The Effect of Two Types of Biochars on the Efficacy, Emission, Degradation, and Adsorption of the Fumigant Methyl Isothiocyanate

文献类型: 外文期刊

第一作者: Cao, Aocheng

作者: Cao, Aocheng;Yan, Dongdong;Han, Dawei;Huang, Bin;Li, Jun;Liu, Xiaoman;Guo, Meixia;Wang, Qiuxia

作者机构:

关键词: biochar;methyl isothiocyanate (MITC);dazomet;degradation;adsorption

期刊名称:ENERGIES ( 影响因子:3.004; 五年影响因子:3.085 )

ISSN: 1996-1073

年卷期: 2017 年 10 卷 1 期

页码:

收录情况: SCI

摘要: Biochar (BC) is increasingly applied in agriculture; however, due to its adsorption and degradation properties, biochar may also affect the efficacy of fumigant in amended soil. Our research is intended to study the effects of two types of biochars (BC-1 and BC-2) on the efficacy and emission of methyl isothiocyanate (MITC) in biochar amendment soil. Both types of biochars can significantly reduce MITC emission losses, but, at the same time, decrease the concentration of MITC in the soil. The efficacy of MITC for controlling soil-borne pests (Meloidogyne spp., Fusarium spp. Phytophthora spp., Abutilon theophrasti and Digitaria sanguinalis) was reduced when the biochar (BC-1 and BC-2) was applied at a rate of higher than 1% and 0.5% (on a weight basis) (on a weight basis), respectively. However, increased doses of dazomet (DZ) were able to offset decreases in the efficacy of MITC in soils amended with biochars. Biochars with strong adsorption capacity (such as BC-1) substantially reduced MITC degradation rate by 6.2 times, and increased by 4.1 times following amendment with biochar with high degradability (e.g., BC-2), compared to soil without biochar amendment. This is due to the adsorption and degradation of biochar that reduces MITC emission losses and pest control.

分类号:

  • 相关文献

[1]Effects of Biochar Amendment on Chloropicrin Adsorption and Degradation in Soil. Wang, Qiuxia,Yan, Dongdong,Fang, Wensheng,Mao, Liangang,Li, Yuan,Ouyang, Canbin,Guo, Meixia,Cao, Aocheng,Wang, Dong. 2016

[2]Biochar characteristics produced from rice husks and their sorption properties for the acetanilide herbicide metolachlor. Huang, Yufen,Li, Yanliang,Huang, Lianxi,Huang, Qing,Liu, Zhongzhen,Wei, Lan,Huang, Yufen,Li, Yanliang,Huang, Lianxi,Huang, Qing,Liu, Zhongzhen,Mar, Nyo Nyo.

[3]Ammonium citrate-modified biochar: An adsorbent for La(III) ions from aqueous solution. Wang, Yu-Ying,Lu, Hao-Hao,Liu, Yu-Xue,Yang, Sheng-Mao,Wang, Yu-Ying,Lu, Hao-Hao,Liu, Yu-Xue,Yang, Sheng-Mao.

[4]Application of biochar reduces Ralstonia solanacearum infection via effects on pathogen chemotaxis, swarming motility, and root exudate adsorption. Gu, Yian,Hou, Yugang,Huang, Dapeng,Hao, Zhexia,Wang, Xiaofang,Wei, Zhong,Jousset, Alexandre,Shen, Qirong,Xu, Yangchun,Jousset, Alexandre,Tan, Shiyong,Xu, Dabing,Friman, Ville-Petri.

[5]Adsorption Properties of Nano-MnO2-Biochar Composites for Copper in Aqueous Solution. Zhou, Li,Zhou, Li,Huang, Yifan,Liu, Zhongqi,Song, Zhengguo,Qiu, Weiwen,Sun, Zhanxiang.

[6]Degradation of dimethyl disulphide in soil with or without biochar amendment. Yan, Dongdong,Cao, Aocheng,Fang, Wensheng,Liu, Pengfei,Li, Yuan,Ouyang, Canbin,Wang, Qiuxia.

[7]Evaluation of the combination of 1,3-dichloropropene and dazomet as an efficient alternative to methyl bromide for cucumber production in China. Mao, Lian-Gang,Wang, Qiu-Xia,Yan, Dong-Dong,Xie, Hong-Wei,Li, Yuan,Guo, Mei-Xia,Cao, Ao-Cheng.

[8]Integrated management of root-knot nematodes on tomato in glasshouse production using nematicides and a biocontrol agent, and their effect on soil microbial communities. Liu, Jianbin,Sun, Jingzu,Liu, Xingzhong,Xiang, Meichun,Qiu, Jiyan. 2014

[9]Efficacy of soil fumigation with dazomet for controlling ginger bacterial wilt (Ralstonia solanacearum) in China. Jiang, Hongyun,Wang, Qiuxia,Yan, Dongdong,Cao, Aocheng.

[10]Evaluation of the Combination of Dimethyl Disulfide and Dazomet as an Efficient Methyl Bromide Alternative for Cucumber Production in China. Mao, Liangang,Yan, Dongdong,Wang, Qiuxia,Li, Yuan,Ouyang, Canbin,Liu, Pengfei,Shen, Jin,Guo, Meixia,Cao, Aocheng,Yan, Dongdong,Wang, Qiuxia,Li, Yuan,Ouyang, Canbin,Guo, Meixia,Cao, Aocheng.

[11]Effect of Biochars from Rice Husk, Bran, and Straw on Heavy Metal Uptake by Pot-Grown Wheat Seedling in a Historically Contaminated Soil. Zheng, Ruilun,Xiao, Bo,Chen, Zheng,Wang, Xiaohui,Huang, Yizong,Sun, Guoxin,Cai, Chao. 2013

[12]Biochar Improves Sugarcane Seedling Root and Soil Properties Under a Pot Experiment. Li, Yangrui,Yang, Liu,Li, Yangrui,Yang, Liu,Li, Yangrui,Liao, Fen,Huang, Min,Yang, Litao. 2015

[13]The effects of biochar and hoggery biogas slurry on fluvo-aquic soil physical and hydraulic properties: a field study of four consecutive wheat-maize rotations. Du, Zhenjie,Chen, Xiaomin,Nan, Jiangkuan,Deng, Jianqiang,Du, Zhenjie,Qi, Xuebin,Li, Zhongyang,Du, Zhenjie,Qi, Xuebin,Li, Zhongyang. 2016

[14]Comparative Effects of Biochar, Slag and Ferrous-Mn Ore on Lead and Cadmium Immobilization in Soil. Mehmood, Sajid,Rizwan, Muhammad,Bashir, Saqib,Aziz, Omar,Yong, Li Zhe,Dai, Zhihua,Tu, Shuxin,Ditta, Allah,Akmal, Muhammad,Ahmed, Waqas,Adeel, Muhammad,Imtiaz, Muhammad. 2018

[15]Population and community structure shifts of ammonia oxidizers after four-year successive biochar application to agricultural acidic and alkaline soils. He, Lili,Bi, Yucui,Zhao, Jin,Zhao, Xu,Wang, Shenqiang,Xing, Guangxi,He, Lili,Pittelkow, Cameron M.. 2018

[16]Preparation and Characterization of Camellia Shell Biochar. Qin, Zuodong,Li, Zhizhang,Wang, Meifeng,Duns, Gregory J.,He, Fulin,Luo, Xiaofang,Qin, Zuodong,Qin, Zuodong,Wang, Jianhua,Yang, Shengmao,Wang, Yuying,Zeng, Weixi,Yang, Shengmao,Wang, Yuying,Zeng, Weixi. 2016

[17]Bioremediation of Wastewater by Iron Oxide-Biochar Nanocomposites Loaded with Photosynthetic Bacteria. He, Shiying,Duan, Jingjing,Feng, Yanfang,Yang, Bei,Yang, Linzhang,Zhong, Linghao. 2017

[18]Selective removal of polycyclic aromatic hydrocarbons (PAHs) from soil washing effluents using biochars produced at different pyrolytic temperatures. Li, Helian,Qu, Ronghui,Li, Chao,Guo, Weilin,Han, Xuemei,He, Fang,Ma, Yibing,Li, Helian,Xing, Baoshan,Ma, Yibing.

[19]LS-SVM data mining analysis: how does biochar influence soil net nitrogen mineralization in the field?. Deng, Jianqiang,Chen, Xiaomin,Nan, Jiangkuan,Du, Zhenjie,Deng, Jianqiang,Wang, Rui,Du, Zhenjie.

[20]Sorption of mercury (II) and atrazine by biochar, modified biochars and biochar based activated carbon in aqueous solution. Tan, Guangcai,Xu, Yaru,Xu, Nan,Sun, Weiling,Wang, Hongyuan.

作者其他论文 更多>>