Wang Changhui, Jiang He-Long, Xu Huacheng, Yin Hongbin
State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing, 210008, China.
Environ Sci Pollut Res Int. 2016 Jan;23(1):351-65. doi: 10.1007/s11356-015-5209-9. Epub 2015 Aug 26.
The use of phosphorus (P) inactivating agents to reduce internal P loading from sediment for lake restoration has attracted increasing attention. Reasonably, the physicochemical properties of P inactivating agents may vary with the interference of various environmental factors, leading to the change of control effectiveness and risks. In this study, the effect of fulvic acid (FA) adsorption on the properties of two agents, drinking water treatment residuals (DWTRs) and Phoslock®, was investigated. The results showed that after adsorption, there was little change for the main structures of DWTRs and Phoslock®, but the thermostability of Phoslock®, as well as the particle size and settleability of the two agents decreased. The specific surface area and pore volume of DWTRs also decreased, while those of Phoslock® increased. Further analysis indicated that aluminum and iron in DWTRs were stable during FA adsorption, but a substantial increase of lanthanum release from Phoslock® was observed, in particular at first (P < 0.01). Moreover, the P immobilization capability of DWTRs had little change after FA adsorption, while the capability of Phoslock® after FA adsorption decreased in solutions (P < 0.001) and sediments (P < 0.1); interestingly, from the view of engineering application, the performance of Phoslock® was not substantially affected. Overall, each P inactivating agent had its own particular responses of the physicochemical properties to environment factors, and detailed investigations on the applicability of each agent were essential before practical application.
使用磷(P)钝化剂来减少沉积物中内部磷负荷以恢复湖泊已引起越来越多的关注。合理地,磷钝化剂的物理化学性质可能会因各种环境因素的干扰而有所不同,从而导致控制效果和风险的变化。在本研究中,研究了富里酸(FA)吸附对两种药剂——饮用水处理残余物(DWTRs)和Phoslock®——性质的影响。结果表明,吸附后,DWTRs和Phoslock®的主要结构变化不大,但Phoslock®的热稳定性以及两种药剂的粒径和沉降性能下降。DWTRs的比表面积和孔隙体积也减小,而Phoslock®的比表面积和孔隙体积增加。进一步分析表明,DWTRs中的铝和铁在FA吸附过程中保持稳定,但观察到Phoslock®中镧的释放大幅增加,尤其是在开始时(P < 0.01)。此外,FA吸附后DWTRs的磷固定能力变化不大,而FA吸附后Phoslock®在溶液(P < 0.001)和沉积物(P < 0.1)中的磷固定能力下降;有趣的是,从工程应用的角度来看,Phoslock®的性能没有受到实质性影响。总体而言,每种磷钝化剂对环境因素的物理化学性质都有其特定的响应,在实际应用前对每种药剂的适用性进行详细研究至关重要。