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Featured researches published by Guifa Chen.


Bioresource Technology | 2016

Straw biochar hastens organic matter degradation and produces nutrient-rich compost

Jining Zhang; Guifa Chen; Huifeng Sun; Sheng Zhou; Guoyan Zou

Biochar derived from wheat straw was added to pig manure in amounts equivalent to 5%, 10%, or 15% (w/w, wet weight). The ratios of NH4(+)/NO3(-) and of UV light absorption at a wavelength of 254nm (SUV254) and dissolved organic carbon (DOC) indicated that compost with 10-15% biochar became more mature and more humified within 42days of composting, and the content of DOC and the concentration of NH4(+) in such compost decreased by 37.5-62.0% and 4.0-20.9%, respectively, compared to the corresponding levels in the control. Addition of biochar lowered the pH and increased electrical conductivity by 7.0-37.5% compared to the control and also increased the concentrations of water-soluble nutrients including PO4(3-) (5.6-7.4%), K(+) (14.2-58.6%), and Ca(2+) (0-12.5%). It is therefore recommended that straw biochar be added to pig manure at 10-15% by weight.


Scientific Reports | 2016

A two-year field measurement of methane and nitrous oxide fluxes from rice paddies under contrasting climate conditions

Huifeng Sun; Sheng Zhou; Zishi Fu; Guifa Chen; Guoyan Zou; Xiangfu Song

The effects of three irrigation levels (traditional normal amount of irrigation [NA100%], 70%, and 30% of the normal amount [NA70% and NA30%]) and two rice varieties (Oryza sativa L. Huayou14 and Hanyou8) on CH4 and N2O emissions were investigated over two years under contrasting climate conditions (a ‘warm and dry’ season in 2013 and a normal season in 2014). Hanyou8 was developed as a drought-resistant variety. The mean seasonal air temperature in 2013 was 2.3 °C higher than in 2014, while the amount of precipitation from transplanting to the grain-filling stage in 2013 was only 36% of that in 2014. CH4 emission rose by 93–161%, but rice grain yield fell by 7–13% in 2013, compared to 2014 under the NA100% conditions. Surface standing water depths (SSWD) were higher in Hanyou8 than in Huayou14 due to the lower water demand by Hanyou8. A reduction in the amount of irrigation water applied can effectively reduce the CH4 emissions regardless of the rice variety and climate condition. However, less irrigation during the ‘warm and dry’ season greatly decreased Huayou14 grain yield, but had little impact on Hanyou8. In contrast, N2O emission depended more on fertilization and SSWD than on rice variety.


Scientific Reports | 2018

Comparison of two different ecological floating bio-reactors for pollution control in hyper-eutrophic freshwater

Naxin Cui; Guifa Chen; Yaqin Liu; Li Zhou; Min Cai; Xiangfu Song; Guoyan Zou

The use of ecological floating beds (EFBs) to control water pollution has been increasingly reported worldwide due to the severe situation of eutrophication in water bodies. In this study, two kinds of EFBs were set up under similar condition to compare their purification efficiency in hyper-eutrophic water. The conventional ecological floating bed (CEFB) was made of polystyrene foam board, and the enhanced ecological floating bio-reactor (EEFB) was designed as an innovative hollow, thin floating bed integrated with substrates of zeolite and limestone. The results showed that the EEFB increased treatment efficiency of total nitrogen (TN), total phosphate (TP), and ammonia nitrogen (NH4+-N) to 63.5%, 59.3%, and 68.0%, respectively. Plant accumulation was the main pathway for TN and TP removal in the CEFB. Microbial degradation played an increasingly important role in TN and TP removal in the EEFB. A higher concentration of nitrogen cycling bacteria was recorded in the EEFB than the CEFB (P < 0.05), suggesting that the substrates might enhanced the removal efficiency of the EEFB by promoting the growth of microorganisms rather than their absorption effect.


Water Air and Soil Pollution | 2016

CH4 Emission in Response to Water-Saving and Drought-Resistance Rice (WDR) and Common Rice Varieties under Different Irrigation Managements

Huifeng Sun; Sheng Zhou; Xiangfu Song; Zishi Fu; Guifa Chen; Jining Zhang


Environmental Science and Pollution Research | 2017

Reducing N losses through surface runoff from rice-wheat rotation by improving fertilizer management

Yansheng Cao; Huifeng Sun; Yaqin Liu; Zishi Fu; Guifa Chen; Guoyan Zou; Sheng Zhou


Soil & Tillage Research | 2018

Effects of wheat straw addition on dynamics and fate of nitrogen applied to paddy soils

Yansheng Cao; Huifeng Sun; Jining Zhang; Guifa Chen; Haitao Zhu; Sheng Zhou; Huayun Xiao


Environmental Science and Pollution Research | 2018

Runoff nitrogen (N) losses and related metabolism enzyme activities in paddy field under different nitrogen fertilizer levels

Junli Wang; Zishi Fu; Guifa Chen; Guoyan Zou; Xiangfu Song; Fuxing Liu


Ecological Engineering | 2017

Combined ozonation and aquatic macrophyte (Vallisneria natans) treatment of piggery effluent: Water matrix and antioxidant responses

Junli Wang; Guifa Chen; Fuxing Liu; Xiangfu Song; Guoyan Zou


한국토양비료학회 학술발표회 초록집 | 2014

Effect of Different Fertilizer Types on Grain Yield and Greenhouse Gas Emissions from Paddy Field

Sheng Zhou; Xiangfu Song; Huifeng Sun; Zishi Fu; Guifa Chen; Qi Pan


한국토양비료학회 학술발표회 초록집 | 2014

Responses of Grain Yield and Greenhouse Gases Emission to Different Rice Varieties and Irrigation Managements in a Rice Paddy Field

Huifeng Sun; Sheng Zhou; Xiangfu Song; Guifa Chen; Zishi Fu

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Yansheng Cao

China University of Technology

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Huayun Xiao

China University of Technology

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