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Yuquan Wei

Researcher at China Agricultural University

Publications -  59
Citations -  2378

Yuquan Wei is an academic researcher from China Agricultural University. The author has contributed to research in topics: Compost & Manure. The author has an hindex of 20, co-authored 59 publications receiving 1367 citations. Previous affiliations of Yuquan Wei include Northeast Agricultural University & Tsinghua University.

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Effect of organic acids production and bacterial community on the possible mechanism of phosphorus solubilization during composting with enriched phosphate-solubilizing bacteria inoculation.

TL;DR: It is pointed out that inoculation affected pH, total acidity and the production of oxalic, lactic, citric, succinic, acetic and formic acids and a possible mechanism of P solubilization with enriched PSB inoculation, which was induced by bacterial community and organic acids production.
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Improved lignocellulose-degrading performance during straw composting from diverse sources with actinomycetes inoculation by regulating the key enzyme activities.

TL;DR: The combined application of actinomycetes inoculation and urea addition as a source of nitrogen was suggested to regulate the key enzyme activities and lignocellulose degradation, which lays a foundation for effectively managing organic wastes from different types of crop straws by composting.
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Effect of actinobacteria agent inoculation methods on cellulose degradation during composting based on redundancy analysis.

TL;DR: Redundancy analysis indicated that the correlation between indigenous actinobacteria and degradation of OM and cellulose were regulated by inoculants and there were significant differences between different inoculation methods.
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Effect of thermo-tolerant actinomycetes inoculation on cellulose degradation and the formation of humic substances during composting

TL;DR: Redundancy analysis showed that the different inoculation phases had different impacts on the relationship between exogenous actinobacteria and physical-chemical parameters, so an optimized inoculation strategy to increase the content of humic substances, alleviate CO2 emission during composting is suggested.
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Effects of exogenous protein-like precursors on humification process during lignocellulose-like biomass composting: Amino acids as the key linker to promote humification process

TL;DR: Structural equation model (SEM) analysis showed that amino acids had substantial impact on promoting humic acid (HA) formation and the combined application of protein- like wastes and lignocellulose-like wastes was suggested to improve carbon sequestration.