Journal of Soils and Sediments - Phytolith-occluded carbon (PhytOC) is mainly derived from the products of photosynthesis, which can be preserved in soils and sediments for hundreds-to-thousands of... 相似文献
Magnetic removal techniques using functionalized magnetic nanoparticles as adsorbents have been frequently tested for use in the removal of heavy metals in aqueous solution, but seldom in farmland soil. Here, a novel magnetic microparticle solid chelator (MSC) was employed as the adsorbent for magnetic removal and/or immobilization of Cd and Zn in a paddy soil (PS), an upland soil (US), and a paddy–upland rotation soil (RS) with different degrees of pollution.
Materials and methods
MSC was applied to 14 kg air-dried soil samples (PS, US, and RS) at the dosage of 1% (w/w), and then watered, and intermittently stirred. Finally, the MSC–metal complexes were retrieved using a magnetic device (MCR treatment) or not (MC treatment), and the removal efficiency of soil Cd and Zn in MCR treatment was evaluated. After magnetic separation of MSC–metal complexes, pot experiments were performed to investigate the impacts of the magnetic remediation process on rice growth, the phytoavailability of soil Cd and Zn, and the accumulation of Cd and Zn in rice plants.
Results and discussion
The MCR treatment exhibited recovery rates of 55.4%, 49.6%, and 19.0% for MSC–metal complexes in PS, US, and RS, respectively, which brought about removal efficiencies of 2.2–12.2% for Cd and 1.9–4.6% for Zn. The MC and MCR treatments substantially decreased the availability of soil Cd, but not soil Zn; this effect was more remarkable when using CaCl2 instead of DTPA as the extractant for determination of bioavailable metals. Furthermore, the CaCl2-extractable Cd and Zn had a more significant relationship with Cd and Zn concentrations in rice roots. The MC and MCR treatments led to dramatic reductions in rice grain Cd of 23.9–72.1% and 37.3–63.9%, respectively, in the three soils relative to the respective controls. The MC and MCR treatments also exhibited an inhibitory effects on rice grain Zn accumulation in US (10.6% and 4.3% decreases, respectively) and RS (9.3% and 19.5% decreases, respectively), but not in PS. Moreover, the grain yield was unaffected under the MCR treatment in the three soils, and significantly increased by 29.8% under the MC treatment in US.
Conclusions
Our study suggests that MSC-based magnetic remediation technique can effectively immobilize and/or remove Cd and Zn in farmland soils, decreasing their uptake by rice plants, with no adverse effects on grain yield.
为探究有机农业生物多样性这一领域的研究现状、热点与态势,基于Web of Science数据库,利用文献计量分析方法,对1986—2019年有机农业生物多样性领域研究文献的发文量、研究力量的分布及合作、期刊分布、研究热点和主题等方面进行数据挖掘和可视化分析。研究表明:检索到的文献最早发表于1996年,2005年之前此领域处于初步发展期,2005年进入稳步增长期,文献数量总体呈逐年增多的趋势。研究主要集中在欧洲和北美发达国家,如德国、美国、英国和瑞典等;发文量最多的机构是法国国家农业研究所和瑞典农业科学大学;学者Tscharntke T发文量最多,近5年Batáry P发文量较多;刊文量最多的期刊是《Agriculture EcosystemsEnvironment》《Journal of Applied Ecology》和《Sustainability》,刊文量前16的期刊中《Journal of Applied Ecology》影响因子最高(6.533)。德国和英国与其他国家合作交流频繁,瑞典农业科学大学和慕尼黑工业大学是机构合作网络的两个中心,Tscharntke T和Bommarco R等较多学者表现出紧密合作的学术形式。通过关键词共现分析发现,国际研究热点从仅关注种植模式对生物多样性影响的基础性研究,逐步拓展到不同尺度或景观复杂性对有机农业生物多样性和生态系统服务影响的应用型研究。我国研究起步较晚,发文量和篇均被引频次等与欧美国家还存在差距,但近5年发文量增长较快,具有良好的发展趋势。今后此领域仍将是全球有机农业研究和实践的热点方向,涉及多尺度、多学科交叉融合的基础性研究和地域性应用研究仍是未来研究的重点。 相似文献