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41.
喀斯特生态环境治理下土壤保持功能对石漠化的响应机制 总被引:1,自引:0,他引:1
喀斯特地区土壤保持功能是衡量石漠化生态治理成效的重要手段之一,基于InVEST模型,利用"3S"技术对2005、2010、2015年的关岭-贞丰花江示范区的石漠化进行解译,研究石漠化与土壤保持量两者的响应机制。结果表明:(1)2005~2015年石漠化程度总体减缓,面积由3 773.56 hm~2减少至3 474.23 hm~2,土壤保持总量相继上升,从29.29万t提高至37.29万t,2005~2010年单位面积土壤保持增量集中在6~30 t·hm~(-2)·a~(-1),后五年增量在0~6 t·hm~(-2)·a~(-1)。(2)由于土地利用方式、坡度、土层厚度等差异,土壤保持功能并未呈现简单式下降,而是表现为强度中度、轻度潜在、非喀斯特无石漠化。其中轻度与潜在差值最大,可达5.53 t·hm~(-2)·a~(-1),说明了潜在石漠化是今后治理的重点。(3)2005~2010年石漠化恢复型土壤保持增量为10.27 t·hm~(-2)·a~(-1),由于土地利用方式的转变以及治理时效性在2010~2015年降低为3.01 t·hm~(-2)·a~(-1)。稳定型石漠化变化土壤保持变化最为平稳,强度石漠化减缓区土壤保持功能上升快,轻度最为平缓,表明了治理期长且需循序渐进。因而,在治理过程中需考虑不同等级石漠化具有的土壤保持功能特性及其恢复的时效性。 相似文献
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针对石油烃污染土壤成分复杂、污染严重、修复难度高的问题,采用适用性广、效率高且去除彻底的异位热脱附技术修复石油烃污染土壤。利用碳数分段法及室内模拟实验,探究在热脱附过程中的土壤粒径、含水率和有机质对石油烃及各组分热解吸效率的影响;另外,还采用响应面法对各影响因素进行了优化,以获得异位热脱附修复石油烃污染土壤的最优工艺参数。结果表明,当污染土壤粒径高于1 mm时,石油烃脱附效率均可达90%以上,且粒径越大土壤颗粒中石油烃去除率越高。其中,润滑油段(ORO, C28~C40)组分的脱附效率随粒径变化最为明显。当土壤含水率为15%、脱附时间为50 min时,石油烃脱附效率最大为52.63%。另外,土壤中有机质含量越低,越利于石油烃的脱除,且高温(400~500 ℃)条件下可基本消除土壤中高含量有机质(3.82%)对石油烃脱除的阻碍作用。响应面优化实验得到的最佳工艺参数条件为,粒径2 mm、有机质含量1.44%、含水率为17.68%,在此条件下的石油烃脱附去除效率可达65.32%。该研究结果可为热脱附技术在石油烃污染场地的实际应用提供参考。 相似文献
44.
Zhang Yuanjing Chen Lining Cao Shengwei Tian Xia Hu Sihai Mi Xiaohui Wu Yaoguo 《Environmental science and pollution research international》2021,28(9):10552-10563
Environmental Science and Pollution Research - The lack of information on the origin and behavior of iodine in deep groundwater restricts the development and use of groundwater resources. To... 相似文献
45.
Wang Junhong Shao Bin Liu Xianzhao Ji Xiaohui Tian Guanghui Ge Hongguang 《Environmental science and pollution research international》2022,29(32):48348-48357
Environmental Science and Pollution Research - CdS-AgO@g-C3N4 nanocomposites were successfully synthesized and characterized by XRD, N2 physical adsorption, XPS, SEM, TEM, EDX, and UV–Vis DRS... 相似文献
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Cadmium (Cd) distribution and contamination in Chinese paddy soils on national scale 总被引:5,自引:0,他引:5
Xiaojuan Liu Guangjin Tian Dong Jiang Chi Zhang Lingqiang Kong 《Environmental science and pollution research international》2016,23(18):17941-17952
Rice is a staple food by an increasing number of people in China. As more issues have arisen in China due to rice contaminated by cadmium (Cd), Cd contamination in arable soils has become a severe problem. In China, many studies have examined Cd contamination in arable soils on a national scale, but little studies have focused on the distribution of Cd in paddy fields. This study explored the spatial pattern of Cd in paddy soils in China, made a preliminary evaluation of the potential risk, and identified the most critically contaminated regions based on the domestic rough rice trade flow. The results showed that Cd concentrations in paddy soils in China ranged from 0.01 to 5.50 mg/kg, with a median value of 0.23 mg/kg. On average, the highest Cd concentrations were in Hunan (0.73 mg/kg), Guangxi (0.70 mg/kg), and Sichuan (0.46 mg/kg) provinces. Cd concentrations in paddy soils in central and western regions were higher than those in eastern regions, especially the southeastern coastal regions. Of the administrative regions, Cd standard exceedance rate was 33.2 %, and the heavy pollution rate was 8.6 %. Regarding to Cd of paddy soil, soil environmental quality was better in Northeast China Plain than in Yangtze River Basin and southeastern coastal region. Mining activities were the main anthropogenic pollution source of Cd in Chinese paddy soil. Based on rice trade, more of the Chinese population would be exposed to Cd through intake of rice produced in Hunan province. Certain regions that output rice, especially Hunan province, should be given priority in the management and control of Cd contamination in paddy soil. 相似文献
49.
Research and application of method of oxygen isotope of inorganic phosphate in Beijing agricultural soils 总被引:1,自引:0,他引:1
Liyan Tian Qingjun Guo Yongguan Zhu Huijun He Yunchao Lang Jian Hu Han Zhang Rongfei Wei Xiaokun Han Marc Peters Junxing Yang 《Environmental science and pollution research international》2016,23(23):23406-23414
Phosphorus (P) in agricultural ecosystems is an essential and limited element for plants and microorganisms. However, environmental problems caused by P accumulation as well as by P loss have become more and more serious. Oxygen isotopes of phosphate can trace the sources, migration, and transformation of P in agricultural soils. In order to use the isotopes of phosphate oxygen, appropriate extraction and purification methods for inorganic phosphate from soils are necessary. Here, we combined two different methods to analyze the oxygen isotopic composition of inorganic phosphate (δ18OP) from chemical fertilizers and different fractions (Milli-Q water, 0.5 mol L?1 NaHCO3 (pH = 8.5), 0.1 mol L?1 NaOH and 1 mol L?1 HCl) of agricultural soils from the Beijing area. The δ18OP results of the water extracts and NaHCO3 extracts in most samples were close to the calculated equilibrium value. These phenomena can be explained by rapid P cycling in soils and the influence of chemical fertilizers. The δ18OP value of the water extracts and NaHCO3 extracts in some soil samples below the equilibrium value may be caused by the hydrolysis of organic P fractions mediated by extracellular enzymes. The δ18OP values of the NaOH extracts were above the calculated equilibrium value reflecting the balance state between microbial uptake of phosphate and the release of intracellular phosphate back to the soil. The HCl extracts with the lowest δ18OP values and highest phosphate concentrations indicated that the HCl fraction was affected by microbial activity. Hence, these δ18Op values likely reflected the oxygen isotopic values of the parent materials. The results suggested that phosphate oxygen isotope analyses could be an effective tool in order to trace phosphate sources, transformation processes, and its utilization by microorganisms in agricultural soils. 相似文献
50.
秸秆是重要的沼气工程原料,秸秆预处理对其后续厌氧消化效率影响巨大。采用田间裹包青贮方法,设计3因素正交实验,考察了秸秆含水率、压缩比和添加剂对玉米秸秆发酵时间和厌氧消化产沼气的影响。结果表明:秸秆经过裹包青贮,发酵总时间(total fermentation time,TFT)减少1~2 d,累积产气量达到总产气量的90%所用时间(TFT90%)减少了40%~50%,消化效率明显提高;秸秆含水率对产气效果有明显影响,随着含水率增加,单位总固体(total solid,TS)累计产气量(cumulative biogas yields per TS,CBYT)和沼气日产率(biogas yields rate average day,BYR)由高到低排序为:35%~40%,40%~45%,30%~35%;秸秆压缩比对产气效果有明显影响,随着压缩比的增加,其对CBY和BYR的效应由高到低排序为:185、143与138 kg/m3;添加剂类型对产气效果亦有明显影响,在不同添加剂处理下,其对CBYT和BYR的效应由高到低排序为:尿素处理>甲酸处理>无添加剂处理;正交实验极差分析表明,对CBYT和BYR的影响排序为:含水率﹥压缩比﹥添加剂,其田间裹包青贮进行厌氧发酵的优化组合为:青贮秸秆含水率为35%~40%,压缩比为185 kg/m3,添加剂为营养型,青贮20 d,CBYT和BYR达到最大,分别为646.57 mL/g和173.25 mL/(d·g)。 相似文献