Biochar impacts on NH3-volatilization kinetics and growth of sweet basil (Ocimum basilicum L.) under saline conditions
文献类型: 外文期刊
作者: Ding, Zheli 1 ; Zhou, Zhaoxi 1 ; Lin, Xinge 1 ; Zhao, Fengliang 2 ; Wang, Bizun 1 ; Lin, Fei 1 ; Ge, Yu 1 ; Eissa, Mamdou 1 ;
作者机构: 1.Chinese Acad Trop Agr Sci CATAS, Haikou Expt Stn, Haikou, Hainan, Peoples R China
2.Chinese Acad Trop Agr Sci CATAS, Inst Environm & Plant Protect, Haikou, Hainan, Peoples R China
3.Assiut Univ, Fac Agr, Dept Soils & Water, Assiut 71526, Egypt
关键词: Biochar application; Saline water; Nutrients concentrations; Biochemical changes; Plant growth
期刊名称:INDUSTRIAL CROPS AND PRODUCTS ( 影响因子:5.645; 五年影响因子:5.749 )
ISSN: 0926-6690
年卷期: 2020 年 157 卷
页码:
收录情况: SCI
摘要: Sweet basil (Ocimum basilicum var. Genovese) is an important medicinal herb and is considered to be a moderately salt-tolerant plant. However, little is known about the effect of biochar on enhancing its salinity tolerance. The response of basil plant to water salinity (8 dS m(-1), NaCl salinity) and three levels of biochar i. e., C, BC1, and BC2 (0, 1, and 2 % by weight) was investigated, as was the effect of biochar on NH3 volatilization kinetics. Irrigation of basil plants with saline water reduced the plant height, fresh weight, and dry weight by 27 %, 18 %, and 17 % in comparison to tap water. The application of biochar to saline irrigated basil caused remarkable increases in all the recorded growth parameters. Water salinity reduced N, P, and K availability and shoot concentrations. When applied, BC1 and BC2 under saline conditions increased shoot concentrations of N by 42 % and 67 %; P by 40 % and 70 % and K by 15 % and 50 %. Water salinity increased the concentrations of proline and phenolic compounds by 15 and 70 %, respectively; moreover, it reduced the total chlorophyll by 10 %. Water salinity reduced the oil yield by 15 %. The overall oil yield was increased by 18 and 38 % as a result of BC1 and BC2 application. The salinity of irrigation water increased the NH3 volatilization and reduced its half-life by 34 %. On the other hand, biochar reduced NH3 volatilization and increased its half-life. Biochar improved the growth and yield of basil plants by improving the efficiency of photosynthesis and the absorption of essential nutrients. It also had a role in reducing the concentrations of biochemical substances produced under salt stress. Therefore, using biochar is a good strategy for reducing NH3 volatilization and enhancing soil quality and plant productivity under saline irrigation.
- 相关文献
作者其他论文 更多>>
-
Comparative analysis of physicochemical quality and metabolite profiles during fruit ripening in three banana cultivars using multivariate approaches
作者:Wang, Lixia;Jing, Tao;Cai, Bingyu;Shah, Ghulam Abbas;Shafiq, Fahad;Zang, Xiaoping;Ding, Zheli;He, Yingdui;Wang, Lixia;Jing, Tao;Cai, Bingyu;Zang, Xiaoping;Ding, Zheli;He, Yingdui;Shah, Ghulam Abbas;Shafiq, Fahad
关键词:Climacteric response; Carbohydrate metabolism; Amino acids; Organic acids; Postharvest physiology
-
撤稿声明: Agro waste as a potential carbon feedstock for poly-3-hydroxy alkanoates production: Commercialization potential and technical hurdles
作者:Ding, Zheli;Liu, Xiaodi;Zhang, Zengqiang;Awasthi, Mukesh Kumar;Kumar, Vinay;Sar, Taner;Harirchi, Sharareh;Taherzadeh, Mohammad J.;Dregulo, Andrei Mikhailovich;Sirohi, Ranjna;Sindhu, Raveendran;Binod, Parameswaran
关键词:
-
撤稿声明: Retraction notice to "Valorization of tropical fruits waste for production of commercial biorefinery products - A review" [Bioresour. Technol. 374 (2023) 128793]
作者:Ding, Zheli;Wu, Peicong;Lin, Fei;Ge, Yu;Sar, Taner;Harirchi, Sharareh;Taherzadeh, Mohammad J.;Kumar, Vinay;Binod, Parameswaran;Sirohi, Ranjna;Sindhu, Raveendran;Zhang, Zengqiang;Awasthi, Mukesh Kumar
关键词:
-
Artificial Neural Networks for Predicting Mango Response to Potassium-Enriched Biochar Under Drought Conditions
作者:Eissa, Mamdouh A.;Ding, Zheli;Eissa, Mamdouh A.;Alotaibi, Modhi O.;Alotaibi, Modhi O.;Anazi, Hanan Khalaf;Alghanem, Suliman Mohammed Suliman;Qenawy, Mohamed;Wang, Hailong;El-Sharkawy, Mahmoud
关键词:Drought stress; Soil quality; Potassium kinetics; Mango productivity; Machine learning
-
Colletotrichum species associated with durian ( Durio zibethinus Murray) in Hainan, China
作者:Xu, Huan;Zhang, Zheyu;Xu, Huan;Zhang, Zheyu;Wang, Jiabao;Cao, Xueren;Zhou, Zhaoxi;West, Jonathan S.
关键词:Colletotrichum species; Durian; Identification; Phylogenetic; Pathogenicity
-
撤稿声明: Retraction notice to "Recent advances in lignocellulosic and algal biomass pretreatment and its biorefinery approaches for biochemicals and bioenergy conversion" [Bioresource Technol. 367 (2023) 128281]
作者:Zhang, Yue;Sun, Xinwei;Zhang, Zengqiang;Awasthi, Mukesh Kumar;Ding, Zheli;Zhang, Yue;Hossain, Md Shahadat;Kumar, Deepak;Maurya, Rupesh;Singh, Vijai;Yang, Yulu;Salama, El-Sayed;Sindhu, Raveendran;Binod, Parameswaran
关键词:
-
撤稿声明: Production of biochar from tropical fruit tree residues and ecofriendly applications - A review
作者:Ding, Zheli;Wu, Peicong;Lin, Fei;Ge, Yu;Gowd, Sarath C.;Rajendran, Karthik;Singh, Ekta;Chaurasia, Deepshi;Kumar, Vikas;Bhargava, Preeti Chaturvedi;Kumar, Vinay;Harirchi, Sharareh;Taherzadeh, Mohammad J.;Kumar, Veeramuthu Ashok;Sirohi, Ranjna;Sindhu, Raveendran;Binod, Parameswaran;Awasthi, Mukesh Kumar
关键词:



