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211.
212.
中国水稻土碳循环研究进展 总被引:9,自引:1,他引:9
文章首先分析了水稻土在碳循环研究中的地位和重要性,进而对我目水稻土碳循环的研究现状作了较为详尽的阐述,对其主要研究结论进行了深入的剖析。中国大而积的水稻土自1980年以来显示出有机碳库增加现象,说明水稻田对大气CO2可能产生汇效应。水耕熟化过程足有机碳的积累过程,水稻土的碳密度是早作土碳密度的2-3倍。水稻土的同碳能力与土壤的微团聚体的粒径有关。但对于水稻土中有机碳的分布和结合状态与农业管理措施、水稻土质量变化、农业生态环境变化的关系仍不清楚。因而建议就这一问题从土壤物理学、化学和生物学的相互作朋与土壤微团聚体中矿物质、有机质和微生物的相互结合关系的层面上进行多学科研究。同时提出了今后我困水稻土碳循环的重点研究方向和领域,即从整体和系统的角度来研究碳循环和平衡,从不同的时空区域来研究碳循环的过程和强度。 相似文献
213.
Fenton氧化法修复石油污染土壤的研究进展 总被引:1,自引:0,他引:1
传统的Fenton氧化法(Fe2+/H2O2)因反应速度过快、需要定期补充Fe2+、控制pH值≤3等方面的限制而影响到石油烃类污染土壤的修复效果.本文综述了近年来Fenton反应中氧化剂、催化剂的改进及其对土壤中石油污染物的去除效率,揭示了土壤性质、反应条件、污染物结构及非均相催化剂比表面积等因素对去除效率的影响,介绍了超声波前置处理后,Fenton试剂与土壤上解吸的石油污染物接触几率的增加及石油烃类可生物降解性的提高,促进了微生物的后续处理效果,并对该领域的研究趋势进行了展望. 相似文献
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A meta-analysis of heavy metals pollution in farmland and urban soils in China over the past 20 years 总被引:3,自引:0,他引:3
A total of 713 research papers about field monitor experiments of heavy metals in farmland and urban soils in China, published from 2000 to 2019, were obtained. A meta-analysis was conducted to evaluate the level of China's heavy metal pollution in soils, mainly focusing on eight heavy metals. It was found that the average concentrations of cadmium (Cd), lead (Pb), zinc (Zn), copper (Cu), mercury (Hg), chromium (Cr), nickel (Ni), and arsenic (As) in China were 0.19, 30.74, 85.86, 25.81, 0.074, 67.37, 27.77 and 8.89 mg/kg, respectively. Compared with the background value (0.097 mg/kg), the Cd content showed a twofold (0.19 mg/kg) rise in farmland soils and a threefold (0.29 mg/kg) rise in urban soils. The decreasing order of the mean Igeo was Cd (1.77) > Pb (0.62) > Zn (0.60) > Cu (0.58) > Hg (0.57) > Cr (0.54) > Ni (0.47) > As (0.28). Nearly 33.54% and 44.65% of sites in farmland and urban soils were polluted with Cd. The average concentrations of eight heavy metals were not sensitive change in recent two decades in farmland and urban soils. The average Pn values for urban (2.52) and farmland (2.15) soils showed that heavy metal pollution in urban soils was more serious than that in farmland, and the middle Yangtze River regions, where industrial activity dominates, were the most polluted. The meta-analysis comprehensively evaluated the current pollution situation of soil heavy metal, and provided important basis for soil management and environment prevention in China. 相似文献
216.
通过稳定化实验、连续提取实验及植物毒性实验,研究了沼渣对硫酸亚铁稳定化Cr (Ⅵ)污染土壤的促进效果与机制.结果表明,沼渣协同硫酸亚铁对土壤中Cr (VI)有良好的稳定化效果.最佳的修复条件为:n(Fe)/n(Cr)=3∶1,含水率为35%,沼渣投加量为4.5%,反应时间为12 d,此时Cr (VI)稳定化效率为99.85%,残余六价铬含量为1.49 mg·kg-1,满足《土壤环境质量建设用地土壤污染风险管控标准》(GB 36600—2018)第二类用地筛选值5.7 mg·kg-1的限值要求.由连续提取实验结果可知,沼渣+硫酸亚铁稳定化处理后酸溶态铬含量显著降低,而可还原态、可氧化态和残渣态铬含量明显增加.风险分析进一步表明,沼渣+硫酸亚铁稳定化处理后铬的风险等级由非常高风险降至低风险.植物毒性分析可知,沼渣+硫酸亚铁稳定化处理植物毒性显著降低.微生物多样性和群落结构分析可知,沼渣+硫酸亚铁稳定化处理后土壤中细菌群落的丰度和多样性均明显增加. 相似文献
217.
采用序批实验和并行解吸法,研究了添加和不添加Na2SiO3两种情况下,非离子表面活性剂和阴/非离子混合表面活性剂对污染老化土壤中α-、β-硫丹的洗脱效果与动力学特征.结果表明,不添加Na2SiO3时,α-、β-硫丹的洗脱率顺序为Tween80/SDS>Tween 80>Triton X-100.Triton X-100/SDS在100~500 mg·L-1和800~1 000 mg·L-1时的洗脱率分别低于和高于相应浓度的Triton X-100;添加Na2SiO3后,硫丹的洗脱率顺序为Tween 80/SDS>Tween 80>Triton X-100/SDS>Triton X-100,4种洗脱模式对硫丹的洗脱能力均显著提高,其中α-硫丹的洗脱率分别是不加Na2SiO3的1.17~2.73、1.87~4.02、1.85~6.56和1.87~2.85倍.硫丹的洗脱过程可用4参数2室一级动力学模型描述,存在明显的快速洗脱和慢速洗脱阶段;β-硫丹的洗脱速率和洗脱率均低于相应处理的α-硫丹,表明β-硫丹较难从土壤中洗脱;添加Na2SiO3可增大硫丹的快速和慢速洗脱速率常数,减少慢速洗脱的百分率.与其它洗脱模式比较,添加Na2SiO3的Tween 80/SDS能够高效、快速洗脱污染土壤中的硫丹,是一种优良的混合洗脱剂. 相似文献
218.
All the regulations that define a maximum concentration of metals in the receiving soil are based on total soil metal concentration. However, the potential toxicity of a heavy metal in the soil depends on its speciation and availability. We studied the effects of heavy metal speciation and availability on soil microorganism activities along a Cu/Zn contamination gradient. Microbial biomass and enzyme activity of soil contaminated with both Cu and Zn were investigated. The results showed that microbial biomass was negatively affected by the elevated metal levels. The microbial biomass-C (Cmic)/organic C (Corg) ratio was closely correlated to heavy metal stress. There were negative correlations between soil microbial biomass, phosphatase activity and NH4NO3 extractable heavy metals. The soil microorganism activity could be predicted using empirical models with the availability of Cu and Zn. We observed that 72% of the variation in phosphatase activity could be explained by the NH4NO3-extractable and total heavy metal concentration. By considering different monitoring approaches and different viewpoints, this set of methods applied in this study seemed sensitive to site differences and contributed to a better understanding of the effects of heavy metals on the size and activity of microorganisms in soils. The data presented demonstrate the relationship between heavy metals availability and heavy metal toxicity to soil microorganism along a contamination gradient. 相似文献
219.
A pot experiment was conducted to investigate the influence of elemental sulfur to contaminated soil on plant uptake by a heavy metal hyperaccumulator, Indian mustard( Brassica juncea ) and a field crop, winter wheat( Triticum. aestivum). Elemental sulfur(S) with different rates was carried out, they were 0(S0 ), 20(S20 ), 40(S40 ), 80(S80 ), and 160(S160 ) mmol/kg respectively. Extra pots with the same rates of S but without plants were used for soil sampling to monitor pH and CaCl2-extractable heavy metal changes. The results showed that S enhanced phytoextraction of Pb and Zn from contaminated soil. Application S effectively decreased soil pH down to 1.1 as the most at the rate of Sl60. The concentrations of CaCl2-extractable Pb and Zn in soil and uptake of Pb and Zn by the plants were increased with soil pH decreased. A good correlation between CaCl2-extractable Pb/Zn and soil pH was found( Rpb^2 = 0.847 and RZn^2 = 0,991, n = 25). With S application, soil CaCl2-extractable Pb and Zn concentrations, concentration of Pb and Zn in plants and the amount of removal by plant uptake were significanfly higher than those without S. Under the treatment of S160, the highest CaCl2-extmctable Pb and Zn were observed, they were 4.23 mg/kg and 0.40 mg/kg, 2.7 and 2.0 times as that of the control(So ) respectively. At the highest rates of S( Sl~0 ), both Indian mustard and winter wheat reached the highest uptake of Pb and Zn. The highest Pb concentrations in wheat and Indian mustard were 32.8 mg/kg and 537.0 mg/kg, all 1.8 times as that of the control, and the highest Zn concentrations in wheat and Indian mustard were 215.5 mg/kg and 404.0 mg/kg, 2.4 and 2.0 times as that of the control respectively. The highest removals of Pb and Zn from the contaminated soil were 0.41 rag/pot and 0.31 nag/pot by Indian mustard in the treatment of S160 through 50 days growth. 相似文献
220.
太湖地区3种水稻土不同温度培养中有机碳库变化及其对升温的响应 总被引:17,自引:1,他引:17
全球变暖下土壤有机碳储存的变化是土壤与全球变化研究的热点问题.本研究选择了3种太湖地区代表性水稻土的表层土壤,分别进行20℃和25℃的室内恒温培养,监测培养过程中总有机碳、溶解性有机碳和微生物量碳的变化动态,试图了解这些土壤的有机碳分解过程对全球变暖的响应特点.结果表明,这些土壤培养中总有机碳变化可以用一级衰变动力学方程或对数衰减方程描述,但动力学特征依培养温度的不同而异.升温大大促进了铁渗水耕人为土和潜育水耕人为土中有机碳的分解与呼吸损失,而铁聚水耕人为土没有显著变化.供试土壤总有机碳损失的Q10系数分别为:潜育水耕人为土(11.1~14.1)>铁渗水耕人为土(4.4~6.4)>铁聚水耕人为土(0.63~0.73).这一方面说明温度敏感性在同一地带的不同土壤间的差异超过文献上报道的不同气候带的差异,但另一方面揭示了水稻土可能是一类对全球升温敏感响应的人为土.溶解性有机碳和微生物量的碳的变化还提示不同温度培养下水稻土微生物群落结构可能改变,因而影响到土壤有机碳库的生物有效性在温度条件下的变化.可以认为,土壤升温下有机碳的变化不但与土壤有机碳的性质有关,而且与土壤性质控制下的生物条件的改变有关.故土壤升温下有机碳的损失不仅仅是温度对分解过程的反应速度的影响.当然,对于不同土壤间的这种差异还需从有机碳-土壤环境-土壤生物的相互关系上做进一步的工作. 相似文献