Remediation of weathered diesel-oil contaminated soils using biopile systems: An amendment selection and pilot-scale study
暂无分享,去创建一个
C. Kao | Yalan Chen | Zong-Han Yang | Pu Liu | K. Lo
[1] M. Urynowicz,et al. Enhanced bioremediation of diesel range hydrocarbons in soil using biochar made from organic wastes , 2020, Environmental Monitoring and Assessment.
[2] S. Puri,et al. Enhanced pyrene degradation by a biosurfactant producing Acinetobacter baumannii BJ5: Growth kinetics, toxicity and substrate inhibition studies , 2020 .
[3] C. Yaman. Performance and Kinetics of Bioaugmentation, Biostimulation, and Natural Attenuation Processes for Bioremediation of Crude Oil-Contaminated Soils , 2020, Processes.
[4] A. Jafari,et al. Bioremediation of diesel and gasoline-contaminated soil by co-vermicomposting amended with activated sludge: Diesel and gasoline degradation and kinetics. , 2020, Environmental pollution.
[5] Y. Duan,et al. Exploratory study on classification of lung cancer subtypes through a combined K-nearest neighbor classifier in breathomics , 2020, Scientific Reports.
[6] Marcos Souza de Almeida,et al. Evaluation of accelerated biodegradation of oil-SPM aggregates (OSAs). , 2020, Marine pollution bulletin.
[7] O. Pinyakong,et al. The effect of bioaugmentation with Exiguobacterium sp. AO-11 on crude oil removal and the bacterial community in sediment microcosms, and the development of a liquid ready-to-use inoculum. , 2020, Chemosphere.
[8] Leiyu Feng,et al. Application of alkyl polyglycosides for enhanced bioremediation of petroleum hydrocarbon-contaminated soil using Sphingomonas changbaiensis and Pseudomonas stutzeri. , 2020, The Science of the total environment.
[9] Sheng-Shung Cheng,et al. Effect of soil organic matter on petroleum hydrocarbon degradation in diesel/fuel oil-contaminated soil. , 2020, Journal of bioscience and bioengineering.
[10] C. Hoyos,et al. Effects of fireworks on particulate matter concentration in a narrow valley: the case of the Medellín metropolitan area , 2019, Environmental Monitoring and Assessment.
[11] N. Zouari,et al. Identification and overcome of limitations of weathered oil hydrocarbons bioremediation by an adapted Bacillus sorensis strain. , 2019, Journal of environmental management.
[12] S. Mukherji,et al. Impact of bioremediation strategies on slurry phase treatment of aged oily sludge from a refinery. , 2019, Journal of environmental management.
[13] A. Osborn,et al. Influence of bioaugmentation and biostimulation on PAH degradation in aged contaminated soils: Response and dynamics of the bacterial community. , 2019, Journal of environmental management.
[14] G. Delgado,et al. Bacterial community structure of two Mediterranean agricultural soils amended with spent coffee grounds , 2019, Applied Soil Ecology.
[15] J. H. Christensen,et al. Investigating weathering in light diesel oils using comprehensive two-dimensional gas chromatography-High resolution mass spectrometry and pixel-based analysis: Possibilities and limitations. , 2019, Journal of chromatography. A.
[16] E. M. Rodrigues,et al. Microbial diversity and bioremediation of rhizospheric soils from Trindade Island - Brazil. , 2019, Journal of environmental management.
[17] P. Campo,et al. Assessment of crude oil bioremediation potential of seawater and sediments from the shore of Lebanon in laboratory microcosms. , 2019, The Science of the total environment.
[18] M. Romantschuk,et al. Meat and bone meal as a novel biostimulation agent in hydrocarbon contaminated soils. , 2019, Chemosphere.
[19] Shijie Wang,et al. Long-term biodegradation of aged saline-alkali oily sludge with the addition of bulking agents and microbial agents , 2018, Royal Society Open Science.
[20] Ravi Naidu,et al. Bioavailability of weathered hydrocarbons in engine oil-contaminated soil: Impact of bioaugmentation mediated by Pseudomonas spp. on bioremediation. , 2018, The Science of the total environment.
[21] K. Peru,et al. Fate and behavior of oil sands naphthenic acids in a pilot-scale treatment wetland as characterized by negative-ion electrospray ionization Orbitrap mass spectrometry. , 2018, The Science of the total environment.
[22] Dan Liu,et al. Bioremediation of petroleum-contaminated soil using aged refuse from landfills. , 2018, Waste management.
[23] N. Zouari,et al. A MALDI-TOF study of bio-remediation in highly weathered oil contaminated soils , 2018, Journal of Petroleum Science and Engineering.
[24] G. Zeng,et al. Mechanisms for rhamnolipids-mediated biodegradation of hydrophobic organic compounds. , 2018, The Science of the total environment.
[25] Abhishek Gupta,et al. Biostimulation and bioaugmentation of native microbial community accelerated bioremediation of oil refinery sludge. , 2018, Bioresource technology.
[26] S. E. O'reilly,et al. Study of residual oil in Bay Jimmy sediment 5 years after the Deepwater Horizon oil spill: Persistence of sediment retained oil hydrocarbons and effect of dispersants on desorption. , 2018, The Science of the total environment.
[27] T. Fletcher,et al. Development of bioreactors for comparative study of natural attenuation, biostimulation, and bioaugmentation of petroleum-hydrocarbon contaminated soil. , 2018, Journal of hazardous materials.
[28] Wonjae Chang,et al. Enhanced bioremediation of nutrient-amended, petroleum hydrocarbon-contaminated soils over a cold-climate winter: The rate and extent of hydrocarbon biodegradation and microbial response in a pilot-scale biopile subjected to natural seasonal freeze-thaw temperatures. , 2018, The Science of the total environment.
[29] M. Schloter,et al. Organic Amendments in a Long-term Field Trial—Consequences for the Bulk Soil Bacterial Community as Revealed by Network Analysis , 2018, Microbial Ecology.
[30] C. O. Onwosi,et al. Bioremediation of gasoline contaminated agricultural soil by bioaugmentation , 2017 .
[31] Ke‐Xue Zhu,et al. Impact of solid state fermentation on nutritional, physical and flavor properties of wheat bran. , 2017, Food chemistry.
[32] A. Hidayat,et al. Periodical biostimulation with nutrient addition and bioaugmentation using mixed fungal cultures to maintain enzymatic oxidation during extended bioremediation of oily soil microcosms , 2017 .
[33] C. Kao,et al. Bioremediation of diesel and lubricant oil-contaminated soils using enhanced landfarming system. , 2016, Chemosphere.
[34] Daryi Wang,et al. MetaMIS: a metagenomic microbial interaction simulator based on microbial community profiles , 2016, BMC Bioinformatics.
[35] S. Pollard,et al. Insights into the biodegradation of weathered hydrocarbons in contaminated soils by bioaugmentation and nutrient stimulation , 2016, Chemosphere.
[36] P. E. Poh,et al. A comprehensive guide of remediation technologies for oil contaminated soil - Present works and future directions. , 2016, Marine pollution bulletin.
[37] I. Morelli,et al. Monitoring the impact of bioaugmentation with a PAH-degrading strain on different soil microbiomes using pyrosequencing. , 2016, FEMS microbiology ecology.
[38] Carla M. Zammit,et al. Bacterial biofilms on gold grains-implications for geomicrobial transformations of gold. , 2016, FEMS microbiology ecology.
[39] Jie Ma,et al. Effects of adding bulking agent, inorganic nutrient and microbial inocula on biopile treatment for oil-field drilling waste. , 2016, Chemosphere.
[40] Hui Xu,et al. Sphingomonas from petroleum-contaminated soils in Shenfu, China and their PAHs degradation abilities , 2016, Brazilian journal of microbiology : [publication of the Brazilian Society for Microbiology].
[41] F. Coulon,et al. Fate and transport of petroleum hydrocarbons in engineered biopiles in polar regions. , 2015, Chemosphere.
[42] J. González-López,et al. Response of autochthonous microbiota of diesel polluted soils to land-farming treatments. , 2015, Environmental research.
[43] A. Ortmann,et al. Initial community and environment determine the response of bacterial communities to dispersant and oil contamination. , 2015, Marine pollution bulletin.