. The results showed that HIM had the highest H/C atomic ratios, whereas HOA and AIM had the lowest H/C atomic ratios. These DOM samples were used as the background DOMs in the initial aqueous solutions for measuring sorption of pyrene on a paddy soil. The results indicated that, among the four DOM fractions, HOA, HON, and AIM significantly lowered the pyrene sorption coefficients, but HIM had little or no effect on the pyrene sorption by the soil. It appears that less polar AIM and HON had stronger binding affinities for pyrene in water, reducing the sorption coefficient for the soil, whereas more polar and less aromatic HIM had much weaker binding affinity for pyrene in water, causing little or no effect on the pyrene sorption by the soil. The present study showed that rice straw-derived DOM may enhance desorption and transport of organic pollutants in soil-water systems.
本研究的目的是阐明有氧条件下稻草分解产生的溶解性有机质(DOM)的化学和结构特性,并定量研究 DOM 对芘在土壤中吸附的影响。DOM 样品取自 0、21、63 和 180 天培养的微宇宙。将大量 DOM 样品分为四个部分:亲水物质(HIM)、酸不溶物质(AIM)、疏水性酸(HOA)和疏水性中性(HON)。对大量 DOM 和四个 DOM 部分的元素组成和官能团进行了表征。结果表明,HIM 的 H/C 原子比最高,而 HOA 和 AIM 的 H/C 原子比最低。这些 DOM 样品被用作初始水溶液中测量芘在稻田土壤中吸附的背景 DOM。结果表明,在四个 DOM 部分中,HOA、HON 和 AIM 显著降低了芘的吸附系数,但 HIM 对土壤中芘的吸附几乎没有影响。似乎极性较弱的 AIM 和 HON 在水中对芘具有更强的结合亲和力,从而降低了土壤的吸附系数,而极性较强、芳香性较弱的 HIM 在水中对芘的结合亲和力较弱,对土壤中芘的吸附几乎没有影响。本研究表明,稻草衍生的 DOM 可能会增强土壤-水系统中有机污染物的解吸和迁移。