共 37 条
- [1] Yin H., Yan X., Gu X., Evaluation of thermally-modified calcium-rich attapulgite as a low-cost substrate for rapid phosphorus removal in constructed wetlands, Water Research, 115, pp. 329-338, (2017)
- [2] Chen X., Zhou W.Q., Pickett S.T.A., Et al., Diatoms are better indicators of urban stream conditions: a case study in Beijing, China, Ecological Indicators, 60, pp. 265-274, (2016)
- [3] Luo P., Liu F., Liu X.L., Et al., Phosphorus removal from lagoon-pretreated swine wastewater by pilot-scale surface flow constructed wetlands planted with Myriophyllum aquaticum, Science of the Total Environment, 576, pp. 490-497, (2017)
- [4] Liu F., Zhang S.N., Luo P., Et al., Purification and reuse of non-point source wastewater via Myriophyllum-based integrative biotechnology: a review, Bioresource Technology, 248, pp. 3-11, (2018)
- [5] Fan Y., Wang Z., Zhao L.Q., Et al., Modification of diatomite by zirconium and its performance in phosphate removal from water, Environmental Science, 38, 4, pp. 1490-1496, (2017)
- [6] Lin J.W., Wang H., Zhan Y.H., Et al., Adsorption of phosphate by lanthanum hydroxide/natural zeolite composites from low concentration phosphate solution, Environmental Science, 37, 1, pp. 208-219, (2016)
- [7] Zou H.M., Wang Y., Phosphorus removal and recovery from domestic wastewater in a novel process of enhanced biological phosphorus removal coupled with crystallization, Bioresource Technology, 211, pp. 87-92, (2016)
- [8] Hauduc H., Takacs I., Smith S., Et al., A dynamic physicochemical model for chemical phosphorus removal, Water Research, 73, pp. 157-170, (2015)
- [9] Sen Gupta S., Bhattacharyya K.G., Adsorption of metal ions by clays and inorganic solids, RSC Advances, 4, 54, pp. 28537-28586, (2014)
- [10] Han C.H., Li S.S., He F., Et al., Comparative analysis of natural and treated clay laterites in phosphate adsorption capacity in water, Journal of Ecology and Rural Environment, 33, 1, pp. 91-96, (2017)