Lu Yuefeng, Pignatello Joseph J
Department of Soil and Water, Connecticut Agricultural Experiment Station, 123 Huntington Street, New Haven, CT 06511, USA.
J Environ Qual. 2004 Jul-Aug;33(4):1314-21. doi: 10.2134/jeq2004.1314.
Sorption of hydrophobic compounds in soils often shows nonlinearity, competition, and hysteresis. Since such behaviors have been associated with organic polymers in glassy state, it has been postulated that some forms of soil humic substances are glassy. The glassy state is favored by properties that decrease the flexibility of macromolecules, such as cross-linking, presence of unsaturated bonds, and high molecular weight. Polyvalent metal ions, which are abundant in soils, may cross-link humic substances by coordinating to multiple functional groups on different strands. Accordingly, we prepared an Al(3+)-cross-linked humic acid (Al-HA) from the H(+) form (H-HA) of a soil humic acid by a flocculation technique that leaves Al ions bound to organic groups. Sorption of naphthalene and 1,2,4-trichlorobenzene (TCB) on H-HA was nonlinear, competitive, and slightly hysteretic, in agreement with previous studies showing glass transition temperatures of humic acids that lie above room temperature. Nonlinearity, competition, and hysteresis were all enhanced in Al-HA, validating the hypothesis that metal ion cross-linking enhances nonideal sorption. Application of a glassy polymer sorption model reveals that cross-linking increases the affinity of solutes for the hole domain relative to the dissolution domain. The results (i) indicate that isolated, purified soil humic acid behaves like a glassy solid, (ii) indicate that metal-ion cross-linking creates a more rigid-chain structure and supports a link between nonideal sorption and the glassy character of soil organic matter, and (iii) underscore the importance of metal ions on humic structure in relation to sorption of hydrophobic organic compounds.
疏水性化合物在土壤中的吸附通常表现出非线性、竞争性和滞后性。由于这些行为与玻璃态的有机聚合物有关,因此有人推测土壤腐殖物质的某些形态是玻璃态的。玻璃态有利于降低大分子柔韧性的性质,如交联、不饱和键的存在和高分子量。土壤中大量存在的多价金属离子可通过与不同链上的多个官能团配位来交联腐殖物质。因此,我们通过絮凝技术从土壤腐殖酸的H(+)形态(H-HA)制备了Al(3+)交联腐殖酸(Al-HA),该技术使Al离子与有机基团结合。萘和1,2,4-三氯苯(TCB)在H-HA上的吸附是非线性、竞争性的,且有轻微滞后性,这与之前显示腐殖酸玻璃化转变温度高于室温的研究一致。Al-HA中非线性、竞争性和滞后性均增强,验证了金属离子交联增强非理想吸附的假设。应用玻璃态聚合物吸附模型表明,交联增加了溶质对空穴域相对于溶解域的亲和力。结果(i)表明分离纯化的土壤腐殖酸表现得像玻璃态固体,(ii)表明金属离子交联产生了更刚性的链结构,并支持非理想吸附与土壤有机质玻璃态特征之间的联系,(iii)强调了金属离子对腐殖结构在疏水性有机化合物吸附方面的重要性。