主持国家重点研发计划土壤专项课题、国家自然科学基金项目、国家科技部水体污染控制与治理科技重大专项子课题等。作为研究骨干参与国家自然科学基金地区重点项目、国家环保部公益项目、国家科技支撑计划、美国基金“Russell and Helen Dilworth Memorial Fund (USA) ”等。在环境领域主流期刊发表论文120多篇,获专利授权10余项。其中第一/通讯作者SCI论文近50篇。
Guo, W.B., Li, D.P., Chen, B., Li, J.M., Li, Z.C., Cao, X.D., Qiu, H., Zhao, L.*, 2025. Microbial colonization on four types of microplastics to form biofilm differentially affecting organic contaminant biodegradation. Chem. Eng. J. 503, 158060.
Guo, W.B., Li, D.P., Zhai, Y., Xu, X.Y., Qiu, H., Miao, A.J., Cao, X.D., Zhao, L.*, 2024. Differential interaction modes of As(III)/As(V) with microbial cell membrane induces opposite effects on organic contaminant biodegradation in groundwater. Environ. Int. 193, 109074.
Li, D.P., Guo, W.B., Chen, B., Zhai, Y., Lang, Y., Guo, T.B., Cao, X.D., Zhao, L.*, 2024. Niche construction in a bioelectrochemical system with 3D-electrodes for efficient and thorough biodechlorination. Water. Res. 265, 122260.
Li, D.P., Guo, W.B., Zhai, Y., Xu, X.Y., Cao, X.D., Zhao, L.*, 2023. The aggregated biofilm dominated by Delftia tsuruhatensis enhances the removal efficiency of 2,4-dichlorophenol in a bioelectrochemical system. Environ. Pollut. 337, 122576.
Fang, S.W., Zhao, L.*, Rong, G.Q., Chen, B., Xu, X.Y., Qiu, H., Cao, X.D., 2023. Converting coastal silt into subgrade soil with biochar as reinforcing agent, CO2 adsorbent, and carbon sequestrating material. J. Environ. Manage. 344, 118394.
Xue, W.Z., Ying, D.W., Li, Y., Sheng, Y., He, T.H., Shi, P.L., Liu, M., Zhao, L.*, 2023. Method for establishing soil contaminant discharge inventory: An arsenic-contaminated site case study. Environ. Res. 227, 115700.
Nan, H.Y., Yang, F., Li, D.P., Cao, X.D., Xu, X.Y., Qiu, H., Zhao, L.*, 2023. Calcium enhances phosphorus reclamation during biochar formation: Mechanisms and potential application as a phosphorus fertilizer in a paddy soil. Waste Manage. 162, 83–91.
Yang, F., Lv, J.F., Zheng, Y.F., Cui, J.Y., Huang, Y.D., Cao, X.D., Liu, H.Z., Zhao, L.*, 2023. Enhancement of coal gangue performance by surface micro-crystalline glaze derived from mineral powder. Sci. Total Environ. 858, 159986.
Nan, H.Y., Mašek, O., Yang, F., Xu, X.Y., Qiu, H., Caop, X.D., Zhao, L.*, 2022. Minerals: A missing role for enhanced biochar carbon sequestration from the thermal conversion of biomass to the application in soil. Earth-Sci. Rev. 234, 104215.
Zhang, Y., Maierdan, Y.F., Guo, T.B., Chen, B., Fang, S.W., Zhao, L.*, 2022. Biochar as carbon sequestration material combines with sewage sludge incineration ash to prepare lightweight concrete. Constr. Build. Mater. 343, 128116.
Chen, H., Li, D.P., Mašek, O., Zhai, Y., Rong, G.Q., Xu, X.Y., Cao, X.D., Zhao, L.*, 2022. Simultaneous dissipation of trichloroethene and arsenic from co-contaminated groundwater by coupling biodechlorination and biodetoxification with assistance of biochar. Biochar 4, 69.
Luo, Y., Li, Z.P., Xu, H.C., Xu, X.Y., Qiu, H., Cao, X.D., Zhao, L.*, 2022. Development of phosphorus composite biochar for simultaneous enhanced carbon sink and heavy metal immobilization in soil. Sci. Total Environ. 831, 154845.
Yin, J.X., Zhao, L.*, Xu, X.Y., Li, D.P., Qiu, H., Cao, X.D., 2022. Evaluation of long-term carbon sequestration of biochar in soil with biogeochemical field model. Sci. Total Environ. 822, 153576.
Yang, F., Zuo, X.P., Yang H.R., Ke, Q., Huang, Y.D., Cao, X.D., Zhao, L.*, 2021. Ionic liquid-assisted production of high-porosity biochar with more surface functional groups: Taking cellulose as attacking target. Chem. Eng. J. 133811.
Zhao, L.; Zheng, W.; Mašek, O.; Chen, X.; Gu, B.; Sharma, B. K.; Cao, X., 2017. Roles of Phosphoric Acid in Biochar Formation: Synchronously Improving Carbon Retention and Sorption Capacity. J. Environ. Qual. 46 (2), 393–401.
Zhao L, Cao XD*, Zheng W, Scott JW, Sharma BK, Chen X, 2016. Copyrolysis of biomass with phosphate fertilizers to improve biochar carbon retention, slow nutrient release, and stabilize heavy metals in soil. ACS Sustain Chem. Eng. 4 (3): 1630−1636.
Zhao, L., Zheng, W., Cao, X.D.*, 2014. Distribution and evolution of organic matter phases during biochar formation and their importance in carbon loss and pore structure. Chem. Eng. J. 250: 240–247.
Zhao, L., Cao, X.D.*, Masek, O., Zimmerman, A., 2013. Heterogeneity of biochar properties as a function of feedstock sourcesand production temperatures. J. Hazar. Mater. 256–257 (15): 1–9.
Zhao, L., Cao, X.D.*, Wang, Q., Yang, F., Xu, S., 2013. Mineral constituents profile of biochar derived from diversified waste biomasses: implication on agricultural application. J. Environ. Qual. 42: 545–552.
Zhao, L., Gu, W.M., He, P.J.*, Shao, L.M., 2010. Effect of air-flow rate and turning frequency on bio-drying of dewatered sludge. Water Res. 44 (20): 6144−6152.
Zhao, L., Gu, W.M., He, P.J.*, Shao, L.M., 2011. Biodegradation potential of bulking agents in sludge bio-drying and their contribution to bio-generated heat. Water Res. 45 (6): 2322−2330.
Zhao, L., Wang, X.Y., Gu, W.M., Shao, L.M., He, P.J.*, 2011. Distribution of C and N in soluble fractionations for characterizing the respective biodegradation of sludge and bulking agents. Bioresour. Technol. 102, 10745−10749.
Zhao, L., Yang, D., Zhu, N.W.*, 2008. Bioleaching of spent Ni-Cd batteries by continuous flow system: Effect of hydraulic retention time and process load. J. Hazar. Mater. 160 (2-3), 648–654.