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71.
双季稻田CH4和N2 O排放特征及品种筛选研究 总被引:1,自引:1,他引:0
通过大田小区实验,采用静止箱-气相色谱法对早晚两季水稻品种CH4与N2O排放通量进行了观测.结果表明,早稻CH4排放季节变化呈单峰模式,N2O排放呈双峰模式;晚稻CH4与N2O排放季节变化均呈单峰模式.CH4、N2O季节平均排放通量品种间均存在显著差异(P<0.05).早稻品种CH4、N2O季节平均排放通量极差分别为0.58 mg.(m2.h)-1、5.89μg.(m2.h)-1,晚稻为4.06 mg.(m2.h)-1、5.70μg.(m2.h)-1;早稻品种温室气体排放的增温潜势、单位产量增温潜势极差分别为2.92 kg.hm-2、0.097 kg.kg-1,晚稻分别为2 256 kg.hm-2、0.28 kg.kg-1.增温潜势、单位产量增温潜势比较,常规稻>超级杂交稻>杂交稻.早稻无水稻种植区CH4、N2O季节排放通量分别是水稻种植区的27.1%~31.8%、33.6%~88.3%;晚稻分别是23.8%~28.8%、38.6%~45.3%.早稻适宜种植品种为陆两优819、金优402、湘早籼24号,晚稻品种为岳优9113、湘晚籼12号. 相似文献
72.
氟虫双酰胺在水稻和稻田中的残留动态研究 总被引:1,自引:0,他引:1
采用超高效液相色谱法(UPLC)测定了氟虫双酰胺19.8%悬浮剂(SC)在水稻及稻田环境中的残留动态.结果表明,当氟虫双酰胺及其代谢产物NNI-des-iodo的添加量为0.05~1.0 mg·kg-1时,其在水稻田土壤、田水、稻秆、稻米和稻壳中的平均回收率为78.2%~104.8%,变异系数为1.1%~4.4%.氟虫双酰胺在2011年三地(福建福州、天津、江苏南京)的稻田水中的降解半衰期为9.8~17.3 d,土壤中10.8~22.4 d,植株中7.6~17.3 d,其在稻田水样品中检出了代谢产物NNI-des-iodo,而在土壤和植株样品中未检出.在推荐使用剂量下,于末次施药10 d后,氟虫双酰胺在水稻稻米中的残留量均低于美国规定的在稻谷上的最大残留允许量(0.5 mg·kg-1). 相似文献
73.
为了研究污水灌渠侧渗对土壤的影响,采用气相色谱-电子捕获检测器(GC-ECD)方法对太原市小店污灌区9个剖面土和2个灌溉污水样进行有机氯化合物(OCPs)分析.结果表明退水渠中有机氯农药主要由六六六(HCHs)组成,滴滴涕(DDTs)及其它有机氯农药含量较低或未检出,在8个离渠较近剖面的地表土中ΣOCPs和HCHs含量一定程度上符合随垂直于渠的直线距离增加而逐步降低的趋势,表明污水渠侧渗对土壤存在着一定影响.8个剖面土壤中的HCHs含量随着深度的增加而降低,在水平方向上,同一深度土壤中的HCHs含量也沿远离渠的直线方向逐步递减.研究区土壤中HCHs含量与TOC之间存在较为显著的正相关性,而与pH之间不存在相关性. 相似文献
74.
研究了有机凹凸棒土对人工模拟地下水中PCE和Cr6+两者复合污染的吸附行为。分别探讨了振荡吸附时间、凹土投加量、pH值对添加了重金属Cr6+前后凹土吸附PCE效果的影响;通过凹土对PCE的吸附等温线,讨论其吸附的内在机理。结果表明:有机凹土对TCE的吸附10min内达到平衡,吸附率达63.5%,而铬离子存在时吸附率下降至38.2%;当凹土加入量为15.38g/L时,吸附率可达62.8%,铬离子存在时,达到饱和所需的凹土量增加。PCE单组分在有机凹土上的吸附符合langmuir等温式。PCE和Cr(Ⅵ)经复合之后,PCE的吸附效果有所下降,吸附过程采用langmuir及freundlich等温式拟合均不够准确。 相似文献
75.
Cr(Ⅲ) adsorption by biochars generated from peanut, soybean, canola and rice straws is investigated with batch methods. Adsorption of Cr(Ⅲ) increased as pH rose from 2.5 to 5.0. Adsorption of Cr(Ⅲ) led to peak position shifts in the FFIR-PAS spectra of the biochars and made zeta potential values less negative, suggesting the formation of surface complexes between Cr^3+ and functional groups on the biochars. The adsorption capacity of Cr(Ⅲ) followed the order: peanut straw char 〉 soybean straw char 〉 canola straw char 〉 rice straw char, which was consistent with the content of acidic functional groups on the biochars. The increase in Cr^3+ hydrolysis as the pH rose was one of the main reasons for the increased adsorption of Cr(Ⅲ) by the biochars at higher pH values. Cr(llI) can be adsorbed by the biochars through electrostatic attraction between negative surfaces and Cr^3+, but the relative contribution of electrostatic adsorption was less than 5%. Therefore, Cr(Ⅲ) was mainly adsorbed by the biochars through specific adsorption. The Langumir and Freundlich equations fitted the adsorption isotherms well and can therefore be used to describe the adsorption behavior of Cr(Ⅲ) by the crop straw biochars. The crop straw biochars have great adsorption capacities for Cr(Ⅲ) under acidic conditions and can be used as adsorbents to remove Cr(Ⅲ) from acidic wastewaters. 相似文献
76.
对十六烷基三甲基溴化铵改性凹凸棒土、凹凸棒土负载TiO2采用XRD、FTIR以及TG等手段进行了分析和表征,对比了改性凹凸棒土、活性炭、大孔树脂等不同吸附剂和凹凸棒土负载TiO2对二硝基联苄生产废水的处理效果。结果表明:十六烷基三甲基溴化铵改性凹凸棒土的废水中污染物的去除率比凹凸棒土提高了2.5倍;凹凸棒土负载TiO2在波长λ=254 nm下光照0.5 h,对废水中污染物的去除率是凹凸棒土的2.0倍;投加量为3%活性炭在pH为2.05.0时,对该类废水中污染物的去除率可达80%以上。 相似文献
77.
78.
水稻重金属生态毒性诊断研究进展 总被引:1,自引:0,他引:1
从植物生态毒理学的角度,结合国内外研究成果,阐述了单一重金属和复合重金属在水稻中的生态毒性诊断研究进展,提出今后可以考虑追踪重金属在水稻中的运动规律,探讨复合污染对水稻的生态毒性. 相似文献
79.
Topsoil organic carbon mineralization and CO2 evolution of three paddy soils from South China and the temperature dependence 总被引:11,自引:0,他引:11
Carbon mineralization and its response to climatic warming have been receiving global attention for the last decade. Although the virtual influence of temperature effect is still in great debate, little is known on the mineralization of organic carbon (SOC) of paddy soils of China under warming. SOC mineralization of three major types of China's paddy soils is studied through laboratory incubation for 114 d under soil moisture regime of 70% water holding capacity at 20℃ and 25℃ respectively. The carbon that mineralized as CO2 evolved was measured every day in the first 32 d and every two days in the following days. Carbon mineralized during the 114 d incubation ranged from 3.51 to 9.22 mg CO2-C/gC at 20℃ and from 4.24 to 11.35 mg CO2-C/gC at 25℃ respectively; and a mineralizable C pool in the range of 0.24 to 0.59 gC/kg, varying with different soils. The whole course of C mineralization in the 114 d incubation could be divided into three stages of varying rates, representing the three subpools of the total mineralizable C: very actively mineralized C at 1-23 d, actively tnineralized C at 24--74 d and a slowly mineralized pool with low and more or less stabilized C mineralization rate at 75-114 d. The calculated Q10 values ranged from 1.0 to 2.4, varying with the soil types and N status. Neither the total SOC pool nor the labile C pool could account for the total mineralization potential of the soils studied, despite a well correlation of labile C with the shortly and actively mineralized C, which were shown in sensitive response to soil warming. However, the portion of microbial C pool and the soil C/N ratio controlled the C mineralization and the temperature dependence. Therefore, C sequestration may not result in an increase of C mineralization proportionally. The relative control of C bioavailability and microbial metabolic activity on C mineralization with respect to stabilization of sequestered C in the paddy soils of China is to be further studied. 相似文献
80.
Jinfei Feng Yinxi Wang Jian Zhao Liqun Zhu Xinmin Bian Weijian Zhang 《环境科学学报(英文版)》2011,23(7):1158-1164
Air and soil pollution from traffic has been considered as a critical issue to crop production and food safety, however, few efforts have
been paid on distinguish the source origin of traffic-related contaminants in rice plant along highway. Therefore, we investigated metals
(Pb, Cd, Cr, Zn and Cu) concentrations and stable Pb isotope ratios in rice plants exposed and unexposed to highway traffic pollution
in Eastern China in 2008. Significant differences in metals concentrations between the exposed and unexposed plants existed in leaf for
Pb, Cd and Zn, in stem only for Zn, and in grain for Pb and Cd. About 46% of Pb and 41% of Cd in the grain were attributed to the
foliar uptake from atmosphere, and there were no obvious contribution of atmosphere to the accumulations of Cr, Zn and Cu in grain.
Except for Zn, all of the heavy metals in stem were attributed to the root uptake from soil, although significant accumulations of Pb and
Cd from atmosphere existed in leaf. This indicated that different processes existed in the subsequent translocation of foliar-absorbed
heavy metals between rice organs. The distinct separation of stable Pb isotope ratios among rice grain, leaf, stem, soil and vehicle
exhaust further provided evidences on the different pathways of heavy metal accumulation in rice plant. These results suggested that
further more attentions should be paid to the atmospheric deposition of heavy metals from traffic emission when plan crop layout for
food safety along highway. 相似文献