microwave pretreatment of polyacrylamide flocculated waste
microwave pretreatment of polyacrylamide flocculated waste
microwave pretreatment of polyacrylamide flocculated waste
microwave pretreatment of polyacrylamide flocculated waste
microwave pretreatment of polyacrylamide flocculated waste
microwave pretreatment of polyacrylamide flocculated waste

Microwave pretreatment of polyacrylamide flocculated waste

Experimental results showed that with the microwave pretreatment times increased from 0 to 12 min, the biochemical methane potential of PAM-flocculated sludge (12 g PAM/kg total solids) asymptotically increased from 123.1 to 242.5 mL/g volatile solids, hydrolysis rate increased from 0.06 to 0.13 d.

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microwave pretreatment of polyacrylamide flocculated waste

Microwave pretreatment of polyacrylamide flocculated waste

Experimental results showed that with the microwave pretreatment times increased from 0 to 12 min, the biochemical methane potential of PAM-flocculated sludge (12 g PAM/kg total solids) asymptotically increased from 123.1 to 242.5 mL/g volatile solids, hydrolysis rate increased from 0.06 to 0.13 d?1.

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microwave pretreatment of polyacrylamide flocculated waste

Microwave pretreatment of polyacrylamide flocculated waste

PMID: 31302462 DOI: 10.1016/j.biortech.2019.121776 Acrylic Resins Anaerobiosis Methane Microwaves* Sewage* Waste Disposal, Fluid Acrylic Resins Sewage polyacrylamide Methane

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microwave pretreatment of polyacrylamide flocculated waste

Microwave pretreatment of polyacrylamide flocculated waste

Microwave pretreatment of polyacrylamide flocculated waste activated sludge: Effect on anaerobic digestion and polyacrylamide degradation.

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microwave pretreatment of polyacrylamide flocculated waste

Microwave pretreatment of polyacrylamide flocculated waste

Experimental results showed that with the microwave pretreatment times increased from 0 to 12 min, the biochemical methane potential of PAM-flocculated sludge (12 g PAM/kg total solids)...

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microwave pretreatment of polyacrylamide flocculated waste

Microwave pretreatment of polyacrylamide flocculated waste

@article{Liu2019MicrowavePO, title={Microwave pretreatment of polyacrylamide flocculated waste activated sludge: Effect on anaerobic digestion and polyacrylamide degradation.}, author={Xuran Liu and Qiu-xiang Xu and Dong-bo Wang and Yanxin Wu and Qizi Fu and Yifu Li and Qi Yang and Yiwen Liu and Bing©Jie Ni and Qilin Wang and Guo-jing Yang ...

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microwave pretreatment of polyacrylamide flocculated waste

Microwave pretreatment of polyacrylamide flocculated waste

Mechanism analysis indicated that the microwave pretreatment accelerated the release and hydrolysis of organic substrates from PAM-flocculated sludge, facilitated the breaking of large firm "PAM-sludge" floccules, and benefited the degradation of PAM, which alleviated the PAM inhibitory impacts on digestion and meanwhile provided better contact ...

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thermal-alkaline pretreatment of polyacrylamide flocculated

Thermal-alkaline pretreatment of polyacrylamide flocculated

Thermal-alkaline pretreatment of polyacrylamide flocculated waste activated sludge: Process optimization and effects on anaerobic digestion and polyacrylamide degradation - ScienceDirect Volume 281, June 2019, Pages 158-167

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molecular weight distribution of pretreated thickened waste

Molecular weight distribution of pretreated thickened waste

Co-digestion samples containing thickened waste activated sludge and fat, oil and grease were subjected to three different pretreatment methods, i.e., microwave at 175 ¡ãC, hyper-thermophilic stage at 70 ¡ãC, and conventional heat at 70 ¡ãC. The soluble matter extracted from the un-pretreated and pretreated samples were subjected to an ultrafiltration (UF) process using four different membrane ...

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thermal-alkaline pretreatment of polyacrylamide flocculated

Thermal-alkaline pretreatment of polyacrylamide flocculated

Microwave pretreatment of polyacrylamide flocculated waste activated sludge: Effect on anaerobic digestion and polyacrylamide degradation. Liu X, Xu Q, Wang D, Wu Y, Fu Q, Li Y, Yang Q, Liu Y, Ni BJ, Wang Q, Yang G, Li H, Li X. Bioresour Technol, 290:121776, 08 Jul 2019

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