Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Soil carbon and nitrogen sequestration and crop growth as influenced by long-term application of effective microorganism compost

作者:Cheng Hu, Xiange Xia, Yunfeng Chen, Xuemei Han · 发表于:Chilean journal of agricultural research · 年份:2018 · DOI:10.4067/s0718-58392018000100013 · 被引用次数:21 · 研究领域:Legume Nitrogen Fixing Symbiosis、Agriculture, Plant Science, Crop Management、Soil Carbon and Nitrogen Dynamics

Long-term excessive application of inorganic fertilizers not only wastes resources but also contaminates the environment. The use of natural substitutes could overcome these drawbacks. We hypothesize that organic fertilizers could increase soil C, N sequestration and improve soil fertility more effectively than inorganic fertilizers, and that in particular effective microorganism (EM) could improve the effects of traditional compost. So, a long-term field experiment regarding improvement of soil fertility, protecting soil environment, and increasing of maize and wheat yield was conducted at China Agricultural University's Qu-Zhou experiment station since 1993. Field experiment included EM compost treatment, traditional compost treatment, chemical fertilizer treatment, and unfertilized treatment. Soil organic C (SOC), total N, nutrient concentrations, pH, bulk density, and crop yields were determined. The results revealed that long-term repeated application of EM compost promoted soil C and N sequestration, increased soil nutrient contents, decreased soil pH and bulk density, enhanced crop yields in contrast to chemical fertilizer and control treatment. Soil organic C stocks (0-20 cm) were increased by 87.32%, 81.51%, 33.05%, 25.20% and soil total N stocks were increased by 93.26%, 77.53%, 37.64%, 34.83% in contrast to initial values in EM compost, traditional compost, chemical fertilizer and control treatments, respectively. Moreover, maize grain yields in EM compost, traditi...