Ju Daeyoung, Young Thomas M
Agricultural and Environmental Chemistry Graduate Group, University of California, Davis, CA 95616, USA.
Water Res. 2005 Jul;39(12):2599-610. doi: 10.1016/j.watres.2005.04.058.
This study focused on evaluating the influence of the rigidity of natural organic matter (NOM) associated with four natural geosorbents in controlling the non-ideal sorption behaviors of five chlorinated benzenes. Single solute sorption isotherms for each sorbate/sorbent combination were modeled and interpreted by the Freundlich sorption isotherm and the adsorption-partitioning model based on Polanyi-Manes theory (PM model). "Rigid" organic matter was operationally quantified as the fraction of carbon resistant to wet chemical oxidation (hard carbon) or thermal oxidation (soot carbon); atomic H/O ratios indicated a close correlation between the degree of reduction of the NOM and its rigidity. Sorbents with larger rigid carbon fractions had more non-linear sorption isotherms and higher organic carbon (OC) normalized sorption affinities. The size of the PM hole filling domain for a given sorbent was closely correlated with the extent to which the sorbent's affinity for chlorobenzenes exceeded predictions from a linear free energy relationship. Loss of some portions of the rigid character of the NOM domain due to the penetration of sorbate molecules (plasticization) was discussed as a possible contributor to the non-ideal sorption behaviors observed in this study. The existence of a permanently rigid NOM domain, not subject to plasticization under environmental conditions, was postulated as an additional factor determining the observed sorption behavior.
本研究着重评估与四种天然地质吸附剂相关的天然有机物(NOM)的刚性对控制五种氯化苯非理想吸附行为的影响。通过Freundlich吸附等温线和基于Polanyi-Manes理论的吸附-分配模型(PM模型)对每种吸附质/吸附剂组合的单溶质吸附等温线进行了建模和解释。“刚性”有机物在操作上被量化为耐湿化学氧化的碳(硬碳)或热氧化的碳(烟灰碳)的比例;原子H/O比表明NOM的还原程度与其刚性之间存在密切相关性。具有较大刚性碳比例的吸附剂具有更多的非线性吸附等温线和更高的有机碳(OC)归一化吸附亲和力。给定吸附剂的PM空穴填充域的大小与吸附剂对氯苯的亲和力超过线性自由能关系预测的程度密切相关。由于吸附质分子的渗透导致NOM域的某些刚性部分丧失(增塑),被认为是本研究中观察到的非理想吸附行为的一个可能原因。假定存在一个在环境条件下不会发生增塑的永久刚性NOM域,作为决定观察到的吸附行为的另一个因素。