Insight on how biopolymers recovered from aerobic granular wastewater sludge can reduce the flammability of synthetic polymers.
暂无分享,去创建一个
M. V. van Loosdrecht | D. Bhattacharyya | Nam Kyeun Kim | R. Lin | Yuemei Lin | N. K. Kim | Mark C.M. van Loosdrecht | M. C. Mark van Loosdrecht
[1] Shin Takahashi,et al. Inhalation bioaccessibility and health risk assessment of flame retardants in indoor dust from Vietnamese e-waste-dismantling workshops. , 2020, The Science of the total environment.
[2] Xiaoling Liu,et al. Ramie fabric Elium® composites with flame retardant coating: Flammability, smoke, viscoelastic and mechanical properties , 2020 .
[3] M. V. van Loosdrecht,et al. A critical review of resource recovery from municipal wastewater treatment plants – market supply potentials, technologies and bottlenecks , 2020, Environmental Science: Water Research & Technology.
[4] M. V. van Loosdrecht,et al. Flame retardant property of flax fabrics coated by extracellular polymeric substances recovered from both activated sludge and aerobic granular sludge. , 2019, Water research.
[5] M. V. van Loosdrecht,et al. Chemical characterization methods for the analysis of structural extracellular polymeric substances (EPS). , 2019, Water research.
[6] D. Bhattacharyya,et al. A review of flammability of natural fibre reinforced polymeric composites , 2018, Composites Science and Technology.
[7] M. V. van Loosdrecht,et al. Glycosylated amyloid‐like proteins in the structural extracellular polymers of aerobic granular sludge enriched with ammonium‐oxidizing bacteria , 2018, MicrobiologyOpen.
[8] P. Dubois,et al. Bio-based flame retardants: When nature meets fire protection , 2017 .
[9] J. Krömer,et al. Resource Recovery from Wastewater by Biological Technologies: Opportunities, Challenges, and Prospects , 2017, Front. Microbiol..
[10] C. Ng,et al. Application of polyvinyl alcohol (PVA) in cement-based composite materials: A review of its engineering properties and microstructure behavior , 2016 .
[11] M C M van Loosdrecht,et al. Full scale performance of the aerobic granular sludge process for sewage treatment. , 2015, Water research.
[12] D. Bhattacharyya,et al. Effects of wool fibres, ammonium polyphosphate and polymer viscosity on the flammability and mechanical performance of PP/wool composites , 2015 .
[13] Hanqing Yu,et al. Species of phosphorus in the extracellular polymeric substances of EBPR sludge. , 2013, Bioresource technology.
[14] M. V. van Loosdrecht,et al. The chemical and mechanical differences between alginate-like exopolysaccharides isolated from aerobic flocculent sludge and aerobic granular sludge. , 2013, Water research.
[15] R. Chi,et al. Pressure effecting on morphology of hydroxyapatite crystals in homogeneous system , 2011 .
[16] A. Stec,et al. Carbon Monoxide Generation in Fires: Effect of Temperature on Halogenated and Aromatic Fuels , 2011 .
[17] M. Thévenon,et al. Effects of polyvinyl alcohol on leachability and efficacy of boron wood preservatives against fungal decay and termite attack , 2011, Wood Science and Technology.
[18] Bernhard Schartel,et al. Phosphorus-based Flame Retardancy Mechanisms—Old Hat or a Starting Point for Future Development? , 2010, Materials.
[19] N. Ren,et al. Effect of temperature on intracellular phosphorus absorption and extra-cellular phosphorus removal in EBPR process. , 2010, Bioresource technology.
[20] Yu-Zhong Wang,et al. A novel intumescent flame-retardant system containing metal chelates for polyvinyl alcohol , 2007 .
[21] Bernhard Schartel,et al. Development of fire‐retarded materials—Interpretation of cone calorimeter data , 2007 .
[22] Motoharu Onuki,et al. The microbiology of biological phosphorus removal in activated sludge systems. , 2003, FEMS microbiology reviews.
[23] I. Hamerton,et al. RECENT DEVELOPMENTS IN THE CHEMISTRY OF HALOGEN-FREE FLAME RETARDANT POLYMERS , 2002 .
[24] F. L. Marten,et al. Vinyl Alcohol Polymers , 2002 .
[25] D. Purser. 3 – Toxicity of fire retardants in relation to life safety and environmental hazards , 2001 .