首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 125 毫秒
1.
中国主要农作物种植农药施用温室气体排放估算   总被引:2,自引:0,他引:2  
陈舜  逯非  王效科 《生态学报》2016,36(9):2560-2569
过去30年来我国农作物的播种面积并未产生太大变化,但病虫害的发生和防治次数却不断增加。根据6种中国主要农作物的病虫害发生情况,收集了相应的农药用量及其制造的温室气体排放量数据,估算了中国主要农作物在种植过程中,因对病虫害使用杀虫剂和杀菌剂而产生的温室气体排放量现状。结果表明,我国主要农作物小麦、水稻、玉米、马铃薯、油菜和棉花的每公顷病虫害防治时使用农药所产生的温室气体排放量分别是9.19(1.86—23.24)、20.54(2.03—50.95)、10.38(3.45—19.32)、5.91(2.15—18.34)、10.84(8.10—13.62)、19.51(5.11—49.01)kg CE hm~(-2)a~(-1),即水稻和棉花最高;但论单产农药温室气体排放量,则油菜和棉花远高于其余4种粮食作物。每年小麦、水稻、玉米、马铃薯、油菜和棉花的病虫害防治使用农药所产生的总温室气体排放量分别是220.8(44.7—558.4)、606.7(60.0—1505.1)、336.4(112.0—606.3)、30.9(11.2—96.0)、79.5(59.4—99.8)、96.4(25.2—242.2)Gg CE,总计1.37(0.31—3.13)Tg CE。将以上6种作物的病虫害防治情况外推到全国农作物,则我国一年因为农作物病虫害防治而产生的温室气体排放量为2.13(0.48—4.85)Tg CE。另外由于缺乏草害面次数据而没有包括除草剂本分,所以以上数字仍是低估。病虫害防治由于作物本身、防治对象、防治方法以及药剂用量的固有差异,导致农作物病虫害防治的温室气体排放量计算结果存在着较大的不确定性,目前基于自下而上农户调查的估算方法无法克服这些问题,更精确的估算需要自上而下的企业级调查数据。  相似文献   

2.
随着对气候变化和粮食安全的的日益认识,低碳农业引起了人们的广泛关注.低碳农业的研究需要综合考虑作物产量和温室气体排放,改进氮肥管理可能有助于减缓作物生产系统的温室气体排放,同时实现对作物稳产甚至高产的需求.本试验利用生命周期法研究了不同施氮量(150、225、300 kg N·hm-2)对春玉米-晚稻轮作系统碳足迹的影响.结果表明: 随着氮肥用量增加,两季作物生产过程中温室气体和碳足迹增加.在春玉米生产过程中,氮肥生产和施用引起的温室气体排放对碳足迹贡献最大,占36.2%~50.2%;而在晚稻生产中,甲烷的排放贡献最大,占42.8%~48.0%,并且随氮肥用量增加甲烷排放增加.当氮肥施用量减少25%(225 kg N·hm-2)和50%(150 kg N·hm-2)时,春玉米生产的温室气体排放分别下降了21.9%和44.3%,碳足迹分别下降了20.3%和39.1%;晚稻生产的温室气体排放分别下降了12.3%和20.4%,碳足迹分别降低了13.7%和16.7%.氮肥减量对春玉米产量无显著影响,而晚稻产量在225 kg N·hm-2施肥量下最高.因此,春玉米氮肥用量降低至150 kg N·hm-2和晚稻氮肥用量降低至225 kg N·hm-2不仅能够保持作物高产,而且还能大幅度降低作物系统的碳足迹.  相似文献   

3.
通过田间试验研究了不同缓/控释尿素对水稻产量和稻田周年温室气体排放的影响,评估生产单位质量水稻的温室气体排放量.结果表明: 优化施肥(OPT)处理在减氮(N)21.4%条件下产量与习惯施肥(FFP)处理持平,同时减少了稻田周年CH4和N2O的排放,其中水稻季CH4和N2O分别减排12.6%和12.5%,休闲季N2O减排33.3%.与OPT处理相比,控释尿素(CRU)处理在水稻季CH4减排28.9%,休闲季CH4零排放;硝化抑制剂(DMPP)处理在水稻季CH4和N2O分别减排41.6%和85.7%,休闲季CH4和N2O分别减排76.9%和6.5%.休闲季节N2O排放占周年N2O排放的76.8%~94.9%,是评价整个稻田温室气体排放不容忽视的因素.OPT、CRU和DMPP处理生产1.0 kg稻谷的温室气体排放强度分别为0.50、0.41和0.33 kg·kg-1,综合考虑周年的温室气体排放总量和产量,尿素和硝化抑制剂配合施用可以在保证水稻产量的情况下,减少温室气体的排放.  相似文献   

4.
通过田间试验研究了不同缓/控释尿素对水稻产量和稻田周年温室气体排放的影响,评估生产单位质量水稻的温室气体排放量.结果表明: 优化施肥(OPT)处理在减氮(N)21.4%条件下产量与习惯施肥(FFP)处理持平,同时减少了稻田周年CH4和N2O的排放,其中水稻季CH4和N2O分别减排12.6%和12.5%,休闲季N2O减排33.3%.与OPT处理相比,控释尿素(CRU)处理在水稻季CH4减排28.9%,休闲季CH4零排放;硝化抑制剂(DMPP)处理在水稻季CH4和N2O分别减排41.6%和85.7%,休闲季CH4和N2O分别减排76.9%和6.5%.休闲季节N2O排放占周年N2O排放的76.8%~94.9%,是评价整个稻田温室气体排放不容忽视的因素.OPT、CRU和DMPP处理生产1.0 kg稻谷的温室气体排放强度分别为0.50、0.41和0.33 kg·kg-1,综合考虑周年的温室气体排放总量和产量,尿素和硝化抑制剂配合施用可以在保证水稻产量的情况下,减少温室气体的排放.  相似文献   

5.
中国农业系统近40年温室气体排放核算   总被引:7,自引:0,他引:7  
范紫月  齐晓波  曾麟岚  吴锋 《生态学报》2022,42(23):9470-9482
基于排放因子法构建了包含种植业和牲畜养殖业的农业系统温室气体排放核算体系,系统核算了1980-2020年我国全国尺度上的农业系统温室气体排放总量和变化趋势,并在区县级尺度下对1980、2000、2011年的中国农业系统的温室气体排放量进行核算,对比不同阶段农业系统温室气体排放变化的时空异质性规律。研究发现:1980-2020年我国农业系统温室气体排放量呈波动增长趋势,增长了近46%。CH4是农业系统排放贡献最大的温室气体,占总排放量的47.33%。我国农业系统温室气体排放与不同地区农业生产方式有关,CH4排放量高的地区主要位于我国主要水稻产区以及旱地作物产区。CO2排放量高的地区主要位于东北、西北等地区以及华东地区。N2O排放量较高地区主要位于西北的主要畜牧养殖地区,以及我国农业经济发展水平高的中南部地区。研究有助于揭示我国农业温室气体排放的动态特征,现状规律,以及空间差异性特征,从农业减排角度为实现双碳目标提供科学参考。  相似文献   

6.
人工湿地对农业径流污染物去除效果显著,已成为控制农业径流污染的有效措施.本文结合国内外研究,介绍了当前水体农药污染的现状;从物理、化学及生物角度阐述了人工湿地对农药的去除机理和关键过程;归纳总结了人工湿地对农药的去除效率,指出人工湿地对农药的去除效率随农药类型的不同而差异较大:农药的平均去除率,按农药用途分为杀虫剂>杀菌剂>除草剂,按农药化学结构分为拟除虫菊酯类>有机磷类>三唑类>酰胺类>三嗪类>脲类;综合考虑,潜流人工湿地在农药去除方面的效果优于表面流人工湿地.在此基础上分析了农药理化性质、人工湿地工艺类型及运行参数、进水中农药浓度、湿地植物等因素对农药在人工湿地中去除的影响.最后指出了当前研究中存在的问题,并提出了研究展望.  相似文献   

7.
通过田间试验,研究了太湖地区不同轮作模式下稻季温室气体排放规律.结果表明: 水稻生长季CH4排放呈先升高后降低趋势,CH4排放主要集中在水稻生育前期,烤田后至水稻收获期间CH4排放量较低;N2O的排放主要集中在3次施肥及烤田期.稻季排放的CH4对全球增温潜势(GWP)的贡献远高于N2O,各处理所占比例为94.7%~99.6%,是温室气体减排的主要对象.不同轮作模式下,稻季CH4排放总量及其GWP存在显著差异,表现为小麦-水稻>紫云英-水稻>休闲-水稻轮作;稻季N2O排放总量及其GWP没有显著性差异.与不施肥处理相比,紫云英-水稻轮作模式下施加氮肥显著降低了CH4排放量和GWP,但不同氮肥用量下的CH4排放量和GWP没有显著性差异,而紫云英还田稻季施氮240 kg·hm-2下的水稻产量却最高.综合经济效益和环境效益,紫云英还田稻季施氮240 kg·hm-2下的增产减排综合效果更好,是值得当地推广的耕作制度.  相似文献   

8.
无公害水稻生产的病虫草调控技术及其效应的研究   总被引:31,自引:2,他引:29  
利用无公害农药和农业措施防治水稻主要病虫草试验结果表明,井·腊芽、井冈霉素和多抗霉素在水稻分蘖末期和孕穗末期各喷施1次,对纹枯病防效达75.16%~94.27%,优于化学杀菌剂三唑酮;春雷霉素和灭瘟素在叶瘟病发生初期及破肚期、齐穗期各喷施1次,对叶瘟防效为50.54%~72.67%,穗瘟为76.66%~87.42%,与化学杀菌剂三环唑相当.3种无公害农药在二化螟和稻纵卷叶螟1~2龄幼虫期使用,苏云金杆菌防效优于化学杀虫剂杀虫双,皂素·烟碱和苦参碱与杀虫双相当;皂素·烟碱和苦参碱在稻飞虱1~2龄若虫期使用,药后3~30d防效均在70%以上,低于化学杀虫剂吡虫啉.在水稻移栽前耕地2次,再配合施用适量的未腐熟有机质或人工除草,能控制杂草发生和提高产量.采用无公害农药和农业措施防治水稻病虫草,产量较常规化防区略有增加,稻谷中农药残留量较化防区低,符合绿色食品卫生指标要求.  相似文献   

9.
通过田间试验,研究了太湖地区不同轮作模式下稻季温室气体排放规律.结果表明: 水稻生长季CH4排放呈先升高后降低趋势,CH4排放主要集中在水稻生育前期,烤田后至水稻收获期间CH4排放量较低;N2O的排放主要集中在3次施肥及烤田期.稻季排放的CH4对全球增温潜势(GWP)的贡献远高于N2O,各处理所占比例为94.7%~99.6%,是温室气体减排的主要对象.不同轮作模式下,稻季CH4排放总量及其GWP存在显著差异,表现为小麦-水稻>紫云英-水稻>休闲-水稻轮作;稻季N2O排放总量及其GWP没有显著性差异.与不施肥处理相比,紫云英-水稻轮作模式下施加氮肥显著降低了CH4排放量和GWP,但不同氮肥用量下的CH4排放量和GWP没有显著性差异,而紫云英还田稻季施氮240 kg·hm-2下的水稻产量却最高.综合经济效益和环境效益,紫云英还田稻季施氮240 kg·hm-2下的增产减排综合效果更好,是值得当地推广的耕作制度.  相似文献   

10.
杀虫剂应用概况   总被引:2,自引:0,他引:2  
<正> 杀虫剂在防治农业和卫生害虫方面发挥着重要作用。随着世界农药需求量的增加,杀虫剂的销售量在不断地增加(见表1):从作物来看,果树、蔬菜、棉花的杀虫剂用量较大(见表2);自从拟除虫菊酯类杀虫剂问世以来,杀虫剂的类型构成亦发生了变化(见表3)。 世界各大农药(化工)公司和研究机构,都比较重视杀虫剂新品种的开发和研究。1982~1984年,有180个杀虫剂新品种进行了试验。其中,有机磷类和氨基甲酸酯类杀虫剂每年都有1~2个新品种问世,而大量的都是新型化学结构的杀虫剂。 本文就近几年来,新型化学结构杀虫剂的  相似文献   

11.
The effect of different pesticides (fungicide, herbicide and insecticide) on the mycelial growth and formation and germination of sclerotia of sheath blight pathogen of rice, Rhizoctonia solani Kühn was studied in nutrient medium and in natural soil. Among the herbicides and insecticides, fenitrothion (insecticide) and thiobencarb (herbicide) were the most effective in inhibiting the mycelial growth and sclerotial formation. These pesticides effected significant inhibition of both mycelialgrowth and sclerotial formation at 7.5 to 10μg/ml concentration while fungicides carbendazim and tolclofosmethyl effected almost complete inhibition at 2.5 μg/ml. Interestingly, a synergistic increase in the toxicity to mycelial growth, sclerotial formation and sclerotial germination was noticed when the fungicide, mancozeb and the herbicide, thiobencarb were applied at subtoxic concentration in combination. Such synergistic interactions between pesticides in a combination leading to increased toxicity suggest that under the current practice of applying fungicides, herbicides and insecticides either simultaneously or in rotation, certain combinations may help in reducing the dose of a fungicide in disease control.  相似文献   

12.
The use of insecticides, herbicides, and fungicides commonly occurs in mixtures in tanks in order to control phytosanitary problems in crops. However, there is no information regarding the effects of these mixtures on non-target organisms associated to the rice agroecosystem. The aim of this study was to know the toxicity of pesticide tank mixtures from rice crops against Telenomus podisi Ashmead (Hymenoptera: Platygastridae). Based on the methods adapted from the International Organisation for Biological and Integrated Control of Noxious Animals and Plants (IOBC), adults of T. podisi were exposed to residues of insecticides, herbicides, and fungicides, individually or in mixture commonly used by growers, in laboratory and on rice plants in a greenhouse. The mixture between fungicides tebuconazole, triclyclazole, and azoxystrobin and the mixture between herbicides cyhalofop-butyl, imazethapyr, imazapyr/imazapic, and penoxsulam are harmless to T. podisi and can be used in irrigated rice crops without harming the natural biological control. The insecticides cypermethin, thiamethoxam, and bifenthrin/carbosulfan increase the toxicity of the mixtures in tank with herbicides and fungicides, being more toxic to T. podisi and less preferred for use in phytosanitary treatments in the rice crop protection.  相似文献   

13.
我国植物源农药研究进展   总被引:9,自引:0,他引:9  
概述了我国植物源农药的主要种类:杀虫剂、杀菌剂、除草剂及病毒抑制剂的研究现状,并简要介绍了植物源农药的作用特点、研究途径及研究中存在的问题,并对其发展前景做了简单的展望。  相似文献   

14.
土壤农药污染和细菌耐药性是环境领域研究的热点问题。近年来,越来越多的研究表明土壤农药污染与细菌农药-抗生素交叉抗性的形成有关。本文依据近年来国内外研究进展,阐述了国内外土壤中农药(杀虫剂、除草剂和杀菌剂)的污染现状,并介绍了细菌对农药的降解及抗性、细菌对抗生素的抗性以及农药-抗生素交叉抗性等问题。最后,对未来有关农药-抗生素交叉抗性的研究重点进行了展望。  相似文献   

15.
Laboratory, semi field and field tests to assess the side effects of 20 pesticides on 19 different beneficial organisms were carried out by members of the Working Group “Pesticides and Beneficial Organisms” of the International Organization for Biological Control (IOBC), West Palearctic Regional Section (WPRS). This 5th joint pesticide testing programme of the working group was carried out by 21 participants in 11 European countries. The pesticides (7 insecticides, 8 fungicides and 5 herbicides), that were chosen for their possible selectivity, were tested according to internationally approved principles. Among the 20 preparations tested, the insecticides Apollo SOSC, Cesar S.L., the fungicides Baycor, Delan flüssig, Vitigran, Impact, Rovral PM, and the herbicides Luxan 2,4-D amine, Ally and Dirigol-N were harmless to nearly all the beneficial organisms tested and are recommended for use in integrated control programmes. The further testing of the remaining 10 preparations is recommended. The activities of the working group to complete the development of urgently needed sequential procedure to test the side effects of pesticides on beneficial organisms based on standard laboratory, semi field and field methods and the need for more international cooperation are discussed.   相似文献   

16.
The objectives of this study were to: (1) evaluate temporal and spatial trends in water quality parameters, physical habitat metrics, and benthic community metrics in the Orestimba Creek from years 2000 to 2005, and (2) assess the relationship of benthic community condition from ten Orestimba Creek stations and both pesticide use at the farm level and physical habitat conditions. Significant year effects were reported for temperature, pH, dissolved oxygen, and turbidity. In general, most of the 17 physical habitat metrics did not show statistical variability over the 6-year period. Most of the benthic metrics were variable over the 6-year period. A total of 41 herbicides, 14 organophosphorus (OP) insecticides, and 5 pyrethroids were applied to 23 sections of land bordering the Orestimba Creek from 2000 to 2004. The OP insecticides showed the strongest relationship to benthic metrics using univariate regression models when all three classes of pesticides were compared; however, these statistical relationships had low R2 values. Stepwise regression analysis showed statistically significant relationships between most benthic metrics and habitat metrics. In general, both pesticide applications and physical habitat have a similar but modest statistical association with benthic communities. However, the relationship of both pesticide applications and physical habitat on benthic communities in the Orestimba Creek appear to be insignificant compared to the magnitude of spatiotemporal patterns reported.  相似文献   

17.
Recent declines in honey bee populations and increasing demand for insect-pollinated crops raise concerns about pollinator shortages. Pesticide exposure and pathogens may interact to have strong negative effects on managed honey bee colonies. Such findings are of great concern given the large numbers and high levels of pesticides found in honey bee colonies. Thus it is crucial to determine how field-relevant combinations and loads of pesticides affect bee health. We collected pollen from bee hives in seven major crops to determine 1) what types of pesticides bees are exposed to when rented for pollination of various crops and 2) how field-relevant pesticide blends affect bees’ susceptibility to the gut parasite Nosema ceranae. Our samples represent pollen collected by foragers for use by the colony, and do not necessarily indicate foragers’ roles as pollinators. In blueberry, cranberry, cucumber, pumpkin and watermelon bees collected pollen almost exclusively from weeds and wildflowers during our sampling. Thus more attention must be paid to how honey bees are exposed to pesticides outside of the field in which they are placed. We detected 35 different pesticides in the sampled pollen, and found high fungicide loads. The insecticides esfenvalerate and phosmet were at a concentration higher than their median lethal dose in at least one pollen sample. While fungicides are typically seen as fairly safe for honey bees, we found an increased probability of Nosema infection in bees that consumed pollen with a higher fungicide load. Our results highlight a need for research on sub-lethal effects of fungicides and other chemicals that bees placed in an agricultural setting are exposed to.  相似文献   

18.
【目的】为明确玉米田中常用杀菌剂和杀虫剂对玉米螟赤眼蜂Trichogramma ostriniae的安全性。【方法】室内用田间推荐剂量在玉米叶片上施用4种杀菌剂(甲基硫菌灵、戊唑醇、叶枯唑和吡唑醚菌酯)以及4种杀虫剂(阿维菌素、氯虫苯甲酰胺、高效氯氰菊酯和吡虫啉),施药后1, 3, 5和7 d调查玉米螟赤眼蜂成虫接触玉米叶片24 h时的死亡率、寄生能力(寄生的麦蛾Sitotroga cerealella卵量)及子代羽化率。【结果】施药后不同时间,不同杀菌剂和杀虫剂对玉米螟赤眼蜂成虫的死亡率、寄生能力和羽化率产生显著影响。4种杀菌剂中,叶枯唑和吡唑醚菌酯对玉米螟赤眼蜂寄生能力持续影响时间长,在施药7 d后,玉米螟赤眼蜂成虫接触含叶枯唑和吡唑醚菌酯残留的玉米叶片24 h时其寄生的麦蛾卵量分别为20.25和20.80粒;戊唑醇对玉米螟赤眼蜂的影响最大,施药7 d后玉米螟赤眼蜂成虫接触含戊唑醇残留的 玉米叶片24 h时子代羽化率为18.48%,施药3 d后接触时死亡率高达37.03%。4种杀虫剂中,阿维菌素和吡虫啉对玉米螟赤眼蜂寄生能力持续影响时间长并且毒性较大,在施药7 d后,玉米螟赤眼蜂成虫接触含阿维菌素和吡虫啉残留的玉米叶片24 h时的寄生的麦蛾卵量为3.43和9.19粒,施药后1-3 d时死亡率分别高达96.21%和74.00%;高效氯氰菊酯对玉米螟赤眼蜂子代羽化的持续伤害时间长,施药7 d后玉米螟赤眼蜂成虫接触含高效氯氰菊酯残留的玉米叶片24 h时的子代羽化率为27.92%。总体来说,4种杀虫剂对玉米螟赤眼蜂的影响较4种杀菌剂大。【结论】田间释放玉米螟赤眼蜂防治玉米螟Ostrinia nubilalis前7 d不建议喷施戊唑醇、叶枯唑和吡唑醚菌酯3种杀菌剂以及阿维菌素和吡虫啉两种杀虫剂,前5 d不建议喷施甲基硫菌灵和高效氯氰菊酯,氯虫苯甲酰胺使用时应该根据该药的田间推荐浓度合理喷施。  相似文献   

19.
A total of 228 pesticides (88 insecticides, 60 fungicides, 62 herbicides, 12 plant-growth regulators, 3 metabolites and 3 other compounds) was tested for mutagenicity in bacterial reversion-assay systems with 5 strains (TA100, TA98, TA1535, TA1537 and TA1538) of Salmonella typhimurium and a strain (WP2 hcr) of Escherichia coli. 50 pesticides (25 insecticides, 20 fungicides, 3 herbicides, 1 plant-growth regulator and 1 other compound) were found to be mutagenic. 5 of them required metabolic activation (S9 mix) for their activities. Among various chemical groups, organic phosphates, halogenated alkanes and dithiocarbamates showed higher ratios of mutagens. Although 22 of the pesticides tested have been reported to be carcinogenic, 7 of them, i.e., captain, DBCP, EDB, EDC, ETU, HEH and nitrofen, were detected as mutagens in the present assay. Most of the other 15 non-mutagenic carcinogens were organochlorine pesticides such as alpha-BHC, chlorobenzilate, p,p'-DDT, dieldrin and quintozene.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号