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旱耕人为土N_2O排放动力学特征及其影响因素 被引量:3
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作者 白红英 耿增超 张一平 《西北农林科技大学学报(自然科学版)》 CSCD 北大核心 2003年第2期84-88,共5页
以黄土高原南部典型旱耕地—休闲地土壤为对象 ,研究了中等水分条件下 (6 5 %的田间持水量 )土壤 N2 O排放的动力学特征 ,以及土壤深度和氮磷营养因子对 N2 O排放量的影响。结果表明 ,施肥和未施肥处理 ,土壤 N2 O排放累积量随时间 t的... 以黄土高原南部典型旱耕地—休闲地土壤为对象 ,研究了中等水分条件下 (6 5 %的田间持水量 )土壤 N2 O排放的动力学特征 ,以及土壤深度和氮磷营养因子对 N2 O排放量的影响。结果表明 ,施肥和未施肥处理 ,土壤 N2 O排放累积量随时间 t的变化均符合修正的 Elovich方程 y=bln(t) +a。反应初始浓度 (a)和表观反应速率(dy/ dt)大多数随土壤深度增加而递增 ,但 15℃时以 10 cm深处反应初始浓度最大 ;2 5℃时 ,表观反应速率以 15cm深处最高 ,即在中等水分条件下 ,随温度升高 ,试验土壤 10~ 15 cm深处为 N2 O产生的活跃场所。磷素对土壤N2 O的减排效应不仅表现在排放总量上 ,也存在于动力学参数初始浓度和表观反应速率之中。 展开更多
关键词 氧化二氮 排放动力学 农田生态系统 耕层土壤 旱耕人为土壤 影响因素 反应初始浓度 表观反应速率
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Degradation of chlorothalonil by ultrasonic irradiation:Kinetics and impact factors 被引量:2
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作者 郭洪光 高乃云 +2 位作者 黎雷 金玄雄 陈喆 《Journal of Central South University》 SCIE EI CAS 2011年第4期1068-1073,共6页
Factors on degradation of chlorothalonil(CLT) in water by high frequency ultrasonic irradiation were investigated.The effects of initial concentration of chlorothalonil,dosages of tertiary butyl alcohol,humic acid and... Factors on degradation of chlorothalonil(CLT) in water by high frequency ultrasonic irradiation were investigated.The effects of initial concentration of chlorothalonil,dosages of tertiary butyl alcohol,humic acid and initial pH value on degradation of chlorothalonil,as well as the reaction mechanism were studied.The results reveal that chlorothalonil could be effectively degradated by ultrasonic irradiation.The reaction constant value kapp decreased from 0.014 1 to 0.010 2 min-1 with the initial concentration increasing from 50 to 400 μg/L during 180 min irradiation.Tertiary butyl alcohol had negative effect on chlorothalonil degradation,while lower concentration of humic acid promoted the sonolysis,and kapp declined with the further concentration increasing.The kapp varied little when the pH value ranged from 3.10 to 10.28.It may be concluded that mechanical and pyrolysis process played main roles on the degradation of chlorothalonil in ultrasonic irradiation rather than ·OH attack.The electrical energy per order(EEo) values for sonolysis degradation of CLT were also calculated to evaluate the cost of the process. 展开更多
关键词 ultrasonic irradiation CHLOROTHALONIL KINETICS impact factors
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