Congli Ma
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View article: Selenium–nitrogen-co-doped carbon dots increase rice seedling growth and salt resistance
Selenium–nitrogen-co-doped carbon dots increase rice seedling growth and salt resistance Open
Soil salinity seriously affects the utilization of farmland and threatens the crop production. Here, a selenium-nitrogen-co-doped carbon dots was developed, which increased rice seedling growth and alleviated its inhibition by salt stress …
View article: Transcriptional and Metabolic Mechanism of Carbon Dots Enhancing Rice Growth and Resistance by Promoting Root
Transcriptional and Metabolic Mechanism of Carbon Dots Enhancing Rice Growth and Resistance by Promoting Root Open
Increasing climate change and pollutant discharge induce constant challenges to crops, while crops are vulnerable to environmental and pollutant stresses. In this study, a carbon dots (CDs) was developed that significantly increased rice s…
View article: Sulfur-manganese carbonate composite autotrophic denitrification: nitrogen removal performance and biochemistry mechanism
Sulfur-manganese carbonate composite autotrophic denitrification: nitrogen removal performance and biochemistry mechanism Open
A novel composite sulfur-manganese carbonate autotrophic denitrification (SMAD) system was developed to reduce sulfate production and provide pH buffer function while improving denitrification efficiency without external organics. The aver…