Environmental Factors and Soil Amendment Affect the Decomposition Rate of Dazomet Fumigant
文献类型: 外文期刊
第一作者: Wang, Qiuxia
作者: Wang, Qiuxia;Yan, Dongdong;Huang, Bin;Ren, Zongjie;Wang, Qian;Song, Zhaoxin;Liu, Xiaoman;Li, Yuan;Ouyang, Canbin;Cao, Aocheng
作者机构:
期刊名称:JOURNAL OF ENVIRONMENTAL QUALITY ( 影响因子:2.751; 五年影响因子:3.309 )
ISSN: 0047-2425
年卷期: 2018 年 47 卷 5 期
页码:
收录情况: SCI
摘要: Dazomet (3,5-dimethyl-1,3,5-thiadiazinane-2-thione) is widely used as a soil fumigant for controlling soil-borne diseases and pests in China and other agricultural countries. The active ingredient of dazomet is its degradation product, methyl isothiocyanate. Little is known about the environmental conditions that affect the degradation of dazomet in soil. In this study, we conducted laboratory incubation experiments to test the effects of several environmental factors, including soil texture, water content, temperature, pH, and soil amendments, such as chicken manure or urea fertilizer, on the decomposition of dazomet. Results showed that dazomet degradation in soil is an abiotic process strongly dependent on soil texture, water content, temperature, and pH. Decomposition rates differed greatly in various soils, depending mainly on soil physicochemical properties such as pH and organic matter content. The degradation rate increased by 15 to 24 times and by 16 to 37 times when soil temperature increased from 5 to 45 degrees C, and water content increased from 10 to 30%, respectively. Dazomet degraded faster in alkaline versus acidic soil. Both chicken manure and urea fertilizer moderately slowed dazomet degradation. Dazomet was degraded in soil mainly by hydrolysis. The results of our study contribute to a better understanding of the environmental behavior of dazomet, potentially leading to its more efficient, safe, profitable, and effective use by farmers.
分类号:
- 相关文献
作者其他论文 更多>>
-
Sustainable closed-loop biorefinery of γ-valerolactone from lignocellulosic biomass: Pretreatments of multiple biomass and synthesis of γ-valerolactone from multiple biomass-derived feedstocks
作者:Li, Yuan;Sun, Hongnan;Mu, Taihua;Li, Yuan;Garcia-Vaquero, Marco
关键词:Lignocellulosic biomass; gamma-valerolactone; Biomass pretreatment; Reaction pathway; Closed-loop biorefinery
-
Flow Velocity Modulates Growth, Oxidative Stress, and Transcriptomic Responses in Spotted Sea Bass (Lateolabrax maculatus)
作者:Li, Shuo;Wang, Qian;Liu, Baoliang;Shao, Changwei;Li, Shuo;Liu, Yuyan;Wang, Qian;Zhu, Zhiwen;Li, Weijing;Li, Chen;Fei, Fan;Liu, Baoliang;Shao, Changwei;Liu, Yuyan;Wang, Qian;Shao, Changwei
关键词:Spotted sea bass; Flow velocity; Oxidative stress; Lipid metabolism; Transcriptomics
-
Resveratrol Alleviates NEFA-Induced Oxidative Damage in Bovine Mammary Epithelial Cells by Restoring Mitochondrial Function
作者:Sun, Longwei;Huang, Junpeng;Dou, Xiangyang;Dong, Zhenyu;Li, Yuan;Tan, Shujing;Yu, Ran;Li, Chengmin;Zhao, Weiguo;Sun, Longwei;Huang, Junpeng;Dou, Xiangyang;Dong, Zhenyu;Li, Yuan;Tan, Shujing;Yu, Ran;Li, Chengmin;Zhao, Weiguo
关键词:resveratrol; NEFA; oxidative damage; mitochondria; bovine mammary epithelial cells
-
Near complete genome assembly of Yadong trout (Salmo trutta)
作者:Li, Chen;Han, Shenglei;Li, Shuo;Liu, Kaiqiang;Liu, Yuyan;Wang, Hong-yan;Wang, Qian;Liu, Changlin;Shao, Changwei;Li, Chen;Li, Chen;Han, Shenglei;Li, Shuo;Liu, Kaiqiang;Liu, Yuyan;Wang, Hong-yan;Wang, Qian;Liu, Changlin;Shao, Changwei;Liu, Kaiqiang;Liu, Yuyan;Wang, Hong-yan;Wang, Qian;Shao, Changwei
关键词:
-
Pyraclostrobin repeated treatment altered the degradation behavior in soil and negatively affected soil bacterial communities and functions
作者:Han, Lingxi;Wang, Yiran;Wang, Yajie;Xu, Han;Liu, Mingyu;Nie, Jiyun;Wang, Qianwen;Huang, Bin
关键词:Pyraclostrobin; Apple orchard soils; Degradation characteristics; Soil bacterial communities; Soil nitrogen cycling
-
Lignocellulosic fibers in leaves and stems of Brassica juncea: Natural variation, functional differentiation and allocation mechanisms
作者:Wang, Qian;Zhang, Jinze;Yan, Zhongbin;Wang, Ziping;Peng, Wenyan;Ouyang, Qingjing;Jin, Hairui;Tian, Entang;Jiang, Yingfen
关键词:Brassica juncea; Lignocellulose; Cellulose; Hemicellulose; Lignin
-
Multiwalled Carbon Nanotubes Promoted Biofilm Formation and Rhizosphere Colonization of Bacillus subtilis Tpb55
作者:Lv, Xiaolin;Liu, Shanshan;Zhang, Chengsheng;Huang, Bin;Wang, Jie;Cao, Yi;Wu, Huagen
关键词:MWCNTs; biofilm; rhizosphere colonization; Bacillus subtilis; extracellular polymeric substances