24 Papers
11 Citations
Ning Hou is an academic researcher from Northeast Agricultural University. The author has contributed to research in topics: Chemistry & Medicine. The author has an hindex of 8, co-authored 12 publications.
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Papers
Role of psychrotrophic bacteria in organic domestic waste composting in cold regions of China.
Ning Hou,Luming Wen,Huiming Cao,Keran Liu,Xuejiao An,Dapeng Li,Hailan Wang,Xiaopeng Du,Chunyan Li +8 more
TL;DR: High-throughput sequencing indicated that the inoculative strains became the dominant community during the mesophilic phase and that they enhanced the stability of the microbial community structure, suggesting that psychrotrophic bacteria played a key role in low-temperature composting.
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Immobilization of iron- and manganese-oxidizing bacteria with a biofilm-forming bacterium for the effective removal of iron and manganese from groundwater.
TL;DR: The results indicated that the Fe/Mn removal ratios of biofilter R4, which was inoculated with iron- and manganese-oxidizing bacteria and a biofilm-forming bacterium, were approximately 95% for each metal during continuous operation and were better than the other biofilters.
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Insight into the soil aggregate-mediated restoration mechanism of degraded black soil via biochar addition: Emphasizing the driving role of core microbial communities and nutrient cycling.
Chi Zhang,Xin Zhao,Aijie Liang,Qiuying Song,Xianyue Li,Dapeng Li,Ning Hou +6 more
TL;DR: Wang et al. as mentioned in this paper explored the potential microbial driving mechanism of biochar (derived from soybean straw) addition in black soil restoration in Northeast China, and showed that biochar significantly improved the soil organic carbon, cation exchange capacity and water content, which play crucial roles in aggregate stability.
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Toxicity of TiO₂ nanoparticle to denitrifying strain CFY1 and the impact on microbial community structures in activated sludge.
TL;DR: It was shown that after 7 days of exposure to 50 mg/L TiO2 NPs, the microbial composition of the activated sludge was significantly different and had a lower diversity compared to the controls, and increased production of reactive oxygen species was responsible for TiO 2 NPs toxicity.
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