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21.
Effects of sludge utilization on the mobility and phytoavailability of heavy metals in soil-plant systems have attracted broad attention in recent years. In this study, we analyzed the effects of municipal sludge compost(MSC) on the solubility and plant uptake of Cd, Ni, Cu, Zn and Pb in a soil-potato system to explore the mobility, potato plant uptake and enrichment of these five heavy metals in sierozem soils amended with MSC through a potato cultivation trial in Lanzhou University of China in 2014. Ridge regression analysis was conducted to investigate the phytoavailability of heavy metals in amended soils. Furthermore, CaCl_2, CH_3 COONH_4, CH_3COOH, diethylene triamine pentacetic acid(DTPA) and ethylene diamine tetraacetic acid(EDTA) were used to extract the labile fraction of heavy metals from the amended soils. The results show that the MSC could not only improve the fertility but also increase the dissolved organic carbon(DOC) content of sierozem soils. The total concentrations and labile fraction proportions of heavy metals increase with increasing MSC percentage in sierozem soils. In amended soils, Cd has the highest solubility and mobility while Ni has the lowest solubility and mobility among the five heavy metals. The MSC increases the concentrations of heavy metals in the root, stem, peel and tuber of the potato plant, with the concentrations being much higher in the stem and root than in the peel and tuber. Among the five heavy metals, the bioconcentration factor value of Cd is the highest, while that of Ni is the lowest. The complexing agent(DTPA and EDTA) extractable fractions of heavy metals are the highest in terms of phytoavailability. Soil properties(including organic matter, p H and DOC) have important impacts on the phytoavailability of heavy metals. Our results suggest that in soil-potato systems, although the MSC may improve soil fertility, it can also increase the risk of soils exposed to heavy metals.  相似文献   
22.
Field experiments were conducted to study soil properties, soil enzymes activities, water use efficiency (WUE) and crop productivity after six years of soya bean straw mulching in the semi‐arid conditions of China. The experiment included four treatments: CK (Control), N (240 kg N ha‐1), H (soya bean straw mulching at half rate 700 kg ha‐1 with 240 kg N ha‐1) and F (soya bean straw mulching at full rate 1,400 kg ha‐1 with 240 kg N ha‐1). Soil organic carbon (SOC), soil labile organic carbon (LOC), soil available N (AN), available P (AP) and enzyme activities were analysed after wheat harvesting in 2016 and 2017. Results show that straw amounts had positive effects on the soil fertility indices being higher for treatment F. The SOC, LOC, AN, AP and enzyme activities (i.e. saccharase, urease and alkaline phosphatase) were in the order of F > H > N > CK. High wheat grain yield and WUE were observed for F treatment. A total of six years mulching along with 240 kg ha‐1 nitrogen fertilizer application is sufficient for wheat yield stability and improving soil properties except urease activities in the semi‐arid condition of China. However, the straw mulching amount should be further studied with minimum nitrogen fertilizer for an environment‐friendly and effective approach for improving the soil biological properties with adequate crop production on a sustainable basis in the semi‐arid region of China.  相似文献   
23.
The health of the pond environment in shrimp farming is important for sustainable and profitable aquaculture, in which sediment–water interface is the most important influencing area. With this objective, the key parameters of water and sediment at the interface was studied in shrimp ponds with varying salinities and compared with the surface water and soil to understand the variations and the underlying causes. Total ammonia nitrogen and total alkalinity were higher in water at the interface as compared to surface water, whereas pH, nitrite, oxide forms of nitrogen (NO3), phosphorus (PO4) and oxidizing bacteria were observed to be lower. There was no significant difference with respect to macrominerals such as sodium, potassium, calcium and magnesium between water at the interface and surface. These changes are profoundly influenced by the uppermost 1.0‐cm thick sediment layer, where the maximum transition of nutrients takes place with the water column. The outcome of the study highlights the effectiveness of water sampling for metabolites at the interface, which reflects at an early stage any potential deterioration of pond environment, which will help the farmer to initiate timely mitigation measures.  相似文献   
24.
The double-rice cropping system is a very important intensive cropping system for food security in China. There have been few studies of the sustainability of yield and accumulation of soil organic carbon(SOC) in the double-rice cropping system following a partial substitution of chemical fertilizer by Chinese milk vetch(Mv). We conducted a 10-year(2008–2017) field experiment in Nan County, South-Central China, to examine the double-rice productivity and SOC accumulation in a paddy soil in response to different fertilization levels and Mv application(22.5 Mg ha~(–1)). Fertilizer and Mv were applied both individually and in combination(sole chemical fertilizers, Mv plus 100, 80, 60, 40, and 0% of the recommended dose of chemical fertilizers, labeled as F100, MF100, MF80, MF60, MF40, and MF0, respectively). It was found that the grain yields of double-rice crop in treatments receiving Mv were reduced when the dose of chemical fertilizer was reduced, while the change in SOC stock displayed a double peak curve. The MF100 produced the highest double-rice yield and SOC stock, with the value higher by 13.5 and 26.8% than that in the F100. However, the grain yields increased in the MF80(by 8.4% compared to the F100), while the SOC stock only increased by 8.4%. Analogous to the change of grain yield, the sustainable yield index(SYI) of double rice were improved significantly in the MF100 and MF80 compared to the F100, while there was a slight increase in the MF60 and MF40. After a certain amount of Mv input(22.5 Mg ha~(–1)), the carbon sequestration rate was affected by the nutrient input due to the stimulation of microbial biomass. Compared with the MF0, the MF100 and MF40 resulted in a dramatically higher carbon sequestration rate(with the value higher by 71.6 and 70.1%),whereas the MF80 induced a lower carbon sequestration rate with the value lower by 70.1% compared to the MF0. Based on the above results we suggested that Mv could partially replace chemical fertilizers(e.g., 40–60%) to improve or maintain the productivity and sustainability of the double-rice cropping system in South-Central China.  相似文献   
25.
科尔沁草甸湿地土壤碳氮剖面分布及生长季动态特征   总被引:1,自引:0,他引:1  
采用定位观测的试验方法,于2016年5-10月及2017年8月对科尔沁草甸湿地0~100 cm土层土壤有机碳、全氮剖面分布及生长季动态特征进行了实验分析,旨在为科尔沁草甸湿地保护提供科学指导并为干旱半干旱地区湿地土壤碳氮储量估算提供借鉴。结果表明:1)科尔沁草甸湿地土壤有机碳、全氮含量整体随土层深度下降,0~20 cm土层间下降显著,20 cm以下趋于相对稳定,范围分别为11.9~23.5 g·kg-1和0.66~1.50 g·kg-1。2)各土层土壤碳氮含量月间差异显著(全氮40~60 cm土层除外),变化幅度随土层深度先减小后增大;土壤碳氮密度(100 cm)生长季变化大于年际变化,有机碳密度全生长季呈上升趋势,范围为15.44~20.82 kg·m-2,全氮密度生长初期明显下降,之后趋于相对稳定,范围为1.01~1.16 kg·m-2。3)土壤有机碳含量与全氮含量呈极显著正相关;植被和水文是影响其分布、变化的关键因子。科尔沁草甸湿地生长季土壤有机碳、全氮密度变化较大,且表现为潜在的碳汇和氮源,但年际间碳汇潜力未充分发挥,本研究建议禁牧力度应加大并增加氮肥投入以提高科尔沁草甸湿地生态系统功能。  相似文献   
26.
蚯蚓养殖对幼龄胶园土壤养分及橡胶树根系生长的影响   总被引:1,自引:0,他引:1  
本研究旨在探讨林下蚯蚓养殖对幼龄胶园土壤养分及橡胶树根系生长的影响。以牛粪作为原料,于 2017年4—11 月在 4 年生幼龄胶园铺设粪垄养殖蚯蚓,并测定土壤养分和根系生长情况。结果表明,与对照(CK)相比,铺设粪垄无蚯蚓养殖(WQ)和铺设粪垄蚯蚓养殖(Q)处理总体上可显著提高土壤硝态氮、速效磷、速效钾和土壤水分含量以及土壤 pH,而对土壤铵态氮、有机质、微生物活性及微生物群系数量无显著影响(p<0.05);和 CK 相比,WQ和 Q 处理显著促进根的生长,并提高吸收根的比例(p<0.05)。综上所述,在幼龄胶园养殖蚯蚓短期内(半年)可提高土壤速效养分含量,促进根系生长。  相似文献   
27.
李美琪  贾小卫  郭蕊  吴丹  刘浩 《绿色科技》2020,(6):34-37,42
利用FNL再分析资料、卫星资料和自动站资料对2019年7月22~23日京津冀一次区域性暴雨过程进行了环流形势、卫星云图、动热力结构的分析。结果表明:此次暴雨发生在500hPa两槽一脊、副热带高压北抬、低空急流的大尺度环流背景下。西南方向的水汽输送和黄渤海的补充水汽为暴雨提供了良好的水汽条件,在河北中部的水汽辐合抬升则为暴雨提供了抬升条件。此次暴雨的产生受中尺度对流云团的连续生成合并影响,降水效率高。在暴雨中心整层表现为低层辐合、高层辐散,上升速度中心明显,使得高层的抽吸作用更强,更有利于上升运动的维持与发展,为降水强度增大提供了有力的动力条件,高空弱冷空气的入侵对能量锋区不稳定能量的释放起到了触发作用。  相似文献   
28.
【目的】阐明桃树果园短期自然生草条件下土壤水分空间分布特征及其与草地地上生物量的关系。【方法】以信阳沙壤土五月鲜桃园为研究对象,在冬春季短期自然生草条件下,采用1 m×1 m网格采样法,以经典统计学和地统计学半方差函数为工具,研究表层(0~5 cm)土壤水分和草地地上生物量空间分布特征。【结果】表层(0~5 cm)土壤含水量和地上草地生物量符合正态分布,平均体积含水量为10.08%,95%置信区间为9.84%~10.32%,变异系数为16.36%,0.2 m×0.2 m草地地上生物量均值为9.17 g,变异系数为56.71%。区域田块尺度上,自然生草桃园草地地上生物量和表层(0~5 cm)土壤水分空间分布均符合指数函数模型,模型块金值/基台值分别为0.477 3和0.499 8,变程分别为7.20和2.51。即二者均具有中等程度的空间依赖性,草地地上生物量较表层(0~5 cm)土壤含水量具有更强的空间依赖性。克里格插值结果表明,表层(0~5 cm)土壤含水量和草地地上生物量空间上呈斑块状分布,且表现为距离树体越远值越大的分布特征。相关分析结果表明,地上生物量与表层(0~5 cm)土壤含水量之间极显著正相关(P<0.001)。【结论】果园短期自然生草有利于保蓄表层土壤水分,改善土壤水分条件,草地地上生物量是影响果园表层土壤水分空间分布的重要因素。  相似文献   
29.
饲草作物是指为增加土壤肥力,防止土壤侵蚀,累积和保护土层,增加土壤养分和含水率以及提高土壤质量而种植的植物。饲草作物为农田土壤提供了诸多益处,其还有助于增加和维持土壤中的微生物多样性。本文对多种饲草作物对土壤特性的作用,如土壤含水量、土壤微生物的活动、土壤碳固存、土壤硝态氮淋失、土壤水分和土壤健康等进行综述。饲草作物的选择通常取决于其自身对土壤的作用,其他考虑因素还包括天气条件,播种时间,是否为豆科植物以及杀灭饲草作物的时间和方法。研究表明,饲草作物也可用于减缓气候变化,抑制作物中的杂草,增加可交换的营养物质如Mg2+和K+,具有一定的经济性。另外,覆盖作物也会存在一些问题,包括杀灭覆盖作物的方法,其可能成为病原体的寄主,饲草作物的再生性以及短期收益不明显。尽管有一些局限,饲草作物仍被认为可以明显改善土壤整体健康状况,为主栽作物提供可持续的生态环境。  相似文献   
30.
豆科和禾本科牧草混播是栽培草地的重要模式之一,能显著改善土壤,提升系统可持续生产能力。牧草根系是土壤有机质返还的重要来源,但混播草地中牧草根系特性的变化尚不清楚。以箭筈豌豆和燕麦草地为对象,研究了不同施氮肥水平和混播比例下其根生物量、根性状的变化。结果表明:1)混播比例和施氮肥对草地根生物量和根性状有显著交互作用,混播草地根生物量显著大于单播;与高氮肥处理相比,根生物量在低、中氮肥处理下更高;高氮肥对根长、比根长、根表面积和比根面积在植物生长前期表现为抑制作用,在生长后期随混播中箭筈豌豆比例的增大,抑制作用减轻。2)混播条件下土壤硝态氮含量大于单播,而土壤铵态氮含量仅在乳熟期时大于单播,且随混播中箭筈豌豆比例增大,矿质氮含量增加;施氮肥对0~30 cm土层中的矿质氮含量有显著影响,其含量在施氮肥100 kg·hm-2下最高,不施肥下最小。3)根生物量与土壤硝态氮含量间显著正相关,根长、根表面积、根体积与土壤硝态氮含量间显著负相关。综上,混播中箭筈豌豆比例的增加有助于改善土壤矿质氮,优化混播草地根性状。  相似文献   
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