Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China.
Sci Total Environ. 2013 Feb 1;444:311-9. doi: 10.1016/j.scitotenv.2012.11.062. Epub 2012 Dec 29.
This work was initiated to study the concentration effects on phenanthrene and pyrene extraction during process of aging in phaeozem and burozem with or without freeze-thawing cycles. 1, 10, and 100 μg g(-1) phenanthrene and pyrene contaminated soils were extracted by 10,000 mg L(-1) surfactant SDBS at various times. The extraction amount decreased with increasing contact time. Aging process could be divided into two stages: an initially rapid and then a slow sorption period. The amount extraction of 1 μg g(-1) pyrene in phaeozem was higher at the initial sorption stage. The time for 100 μg g(-1) phenanthrene and pyrene extraction efficiency to reach equilibrium in both soils were shorter than 1 and 10 μg g(-1). Changes in extraction efficiency rate caused by slow sorption were affected by contact time, physicochemical properties of soils and chemicals and the applied concentration of chemicals. For 1 and 10 μg g(-1) phenanthrene and pyrene contaminated soils, freeze-thawing cycle increased the extraction efficiency at the initial 1st and 8th days. The extraction efficiency with no freeze-thawing cycle was higher than that with freeze-thawing cycles at 30 and 120 days. A conceptual model was proposed to account for this process.
本研究旨在探讨冻融循环对黑钙土和栗钙土中菲和芘老化过程中萃取浓度的影响。用 10000mg/L 的表面活性剂 SDBS 萃取 1μg/g-1、10μg/g-1 和 100μg/g-1 浓度污染的土壤,在不同时间内进行萃取。萃取量随接触时间的增加而减少。老化过程可分为两个阶段:快速初始吸附阶段和缓慢吸附阶段。在初始吸附阶段,黑钙土中 1μg/g-1 芘的萃取量较高。在两种土壤中,100μg/g-1 菲和芘的萃取效率达到平衡所需的时间均短于 1μg/g-1 和 10μg/g-1。缓慢吸附引起的萃取效率变化受接触时间、土壤理化性质、化学物质和化学物质应用浓度的影响。对于 1μg/g-1 和 10μg/g-1 浓度污染的土壤,冻融循环在最初的 1 天和第 8 天增加了萃取效率。无冻融循环的萃取效率高于 30 天和 120 天的冻融循环。提出了一个概念模型来解释这个过程。