期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
基于发明专利的重金属钝化技术的文献计量分析 被引量:11
1
作者 秦勇 师阿燕 +5 位作者 徐笠 徐岩 李静 张震 古丛珂 李发东 《农业资源与环境学报》 CAS 北大核心 2018年第4期283-291,共9页
降低环境基质中重金属含量及其生物有效性,使重金属从活性较高的形态向活性较低的形态转化,是当前中国农牧业生产及资源利用中亟待解决的一个关键问题。专利文献是技术信息最有效的载体,本文以国家专利局公开的95项重金属钝化专利为依据... 降低环境基质中重金属含量及其生物有效性,使重金属从活性较高的形态向活性较低的形态转化,是当前中国农牧业生产及资源利用中亟待解决的一个关键问题。专利文献是技术信息最有效的载体,本文以国家专利局公开的95项重金属钝化专利为依据,对钝化技术发明专利开展了文献计量分析。重金属钝化技术的专利申请数量呈持续增长趋势,并于2014年之后进入快速增长阶段。该技术主要应用领域有土壤、城市污泥和畜禽粪便3种,多数研究属于盆栽试验或批次堆肥实验。无机钝化材料主要通过化学反应和调节土壤中的pH来降低重金属在土壤中的有效浓度;有机钝化技术通过与重金属经化学作用形成不溶性金属-有机复合物,来增加土壤阳离子交换量,以降低重金属的水溶态及可交换态组分,进而降低其生物有效性和可迁移性;而微生物的钝化修复作用还与氧化还原环境有关。不同钝化剂对不同重金属的钝化效果不同,且不同钝化剂优化组合对重金属形态也具有很大影响,在实践中大面积应用面临着较大的困难。借助于材料科学,对高效吸附剂的筛选和分离技术仍需进一步研究和完善。 展开更多
关键词 钝化效果 重金属有效性 钝化剂组合 发明专利 文献计量分析
下载PDF
Effect of experimental warming on soil respiration under conventional tillage and no-tillage farmland in the North China Plain 被引量:6
2
作者 TU Chun LI Fa-dong +3 位作者 QIAO Yun-feng ZHU Nong gu cong-ke ZHAO Xin 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2017年第4期967-979,共13页
Understanding the response of soil respiration to global warming in agro-ecosystem is crucial for simulating terrestrial carbon (C) cycle. We conducted an infrared warming experiment under conventional tillage (CT... Understanding the response of soil respiration to global warming in agro-ecosystem is crucial for simulating terrestrial carbon (C) cycle. We conducted an infrared warming experiment under conventional tillage (CT) and no-tillage (NT) farmland for winter wheat and summer maize rotation system in North China Plain (NCP). Treatments include CT with and without warming (CTW and CTN), NT with and without warming (NTW and NTN). The results indicated that warming had no sig- nificant effect on soil moisture in irrigated farmland of NCP (P〉0.05). The elevated average soil temperature of 1.1-116℃ in crop growing periods could increase annual soil CO2 emission by 10.3% in CT filed (P〉0.05), but significantly increase it by 12.7% in NT field (P〈0.05), respectively. The disturbances such as plowing, irrigation and precipitation resulted in the obvious soil CO2 emission peaks, which contributed 36.6-40.8% of annual soil cumulative CO2 emission. Warming would enhance these soil CO2 emission peaks; it might be associated with the warming-induced increase of autotrophic respiration and heterotrophic respiration. Compared with un-warming treatments, dissolved organic carbon (DOC) and soil microbial biomass carbon (MBC) in warming treatments were significantly increased by 11.6-23.4 and 12.9-23.6%, respectively, indicating that the positive responses of DOC and MBC to warming in both of two tillage systems. Our study highlights that climate warming may have positive effects on soil C release in NCP in association with response of labile C substrate to warming. 展开更多
关键词 global warming conventional tillage NO-TILLAGE soil respiration dissolved organic carbon soil microbial biomasscarbon
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部