Impact of biochar amendment on antibiotic removal and resistant genes accumulation in microscale constructed wetlands for low C/N artificial wastewater treatment: Performance and mechanism
暂无分享,去创建一个
Y. Liu | Jing-long Han | Awoke Guadie | Wanxin Yin | Hong-cheng Wang | Aijie Wang | Mathieu Nsenga Kumwimba | Fidelis Odedishemi Ajibade | Temitope Fausat Ajibade | Wen-Zong Liu
[1] Hong-cheng Wang,et al. Life cycle assessment of integrated bioelectrochemical-constructed wetland system: environmental sustainability and economic feasibility evaluation , 2023, Resources, Conservation and Recycling.
[2] Shiquan Sun,et al. Insights into the enhanced effect of biochar on cadmium removal in vertical flow constructed wetlands. , 2022, Journal of hazardous materials.
[3] Hong-cheng Wang,et al. Element sulfur-based autotrophic denitrification constructed wetland as an efficient approach for nitrogen removal from low C/N wastewater. , 2022, Water research.
[4] Xiaoying Zhu,et al. Biochar Effectively Inhibits the Horizontal Transfer of Antibiotic Resistance Genes via Restraining the Energy Supply for Conjugative Plasmid Transfer. , 2022, Environmental science & technology.
[5] Sudheer Kumar Singh,et al. Ultra-fast and low-cost electroactive biochar from Canna indica for electroactive-constructed wetland applications: A circular concept for plant biomass utilization , 2022, Chemical Engineering Journal.
[6] X. Dai,et al. Differential variations of intracellular and extracellular antibiotic resistance genes between treatment units in centralized sewage sludge treatment plants. , 2022, Water research.
[7] Yuru Wang,et al. Enhanced phosphorus removal of constructed wetland modified with novel Lanthanum-ammonia-modified hydrothermal biochar: performance and mechanism , 2022, Chemical Engineering Journal.
[8] Hong-cheng Wang,et al. Integrated constructed wetland and bioelectrochemistry system approach for simultaneous enhancment of p-chloronitrobenzene and nitrogen transformations performance. , 2022, Water research.
[9] Chengyuan Su,et al. Sulfonamide and quinolone antibiotics contaminated wastewater treatment by constructed rapid infiltration: efficiency and microbial community structure , 2022, Process Safety and Environmental Protection.
[10] Yunping Han,et al. Characteristics of airborne bacterial communities and antibiotic resistance genes under different air quality levels. , 2022, Environment international.
[11] Y. Liu,et al. Performance and mechanism of SMX removal in an electrolysis-integrated tidal flow constructed wetland at low temperature , 2022, Chemical Engineering Journal.
[12] Qian Zhang,et al. Efficient removal mechanism and microbial characteristics of tidal flow constructed wetland based on in-situ biochar regeneration (BR-TFCW) for rural gray water , 2021, Chemical Engineering Journal.
[13] Zhirui Qin,et al. Ecological impact of antibiotics on bioremediation performance of constructed wetlands: Microbial and plant dynamics, and potential antibiotic resistance genes hotspots. , 2021, Journal of hazardous materials.
[14] Xiaoyun Xu,et al. Straw return promoted the simultaneous elimination of sulfamethoxazole and related antibiotic resistance genes in the paddy soil. , 2021, The Science of the total environment.
[15] Junjun Chang,et al. Application of biochar as an innovative substrate in constructed wetlands/biofilters for wastewater treatment: Performance and ecological benefits , 2021 .
[16] Xuan Li,et al. Removal of multiple heavy metals from mining-impacted water by biochar-filled constructed wetlands: Adsorption and biotic removal routes. , 2021, Bioresource technology.
[17] Quang Viet Ly,et al. Vertical flow constructed wetlands using expanded clay and biochar for wastewater remediation: A comparative study and prediction of effluents using machine learning. , 2021, Journal of hazardous materials.
[18] Mohamed Shuaib Mohamed Saheed,et al. Conventional and emerging technologies for removal of antibiotics from wastewater. , 2020, Journal of hazardous materials.
[19] Wenzong Liu,et al. Total nitrogen removal in biochar amended non-aerated vertical flow constructed wetlands for secondary wastewater effluent with low C/N ratio: Microbial community structure and dissolved organic carbon release conditions. , 2020, Bioresource technology.
[20] Haiming Wu,et al. Impacts of aeration and biochar addition on extracellular polymeric substances and microbial communities in constructed wetlands for low C/N wastewater treatment: Implications for clogging , 2020 .
[21] Hui Zhu,et al. Biochar reduces nitrous oxide but increases methane emissions in batch wetland mesocosms , 2020 .
[22] H. Ngo,et al. A comprehensive simulation approach for pollutant bio-transformation in the gravity sewer , 2019, Frontiers of Environmental Science & Engineering.
[23] R. Dong,et al. Role of Nutrient-Enriched Biochar as a Soil Amendment during Maize Growth: Exploring Practical Alternatives to Recycle Agricultural Residuals and to Reduce Chemical Fertilizer Demand , 2019, Sustainability.
[24] B. Gao,et al. Reclaiming phosphorus from secondary treated municipal wastewater with engineered biochar , 2019, Chemical Engineering Journal.
[25] V. Dutta,et al. Constructed wetland microcosms as sustainable technology for domestic wastewater treatment: an overview , 2019, Environmental Science and Pollution Research.
[26] L. Arvola,et al. High Nitrogen Removal in a Constructed Wetland Receiving Treated Wastewater in a Cold Climate. , 2018, Environmental science & technology.
[27] Wei Li,et al. Transcriptome and metabolite analysis identifies nitrogen utilization genes in tea plant (Camellia sinensis) , 2017, Scientific Reports.
[28] Shibao Lu,et al. Impacts of different media on constructed wetlands for rural household sewage treatment , 2016 .
[29] Xiang-dong Li,et al. The role of class I integrons in the dissemination of sulfonamide resistance genes in the Pearl River and Pearl River Estuary, South China. , 2015, Journal of hazardous materials.
[30] Soon Keat Tan,et al. A review on removing pharmaceutical contaminants from wastewater by constructed wetlands: design, performance and mechanism. , 2014, The Science of the total environment.
[31] Davey L. Jones,et al. Life in the 'charosphere' - Does biochar in agricultural soil provide a significant habitat for microorganisms? , 2013 .
[32] Zhen Wang,et al. Elimination of veterinary antibiotics and antibiotic resistance genes from swine wastewater in the vertical flow constructed wetlands. , 2013, Chemosphere.
[33] G. Ying,et al. Occurrence and fate of eleven classes of antibiotics in two typical wastewater treatment plants in South China. , 2013, The Science of the total environment.
[34] Guanghui Yu,et al. Insights into extracellular polymeric substances of cyanobacterium Microcystis aeruginosa using fractionation procedure and parallel factor analysis. , 2013, Water research.
[35] B. Gao,et al. Preparation of high surface area-activated carbon from lignin of papermaking black liquor by KOH activation for Ni(II) adsorption , 2013 .
[36] Olasumbo Ndi,et al. Incidence of class 1 integron and other antibiotic resistance determinants in Aeromonas spp. from rainbow trout farms in Australia. , 2011, Journal of fish diseases.
[37] A. Boxall,et al. Impacts of anthropogenic activity on the ecology of class 1 integrons and integron-associated genes in the environment , 2011, The ISME Journal.
[38] B. Wehrli,et al. Nitrogen removal in a small constructed wetland: an isotope mass balance approach. , 2006, Environmental science & technology.
[39] K. Booksh,et al. Fluorescence excitation-emission matrix regional integration to quantify spectra for dissolved organic matter. , 2003, Environmental science & technology.
[40] Aijie Wang,et al. Environmental pollution and their socioeconomic impacts , 2021 .
[41] Haiming Wu,et al. Can biochar application improve nitrogen removal in constructed wetlands for treating anaerobically-digested swine wastewater? , 2020 .
[42] Yong-guan Zhu,et al. Review of antibiotic resistance in China and its environment. , 2018, Environment international.
[43] J. van Rijn,et al. Accumulation of humic-like and proteinaceous dissolved organic matter in zero-discharge aquaculture systems as revealed by fluorescence EEM spectroscopy. , 2017, Water research.
[44] A. Fernández-Alba,et al. Occurrence of emerging pollutants in urban wastewater and their removal through biological treatment followed by ozonation. , 2010, Water research.
[45] Rebecca J. Case,et al. The integron/gene cassette system: an active player in bacterial adaptation. , 2009, Methods in molecular biology.
[46] Aijie Wang,et al. Intermittent electric field stimulated reduction-oxidation coupled process for enhanced azo dye biodegradation , 2022, Chemical Engineering Journal.