Higher nitrates, P and lower pH in soils under medicinal plants versus crop plants
文献类型: 外文期刊
作者: Du, Lianfeng 1 ; Zhao, Jiaojiao 2 ; Abbas, Farhat 3 ; Liu, Wenke 2 ;
作者机构: 1.Beijing Acad Agr & Forestry Sci, Inst Plant Nutr & Resources, Beijing 100097, Peoples R China
2.Chinese Acad Agr Sci, Inst Environm & Sustainable Dev Agr, Key Lab Energy Conservat & Waste Management Agr S, Minist Agr, Beijing 100081, Peoples R China
3.Univ Faisalabad, Dept Environm Sci, Govt Coll, Faisalabad, Pakistan
关键词: Nitrate;Available P;Soil depth;Cropland;Electric conductivity;Soil pH
期刊名称:ENVIRONMENTAL CHEMISTRY LETTERS ( 影响因子:9.027; 五年影响因子:8.216 )
ISSN:
年卷期:
页码:
收录情况: SCI
摘要: This report shows a higher soil quality under medicinal plants versus food-crop plants. Long-term continuous cultivation of food crops induces changes of soil properties that can lead to fertility loss and, in turn, decline of food productivity. Effect of cropping on soil changes has been studied mainly for food crops and vegetables worldwide, whereas soil changes in herbal fields are scarcely known. Therefore, we compared here soil nutrients and soil chemical properties of herbal fields, cultivated with Chinese medicinal plants, and food-crop fields. Fields are located at the famous traditional planting base of Chinese medicinal plants in Anguo, China. The results showed that in herbal fields, soil nitrate, available P, soil organic matter (SOM), and electrical conductivity decreased with soil depth, whereas soil pH and soil water content increased with depth. In herbal fields, soil nitrate, available P contents, and soil electrical conductivity were higher than those of food-crop fields at various soil layers. SOM and soil water content were similar in herbal and food-crop fields. Soil pH of herbal fields at 0-20 cm was lower than those of food-crop fields. Findings show overall that soil nutrient accumulation and changes under medicinal plants are higher than food-crop fields.
- 相关文献
作者其他论文 更多>>
-
Drip irrigation under film mulch used on flat-bed increased vegetable yield by altering soil microbe community structure and soil nitrogen
作者:Xu, Xiangnan;Li, Yanmei;Du, Lianfeng;Zou, Guoyuan;Sun, Yanxin;Xu, Xiangnan;Li, Yanmei;Du, Lianfeng;Zou, Guoyuan;Sun, Yanxin;Li, Chao;Zhang, Haifang;Jia, Baodi
关键词:
-
Distribution, Accumulation and Translocation of the Heavy Metal Cd in Various Varieties of Edible Rapeseed under Cd Stress
作者:Liu, Jing;Kang, Lingyun;Du, Lianfeng;Liao, Shangqiang;Dong, Wei;Ma, Maoting;Zou, Guoyuan;Li, Shunjiang
关键词:edible rapeseed; Cd pollution; accumulation; translocation; variety
-
Flooding soil with biogas slurry suppresses root-knot nematodes and alters soil nematode communities
作者:Li, Yufei;Liu, Bensheng;Li, Jijin;Zou, Guoyuan;Xu, Junxiang;Du, Lianfeng;Lang, Qianqian;Zhao, Xiang;Sun, Qinping
关键词:Nematode disease management; Watermelon; Soil food web; Soil pollution risk; Greenhouse conditions
-
Large mulch film residues are more unfavourable to the reduction of soil antibiotic resistance genes induced by organic fertilisation than small mulch film residues
作者:Liu, Liyuan;Zuo, Qiang;Gu, Jialin;Du, Lianfeng;Liu, Dongsheng;Liu, Liyuan;Li, Houyu;Zhao, Haikang;Zhou, Jihua
关键词:Mulch film residue size; Antibiotic resistance gene reduction; Soil physicochemical property; Soil enzymes activity; Bacterial community
-
Potential Risk Identification of Agricultural Nonpoint Source Pollution: A Case Study of Yichang City, Hubei Province
作者:Yang, Jinfeng;Li, Xinrong;Tian, Zhuang;Zou, Guoyuan;Du, Lianfeng;Guo, Xuan;Wang, Xuelei
关键词:agricultural nonpoint source pollution; index system; potential risk identification; critical source region
-
Micro- and nano-plastics play different roles in oxytetracycline adsorption on natural zeolite: Additional adsorbent and competitive adsorbate
作者:Xie, Huimin;Zhou, Yi;Li, Peng;Zou, Guoyuan;Du, Lianfeng;Guo, Xuan;Xie, Huimin;Pan, Weiliang;Zhou, Yi
关键词:Natural zeolite; Oxytetracycline; Polystyrene; Mechanism; Microplastic
-
Enhanced nitrogen removal via biochar-mediated nitrification, denitrification, and electron transfer in constructed wetland microcosms
作者:Guo, Xuan;Xie, Huimin;Li, Peng;Du, Lianfeng;Zou, Guoyuan;Wei, Dan;Guo, Xuan;Li, Peng;Xie, Huimin;Pan, Weiliang
关键词:Constructed wetland; Biological nitrogen removal; Electron transfer; Biochar; Functional gene; Microbial community