◆发表论文
[1]Luo L., Wang G.L., Wang Z.M., Ma J.H., He Y., He J.S., Wang L.L., Liu Y., Xiao H., Xiao Y.L., Lan T., Yang H., Deng O.P.*, 2021. Optimization of Fenton process on removing antibiotic resistance genes from excess sludge by single-factor experiment and response surface methodology. Science of the Total Environment, 788: 147889. (JCR,1区)
[2]Luo L., Zhu L.Y., Hong W., Gu, J.-D., Shi D.Z., He Y., Xiao Y.L., Tian D., Zhang S.R., Deng S.H., Lan T., Deng O.P.*, 2021. Microbial resource limitation and regulation of soil carbon cycle in Zoige Plateau peatland soils. CATENA, 205:105478. (JCR, 1区)
[3]Luo L., Ye H.Y., Zhang D.H., Gu J.-D., Deng O.P.*, 2021. The dynamics of phosphorus fractions and the factors driving phosphorus cycle in Zoige Plateau peatland soil. Chemosphere, 278: 130501. (JCR, 1区)
[4]He Y., Zhou X.Q., Zhang Q.Y., Gu J.-D., Zhang Y.Z., Liu Y., Wang L.L., Xiao Y.L., Shen F., Deng S.H., Zhang S.R., Luo L.*, 2021. Highly efficient removal of phosphorus from agricultural runoff by a new akadama clay barrier-vegetated drainage ditch system (VDD) and its mechanism. Journal of Environmental Management, 290: 112575. (JCR,1区)
[5]Xiao Y.L., Du Y., Xiao Y., Zhang X.H., Wu J., Yang G., He Y., Zhou Y.Y., Peijnenburg W.J.G.M., Luo L.*, 2021. Elucidating the effects of TiO2 nanoparticles on the toxicity and accumulation of Cu in soybean plants (Glycine max L.). Ecotoxicology and Environmental Safety, 219: 112312. (JCR,1区)
[6]Deng O.P., Chen Y.Y., Lan T., Zhang S.R., Gao X.S., Zhou W., Ou D.H., Hu Y.F., Luo L.*, 2021. Contribution of atmospheric N deposition to riverine N load in a forest-dominated watershed through field monitoring for three years. Chemosphere, 266: 128951. (JCR,1区)
[7]Luo L., Feng J.L., Xue R., Ma J.H., Lou L.P., He J.S., Liu Y., Xiao H., Deng O.P.*, Xie L.Y., 2021. The insufficient extraction of DNA from swine manures may underestimate the abundance of antibiotic resistance genes as well as ignore their potential hosts. Journal of Environmental Management, 278: 111587. (JCR,1区)
[8]Deng O.P., Li X., Deng L.J., Zhang S.R., Gao X.S., Lan T., Zhou W., Tian D., Xiao Y.L., Yang J., Ou D.H., Luo L.*, 2020. Emission of CO2 and CH4 from a multi-ditches system in rice cultivation region: Flux, temporal-spatial variation and effect factors. Journal of Environmental Management, 270: 110918. (JCR, 1区)
[9]Chen Y.X., Hu C.Y., Deng D.H., Li Y.G., Luo L.*, 2020. Factors affecting sorption behaviors of tetracycline to soils: Importance of soil organic carbon, pH and Cd contamination. Ecotoxicology and Environmental Safety, 197: 110572. (JCR, 1区)
[10]Wang G.L., Deng D.H., Hu C.Y., Lou L.P., Luo L.*, et al., 2020. More effective removal of antibiotic resistance genes from excess sludge by microwave integrated fenton treatment. International Biodeterioration& Biodegradation, 149: 104920. (JCR, 1区)
[11]Luo L.*, Wang G.L., Shi G.Z., et al., 2019. The characterization of biochars derived from rice straw and swine manure, and their potential and risk in N and P removal from water. Journal of Environmental Management, 245, 1-7. (JCR, 1区)
[12]王国兰, 冯金露, 楼莉萍, 罗玲*, 2019. 污水处理厂中四环素和磺胺类抗生素 抗性基因的分布、传播及去除. 应用生态学报, 8(30): 1-8. (CSCD)
[13]Chen T.W., Luo L.*, Deng S.H., et al., 2018. Sorption of tetracycline on H3PO4 modified biochar derived from rice straw and swine manure. Bioresource Technology, 267, 431-437. (JCR, 1区)
[14]Luo L.*, Meng H., Wu R.N., et al., 2018. Influence of macrofaunal burrows on extracellular enzyme activity and microbial abundance in subtropical mangrove sediment. Microbial Ecology, 76(1), 92-101. (JCR, 1区)
[15]Luo L., Wu R.N., Gu J.-D.*, et al., 2018. Influence of mangrove roots on microbial abundance and ecoenzyme activity in sediments of a subtropical coastal mangrove ecosystem. International Biodeterioration& Biodegradation, 132: 10-17. (JCR, 1区)
[16]Luo L., Gu J.-D.*, 2018. Nutrient limitation status in a subtropical mangrove ecosystem revealed by analysis of enzymatic stoichiometry and microbial abundance for sediment carbon cycling. International Biodeterioration& Biodegradation, 128: 3-10. (JCR, 1区)
[17]Luo L.*, Meng H., Wu R.N., et al., 2017. Impact of nitrogen pollution/deposition on extracellular enzyme activity, microbial abundance and carbon storage in coastal mangrove sediment. Chemosphere, 177: 275-283. (JCR, 1区)
[18]Luo L., Meng H., Gu J.-D.*, 2017. Microbial extracellular enzymes in biogeochemical cycling of ecosystems. Journal of Environmental Management, 197:539-549. (JCR, 1区)
[19]Luo L., Gu J.-D.*, 2016. Alteration of extracellular enzyme activity and microbial abundance by biochar addition: Implication for carbon sequestration in subtropical mangrove sediment. Journal of Environmental Management, 182: 29-36. (JCR, 1区)
[20]Luo L., Wu R.N., Meng H., et al., 2016. Seasonal and spatial variations in diversity and abundance of bacterial laccase-like genes in sediments of a subtropical mangrove ecosystem. International Biodeterioration & Biodegradation, 114: 260-267. (JCR, 1区)
[21]Luo L., Zhou Z-C., Gu J.-D.*, 2015. Distribution, diversity and abundance of bacterial laccase-like genes in different particle size fractions of sediments in a subtropical mangrove ecosystem. Ecotoxicology, 24(7): 1508-1516. (JCR, 2区)
[22]Luo L., Lou L.P., Cui X.Y., et al., 2011. Sorption and desorption of pentachlorophenol to black carbon of three different origins. Journal of Hazardous Materials, 185(2-3): 639-46. (JCR, 1区)
[23]Luo L., Gu J.-D.*, 2015. Seasonal variability of extracellular enzymes involved in carbon mineralization in sediment of a subtropical mangrove wetland. Geomicrobiology Journal, 32(1): 68-76. (JCR, 2区)
[24]Meng H.#,Luo L.#, Chan H.W., et al., 2016. Higher diversity and abundance of ammonia-oxidizing archaea than bacteria detected at the Bayon Temple of Angkor Thom in Cambodia. International Biodeterioration& Biodegradation,115:234-243.(#共同一作) (JCR, 1区)
[25]Lou L.P., Luo L., Yang Q., et al., 2012. Release of pentachlorophenol from black carbon-inclusive sediments under different environmental conditions. Chemosphere, 88(5): 598-604. (JCR, 1区)
[26]Lou L.P., Luo L., Cheng G.H., et al., 2012. The sorption of pentachlorophenol by aged sediment supplemented with black carbon produced from rice straw and fly ash. Bioresource Technology, 112: 61-66. (JCR, 1区)
[27]Lou L.P., Luo L., Wang W., et al., 2011. Impact of black carbon originated from fly ash and soot on the toxicity of pentachlorophenol in sediment. Journal of Hazardous Materials, 190(1-3):474-479. (JCR, 1区)
[28]Lou L.P., Luo L., Wang L.N., et al., 2011. The influence of acid demineralization on surface characteristics of black carbon and its sorption for pentachlorophenol. Journal of Colloid and Interface Science, 361(1):226-31. (JCR, 1区)