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671.
The key to soil spray-sowing technology is the use of the highly-effective rock-corroding strains, and the mechanism of rock corrosion will provide theoretical references to screen the strains. To investigate the corrosion mechanism of limestone by microorganisms, the dominant and highly-effective limestone-corroding strain Gongronella butleri NL-15 was isolated and purified from the microorganisms on the rock surface. The concentration of calcium (Ca), magnesium (Mg), potassium, and phosphorus was analyzed by ICP. The pH of the fermentation broth of the strain at different intervals was measured using a precise pH instrument. The content of organic acids (critic, succinic, lactic, fumaric, acetic, and propanoic acids) and the scanning electron microscope feature of rock particles in the fermentation broth at different intervals were also analyzed by HPLC. The results showed that the concentration of Ca2+ and Mg2+ in the fermentation broth correlated negatively with the pH value (P < 0.01). The pH of control was 6.87, and that of the fermentation broth after 15 days dropped to 5.12. The concentration of Ca and Mg was 38.96 and 10.85 mg/L respectively, whereas that of the fermentation broth after 15 days increased to 367.56 and 76.16 mg/L respectively. The content of the total organic acids and lactic acid increased with increase in fermentation time. The content of the total organic acids on days 2, 5, 9, and 15 in the fermentation broth was 3.43, 5.40, 6.63, and 7.26 mg/mL, respectively, and the content of lactic acid was 1.79, 2.85, 5.16, and 5.04 mg/mL, respectively. The mycelium of the G. butleri NL-15 adhered to the surface of rock particles and threaded into unconsolidated rocks. Thus, the organic acids, especially lactic acid produced by the fungi G. butleri NL-15, caused unconsolidation of rock and improved the growth of fungi mycelium into the unconsolidated rock. This was the primary cause for limestone corrosion, and the release of Ca and Mg from the rock and its disintegration. © 2018 Science Press. All rights reserved.  相似文献   
672.
The weed inhibition of allelopathic rice PI312777 and nonallelopathic rice Lemont, allelopathic potential of rice rhizospheric soils, as well as the microbial physiological traits of rice rhizospheric soils, were studied by field tests after weedremoving and weed treatments. The results showed that the inhibitory rate of PI312777 at the 7-leaf stage on paddy weeds was 85.82%. Results of the Soil-Agar Sandwich method revealed that the allelopathic potential of PI312777 rhizospheric soils on the inhibitory rate of plant dry weight of barnyard grass was significantly higher at the 5-leaf stage than that at the 3-leaf stage, and increased by 20.16% from the 3-leaf stage to the 5-leaf stage after weed treatment. When at the same leaf stage, the soil microbe biomass carbon and soil respiration, the number of soil bacteria, and activity of soil enzymes (urease, protease, and sucrase) were significantly higher in PI312777 rhizospheric soils than in Lemont rhizospheric soils; they were also higher after the weed-removing treatment than after weed treatment. The largest increase of soil allelopathic potentials and soil microbial physiological indexes in PI312777 rhizospheric soils appeared from the 3-leaf stage to the 5-leaf stage. In case of weed treatment, the allelopathic potential of PI312777 rhizospheric soils on the soil microbe biomass carbon, soil respiration, the number of soil bacteria, activity of urease, activity of protease, and activity of sucrase increased by 53.11%, 51.56%, 38.97%, 44.83%, 60.00%, and 41.92%, respectively, from the 3-leaf stage to the 5-leaf stage. These results indicated that rice allelopathy had a close relationship with the activity of rhizospheric soils. Rice allelochemicals lead to the change of soil microbes; rice allelopathy is a process based on plant-soil interaction. © 2018 Science Press. All rights reserved.  相似文献   
673.
Soil physicochemical properties are important parameters to characterize soil quality. To evaluate the effects of different stand ages from young to mature on the soil physicochemical properties of Pinus tabulaeformis plantations, four different aged P. tabulaeformis plantations (14, 28, 36, and 51-year old) were investigated in Yanqing district, Beijing, China. Soil samples were collected at depths of 0-10, 10-20, and 20-30 cm, to analyze the effect of soil depth on soil physicochemical indexes. With increasing soil depth, the soil moisture content, water holding capacity, and porosity decreased gradually, but pH value increased. There was no significant difference in soil bulk density (BD) between different soil depths. Organic matter (OM), nitrogen (N), phosphorus (P), and potassium (K) content also decreased gradually with increasing soil depth, but there was no uniform change in electrical conductivity (EC). With the growth and development of P. tabulaeformis plantations, the soil moisture content, water holding capacity, and porosity of the same depth increased gradually, but pH value decreased. The difference in BD between different ages was not significant. The OM, N, and P content showed an increasing trend with increasing stand age. The K content in 14 a and 28 a plantations was significantly higher than that in 36 a and 51 a plantations. EC was the highest in 51 a plantations. The correlation analysis showed that there was a significant negative correlation between BD and water characteristics, porosity. There was a significant positive correlation between OM and N, P. The negative correlation between OM and pH reached a significant level at P < 0.01. OM was negatively correlated with BD, total potassium (TK, P < 0.05) and available potassium (AK, P > 0.05). Therefore, the soil physicochemical properties of P. tabulaeformis plantations improved with increasing stand age. Our results provide a theoretical basis for the management of P. tabulaeformis plantations in Beijing, such as thinning, fertilization management, and mixed forest forestation. © 2018 Science Press. All rights reserved.  相似文献   
674.
新疆焉耆盆地农田土壤重金属污染及健康风险评价   总被引:2,自引:0,他引:2  
为研究新疆焉耆盆地绿洲农田土壤重金属的污染及潜在健康风险,选取194个样点采集土壤样品,测定As、Cd、Cr、Cu、Ni、Pb和Zn共7种重金属元素含量。利用地质累积指数(I_(geo))评价农田土壤污染水平,采用US EPA健康风险评价模型,对农田土壤重金属污染的潜在健康风险进行评估。结果表明,研究区农田土壤7种重金属平均含量均未超出《食用农产品产地环境质量评价标准》中的限值,但Cd、Cr、Ni、Pb和Zn含量平均值分别超出新疆灌耕土背景值的1.67、1.41、1.30、3.01和6.78倍。农田土壤中Zn呈现轻度污染,Cd与Pb呈现轻微污染,As、Cr、Cu与Ni呈现无污染态势。健康风险评估结果表明,经手-口摄入是研究区农田土壤重金属日均暴露量及健康风险主要途径。农田土壤7种重金属通过3种暴露途径的非致癌风险商(HQ)与非致癌风险指数(HI),单项致癌风险指数(CR)与总致癌风险指数(TCR)均小于安全阈值,属于可接受风险水平。研究区农田土壤重金属对儿童的非致癌风险低于成人,致癌风险高于成人。研究区农田土壤中As与Pb是最主要的非致癌风险因子,As是最主要的致癌风险因子,研究区农田土壤中As对人体的健康风险应当引起重视。  相似文献   
675.
4种钝化剂对污染水稻土中Cu和Cd的固持机制   总被引:1,自引:1,他引:0  
丁园  敖师营  陈怡红  肖亮亮 《环境科学》2021,42(8):4037-4044
为揭示钝化剂阻控后Cu和Cd二次活化的风险程度,本文采用石灰石(LS)、麦饭石(MF)、生物炭(BC)和铁改性生物炭(Fe-BC)这4种钝化剂,研究其施用后土壤及土壤胶体中Cu和Cd形态变化和内源铁氧化物类型、形貌变化归趋.结果表明,钝化剂对土壤Cu和Cd的固持效果表现为LS>MF>Fe-BC>BC.LS和MF处理后土壤可交换及碳酸盐结合态Cu质量分数分别减少8.19%和2.33%,易还原铁锰结合态Cu质量分数分别增加8.00%和2.69%,二次活化的风险较高;BC和Fe-BC处理后,易还原铁锰结合态Cu质量分数分别减少2.21%和5.90%,有机结合态Cu质量分数分别增加4.75%和3.48%,钝化效果更稳定.LS、MF、BC和Fe-BC处理后,土壤可交换及碳酸盐结合态Cd质量分数分别减少7.64%、8.34%、2.37%和6.73%,残渣态Cd质量分数分别增加8.27%、9.18%、5.73%和9.60%,说明钝化处理后,Cd二次活化的风险较低.胶体中Cu和Cd的含量分别为489.92mg·kg-1和2.57mg·kg-1,远高于土壤中Cu和Cd的含量239.98mg·kg-1和1.93mg·kg-1,且4种钝化剂施用后,土壤胶体中非晶质氧化铁结合态Cu和Cd含量显著增加,说明这是重金属生物有效性降低的主要原因和路径.  相似文献   
676.
The dynamics of heavy metals in plant-soil interactions   总被引:1,自引:0,他引:1  
The effects of soil contamination by heavy metals are studied by a mathematical interaction model, validated by experimental results. The model relates the dynamics of uptake of heavy metals from soil to plants. The model successfully fitted the experimental data and made it possible to predict the threshold values of total mortality. Data are taken from soil with Cd, Cu and Zn treatments for alfalfa, lettuce, radish and Thlaspi caerulescens, measuring the concentrations in the aboveground biomass of plants. At low concentrations, the effects of heavy metals are moderate, and the dynamics seem to be linear. However, increasing concentrations exhibit nonlinear behaviors.  相似文献   
677.
● There was no significant difference in soil aggregates TP along altitude gradient. ● Overall, PAC dropped steadily as aggregate size increased. ● In soil aggregate sizes, TPi > TPo > R-P at 3009,3347 and 3654 m except 3980 m. ● Active NaHCO3-Pi was the main AP source. ● Proportion of small aggregate sizes was emphasized to increase AP storage. The distribution and availability of phosphorus (P) fractions in restored cut slope soil aggregates, along altitude gradients, were analyzed. Samples were collected at 3009, 3347, 3654 and 3980 m of altitude. We examined soil aggregates total phosphorus (TP), available phosphorus (AP) and phosphorus activation coefficient (PAC), and discovered that there was no significant difference in TP levels between all four altitudes samples (p > 0.05). However, there was a significant difference in AP at 3009, 3347 and 3980 m of altitude (p < 0.05). At the altitudes of 3009, 3347 and 3654 m, the AP accumulation in small size aggregates was more advantageous. Overall, PAC dropped steadily as soil aggregates sizes increased, as shown: PAC (3654 m) > PAC (3347 m) > PAC (3009 m) > PAC (3980 m). In all particle size soil aggregates, the distribution of the P fractions was as follows: total inorganic phosphorus (TPi) > total organic phosphorus (TPo) > residual phosphorus (R-P), at 3009, 3347 and 3654 m, but a different registry was observed at 3980 m of altitude: TPo > TPi > R-P. Through correlation and multiple stepwise regression analysis, it was concluded that active NaHCO3-Pi was the main AP source. It was also suggested that more attention should be given to the ratio of small particle size aggregates to increase soil AP storage. In order to improve the activation capacity and supply of soil P, along with promotion of the healthy development of soil ecosystem on slope land, it was suggest that inorganic P fertilizer and P activator could be added to soil at both low (3009 m) and high altitudes (3980 m).  相似文献   
678.
Despite extensive research on microplastics (MP) in marine environments, little is known about MP abundance and transport in terrestrial systems. There is, therefore, still little understanding of the main mechanisms driving the substantial transport of MP across different environmental compartments. Storm events can transport MP beyond boundaries, such as from the land to groundwater or the ocean, as has already been discovered for organic carbon transport. Urban stormwater detention ponds are suitable environments to study the impact of stormwater on the environmental fate and transport of MP. Herein, we investigate the longitudinal and vertical distribution of MP within two detention ponds with different physical characteristics. Soil samples were collected at various locations and from multiple depths (surface and subsurface layers) for measuring MP concentrations using fluorescence microscopy. Our findings show that MP are retained more near the inlet of the ponds, and MP of larger sizes were found more abundantly near inlets than outlets. We also found that MP mass and sizes decrease from surface soil to subsurface soil. In the pond, where vegetation (grass root network) was more considerable, MP were found more evenly distributed along the depth. In terms of shape, the fragments were the most abundant MP shape.  相似文献   
679.
对某典型电子废弃物拆解园区排放的废气以及周边土壤中的重金属进行监测分析。结果显示,拆解过程中排放的重金属总量由高到低依次为:锡(Sn)、铬(Cr)、镍(Ni)、铅(Pb)、铜(Cu)、锑(Sb)、锰(Mn)、砷(As)、镉(Cd)、汞(Hg);从处理工艺来看,几个主要拆解工序均有重金属排放,排放量由高到低依次为:加热烤板、火法冶炼、塑料造粒和湿法冶炼工序。园区周边土壤中的Hg、Cd、Cu、Pb平均质量分数超过珠三角土壤污染风险筛选值。相关性和主成分分析结果表明,Pb、Cu、Cd、Ni、Zn等重金属来源于电子废弃物拆解过程,包括废水排放、大气干湿沉降和固体废弃物随意堆放等途径,Cr可能主要来源于成土母质,Hg有电子废弃物之外的其他来源。土壤生态风险评价结果表明,该区域属于很强生态风险,其中Cd和Hg对生态危害的贡献率达到91.6%。土壤环境容量评价结果表明,该区域仅有As和Cr的土壤现存容量较大,Zn和Ni的土壤现存环境容量较小,已达到警戒值,其余重金属均处于超载状态。该地区土壤重金属污染状况须引起足够重视,应尽快制定管控治理措施。  相似文献   
680.
采用水溶剂加速萃取-超高效液相色谱串联质谱法(UPLC-MS/MS)建立了土壤中6种全氟羧酸(PFCs)的分析方法,并对色谱分析条件、水溶剂萃取条件、固相萃取柱净化条件及实验材料选择等进行了优化。结果表明,以ACQUITY UPLC BEH C18色谱柱为分离柱,2.0 mmol/L乙酸铵水溶液为流动相A,甲醇为流动相B,梯度洗脱下可在9 min内完成6种PFCs的测试,检出限为0.03~0.4 μg/kg。对实际土壤样品进行测定,加标回收率为90.7%~118%,相对标准偏差为5.6%~18.0%,精密度和准确度均较好。该方法前处理过程简单、易操作,仪器检测效率高、结果准确,能够满足土壤中PFCs的检测要求。  相似文献   
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