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271.
272.
Changes in functional structure of soil bacterial communities due to fungicide and insecticide applications in canola 总被引:1,自引:0,他引:1
Newton Z. Lupwayi K. Neil Harker Lloyd M. Dosdall T. Kelly Turkington Robert E. Blackshaw John T. ODonovan Hctor A. Crcamo Jennifer K. Otani George W. Clayton 《Agriculture, ecosystems & environment》2009,130(3-4):109-114
The fungicide vinclozolin and insecticide λ-cyhalothrin are widely used to control canola (Brassica spp.) diseases and insect pests, respectively, in Canada. We investigated non-target effects of these pesticides, applied at recommended rates, on soil microbial biomass, functional bacterial diversity and functional community structure of soil bacteria (by evaluating patterns of C substrate utilization) in canola rhizosphere and bulk soil at three locations in Alberta from 2002 to 2004. Experimental treatments were (a) untreated control, (b) vinclozolin fungicide foliar application, (c) λ-cyhalothrin insecticide foliar application, and (d) vinclozolin and λ-cyhalothrin applications. No significant pesticide effects on soil microbial biomass or functional bacterial diversity were observed, but the functional structures of soil bacteria were altered. In 1 of 12 cases, the control treatment had a different soil bacterial community structure from the 3 pesticide treatments. The fungicide treatment had different bacterial community structures from the control or insecticide treatments in 3 of 12 cases, the insecticide treatment had different community structures from the control or fungicide treatments in 4 of 12 cases, and the combined fungicide and insecticide treatment had different community structures from the other treatments in 3 of 12 cases. Therefore, evaluating soil bacterial functional structures revealed pesticide effects that were not detected when bacterial diversity or microbial biomass were measured in canola rhizosphere or bulk soil. 相似文献
273.
Simulated dynamics of carbon stocks driven by changes in land use, management and climate in a tropical moist ecosystem of Ghana 总被引:1,自引:0,他引:1
Zhengxi Tan Shuguang Liu Larry L. Tieszen Emmanuel Tachie-Obeng 《Agriculture, ecosystems & environment》2009,130(3-4):171-176
Sub-Saharan Africa is large and diverse with regions of food insecurity and high vulnerability to climate change. This project quantifies carbon stocks and fluxes in the humid forest zone of Ghana, as a part of an assessment in West Africa. The General Ensemble biogeochemical Modeling System (GEMS) was used to simulate the responses of natural and managed systems to projected scenarios of changes in climate, land use and cover, and nitrogen fertilization in the Assin district of Ghana. Model inputs included historical land use and cover data, historical climate records and projected climate changes, and national management inventories. Our results show that deforestation for crop production led to a loss of soil organic carbon (SOC) by 33% from 1900 to 2000. The results also show that the trend of carbon emissions from cropland in the 20th century will continue through the 21st century and will be increased under the projected warming and drying scenarios. Nitrogen (N) fertilization in agricultural systems could offset SOC loss by 6% with 30 kg N ha−1 year−1 and by 11% with 60 kg N ha−1 year−1. To increase N fertilizer input would be one of the vital adaptive measures to ensure food security and maintain agricultural sustainability through the 21st century. 相似文献
274.
Alfonsina Szpeiner M. Alejandra Martínez-Ghersa Claudio M. Ghersa 《Agriculture, ecosystems & environment》2009,134(1-2):99-107
Plant emission of volatile organic compounds (VOCs) has a significant impact on arthropods and plants and alters important functions in the agroecosystems. Three field source–sink microcosm experiments evaluated variation in wheat plants volatile emissions and its impact on neighbouring wheat plants’ performance caused by genotype, aphid herbivory and soil nutrient availability due to different cropping histories. An electronic nose detected qualitative differences in volatile emissions. Two of the experiments established the source–sink relationships forcing the volatiles through pipes. In these experiments wheat genotype was introduced as a variable of the source plants. In the third experiment, the emissions of volatiles dispersed naturally affecting the neighbourhood only by proximity and wheat genotype was a controlled factor. Plant genotype, aphid attack and soil chemical changes caused by different cropping histories affected wheat volatile emissions despite independent variations in plant biomass or resource allocation. This is the first report of changes in distant plant biomass according to neighbouring plant genotype and agricultural history. Wheat VOCs emissions were associated with changes in soil organic C, Ca, Mg, total nitrogen and cation exchange capacity caused by the different cropping histories of the soils tested. Variability in total biomass and resource allocation increased due to changes in VOCs emissions promoted by longer cropping history or aphid feeding in two genotypes. When volatiles were naturally dispersed into the neighbourhood, tiller weight in the sink individuals depended on plant genotype and cropping history of its neighbours (i.e. VOCs source). These findings highlight that ecological and environmental consequences of agricultural practices are more complex than normally thought. 相似文献
275.
重金属污染土壤螯合诱导植物修复研究进展 总被引:2,自引:1,他引:2
土壤重金属污染来源广泛、危害严重,已经成为环境污染治理中的热点、难点问题。重金属污染土壤螯合诱导植物修复技术是在化学修复、植物修复的基础上发展起来的,具有绿色环保、经济高效等优点,在重金属污染土壤修复领域具有很大的发展空间。本文在综合螯合诱导植物修复技术发展概况的基础上,系统介绍了螯合剂种类、螯合剂施入时间、施入方式、浓度与剂量、不同富集植物以及土壤理化性质等对重金属污染土壤修复效果的影响及国内外研究概况,综述了螯合诱导植物修复技术的作用机理及其环境风险研究进展。最后,提出了重金属污染土壤螯合诱导植物修复技术还有待深入研究的有关问题。 相似文献
276.
受污染土壤的评价方法和管理对策探讨 总被引:8,自引:0,他引:8
受污染土壤问题是一个迫切需引起重视的环境问题,该文在调研基础上,提出了受污染土壤的评价方法和控制对策,受污染土壤评价包括,受污染土壤的识别,环境风险分析和受污染土净化整个过程,评价程序包括预备性调查,初步调查,详细调查,修复技术选择及修复工程实施等5个阶段,受污染土壤的详细调查,应有计划地分批进行,重点放在废物堆场和污染企业搬迁后遗留的场地上,受污染土壤的净化,是一项花费巨大的工程,要加快立法,界 相似文献
277.
钙镁磷肥对土壤中镉形态转化与水稻吸镉的影响 总被引:14,自引:0,他引:14
酸性镉污染水田施用不同用量的钙镁磷肥的田间试验表明:土壤中交换态镉的分配系数随钙镁磷肥用量的增加而降低,呈显著负相关(r,-0.9314);碳酸盐结合态和铁锰氧化物结合态镉的分配系数则呈显著正相关(r,0,9395)。而土壤中有效态镉含量与钙镁磷肥用量则呈显著负相关(r,-0.8853)。镉污染水田一次性投加高量钙镁磷肥后,可使土壤pH显著升高,交换态镉分配系数明显下降,碳酸盐结合态和铁锰氧化物结合态镉分配系数明显升高,导致土壤中有效态镉含量大幅度下降,从而大大减少水稻植株的吸镉量。 相似文献
278.
279.
再生铅冶炼对土壤环境影响及其评价和环境管理 总被引:5,自引:0,他引:5
再生铅冶炼是对废弃物的循环利用,防治铅污染的重要手段,但冶炼中处置不当,会引起土壤污染,再生铅冶炼对土壤环境的影响,首先进行环境影响识别,并根据冶炼中铅的排放强度和铅的生物地球化学循环规律来阐明其排放特点和进入土壤的途径,通过再生铅冶炼项目环境影响评价的实例,探讨了土壤环境质量的现状分析、评价和预测等研究方法,并提出严格执行环境影响评价制度和“三同时”制度,强化建设项目本身的环境管理和完善土壤环境质量标准等土壤环境管理措施。 相似文献
280.
稻、土及田水中锐劲特残留量分析方法 总被引:10,自引:0,他引:10
建立了新型杀虫剂锐劲特及其代谢物在水稻、土壤、田水中的气相色谱毛细管柱残留分析方法。该方法对锐劲特及其代谢物MB46513、MB45950、MB46136、RPA200766等,在水稻中的最低检出浓度依次为:0.002,0.001,0.001,0.004,0.01mg/kg;在土壤中这几种组分最低检出浓度为水稻中的1/3;在田水中最低检出浓度为水稻中的1/25。加标回收率83.4%-97.7%。变异系数1.86%-7.07%。 相似文献