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1.
A main goal of investigations is to determine could a soilrespiration be an indicator of the soil pollution. In this case a measured levelof the soil oxygen consumption depends of its pollution. It alsomeans that the pollution reduces biological processes in edaphon.Investigated soil samples were taken from polluted andnon-polluted places in the Baix Llobregat near Barcelona (Catalonia, NE Spain). Soil samples were taken from the top ofsoil (0–5 cm) without a litter. Soil analysis were done, determining percentage shares of coarsefragments, coarse sand, fine sand, coarse silt, fine silt, clay,CaCO3, organic matter as well as water pH and conductivityCE (1:5 [mS cm-1]). Also were determined (in mg kg-1)quantities of heavy metals, as Fe, Al, Mn, Zn, Cr, Ni, V, Cu, Cd, Pb.The soil respiration was investigated in temperatures15 and 30 °C and with controlled humidity.The respiration in 30 °C is number of times greater thenin 15 °C both for polluted and non-polluted soils.Particularly high coefficients of correlation between the soilrespiration and soil pollution in polluted soils were obtainedfor Pb: r = 0.75 in 15 °C and r = 0.98 in30 °C; for Ba: 0.90 and 0.57; for V: 0.99 and 0.81. In non-polluted soils highest correlation coefficients are for Pb: r = 0.70 in 15 °C; Fe: 0.60 and 0.72; Al: 0.68 and0.64; Mn: 0.51 and 0.66; Ba: 0.63 and 0.61; Cr: 0.94 and0.70; Ni: 0.64 and 0.65; Cu: 0.69 and 0.48; as well as V: 0.62in 15 °C; and Cd: 0.69 in 15 °C.This way the soil respiration could be a good indicator of the soil pollution.  相似文献   
2.
目的 解决某单缸摩托车发动机台架测试时中低速扭矩线性度差的问题.方法 基于CFD数值分析方法,运用热力学仿真分析软件GT-Power对发动机进行建模和标定,然后对原方案发动机进行摸底分析,最后通过优化配气机构和进排气系统来实现改善中低速性能的目标.结果 优化后的发动机台架测试结果中,发动机中低速扭矩线性度改善,动力性和经济性及排放都达到项目预期目标,峰值功率达到16 kW(9500 r/min),峰值扭矩达到18.6 N·m(7000 r/min),最低比油耗为183 g/(kW·h),CO、THC、NOx排放量分别为840、83、54 mg/km.配气机构运动学动力学性能与可靠性提升,进排气凸轮丰满系数分别达到5.14、5.15.结论 原方案中低速扭矩线性度差的原因为此转速段充气效率较低.优化凸轮型线、空滤器、消声器、排气管道参数能更好地利用进排气管道谐振效应来提升发动机中低速动力性能.  相似文献   
3.
Starch-PVOH cast films were prepared with and without crosslinking agent (hexamethoxymethylmelamine) in the absence of plasticizer. Moisture absorption in films without crosslinking agent at a low relative humidity was similar to that of PVOH and increased as the relative humidity increased. Films with crosslinking agent showed moisture absorption linearly proportional to the relative humidity. Significant improvement in resistance to water disintegration for crosslinked starch-PVOH films was observed. While the tensile strength decreased with increased relative humidity, crosslinking significantly improved the tensile strength. Increased PVOH content improved elongation of films even when the relative humidity was 80% or higher. Biodegradation studies revealed that the degradation rate was negatively correlated with the PVOH content in films and crosslinking generated more converged degradation curves. Names are necessary to report factually on available data; however, the USDA neither guarantees nor warrants the standard of the product, and the use of the name by USDA implies no approval of the product to the exclusion of others that may also be suitable.  相似文献   
4.
非饱和土土-水特征曲线(SWCC)表示了土中含水量与吸力之间的关系。针对非饱和土干-湿循环过程中的吸力变化特征,开展试验研究。采用体积压力板仪实现非饱和土的脱湿和吸湿过程。试验成果显示:(1)土-水特征曲线是不稳定的,它与土体含水率的变化路径有关;(2)在干湿循环过程中,相同的基质吸力具有不同的含水量。  相似文献   
5.
采用电解呼吸仪分析早、晚期渗滤的生化特性在Fenton过程前后的变化。根据BOD累积曲线 ,由非线性最小二乘法求解出第一阶段生化需氧量BODu 和一级生化动力学常数K。结果表明早期渗滤液易于生化降解 ,经Fenton氧化后 ,由于产生了毒性更强的中间产物 ,渗滤液的驯化时间反面延长 ,K值也略有下降。晚期渗滤液很难生化降解 ,经Fenton处理后其生化特性得到很大的改善。  相似文献   
6.
IntroductionWatershortageproblemisquiteseriousinmanycitiesofChina .Thereuseofmunicipalwastewaterisoneofthekeymethodstoreleasethisproblem .Makeupwaterforrecirculatingcoolingsystemisthelargestwaterusageinmanyfactories .Thewaterqualitystandardsforreclaimedwa…  相似文献   
7.
用呼吸仪监测取代酚类化合物对活性污泥的抑制   总被引:2,自引:0,他引:2  
应用呼吸仪测定活性污泥中微生物的活性。研究了九种取代酚对微生物活性的影响,发现抑制效应与有机物的正辛醇-水分配系数、最低未占轨道能级有着相关联系,并发现取代酚对活性污泥硝化细菌比起异养细菌有着更强的抑制。生物膜比活性污泥具有更好的耐抑制能力,驯化对抗抑制有明显的效果,增大污泥浓度在一定程度上可以减轻毒害。  相似文献   
8.
为了揭示干旱半干旱区高寒湿地不同水分梯度对土壤呼吸规律的影响,以及土壤温度与含水量对土壤呼吸影响的差异性,以新疆巴音布鲁克天鹅湖高寒湿地为研究对象,在2014年植物生长季利用LI-8100土壤碳通量自动测量系统对不同水分条件(常年积水区、季节性积水区、常年干燥区)下的土壤呼吸速率进行测定,分析土壤呼吸日变化、季节性变化特征及其与土壤温度、土壤体积含水量的关系. 结果表明:①不同水分条件下巴音布鲁克天鹅湖高寒湿地土壤呼吸速率日变化均呈明显的单峰曲线,常年积水区、季节性积水区、常年干燥区土壤呼吸速率最大值分别为1.97、7.39、8.83 μmol/(m2·s),均出现在13:00—15:00;土壤CO2日累积排放量季节性变化明显,差异性达到极显著水平(P<0.01),三者的最大值分别为0.12、0.45、0.40 mol/m2,地表积水显著抑制了土壤呼吸,提高了土壤碳稳定性. ②不同水分条件下土壤呼吸速率与土壤温度、土壤体积含水量之间均呈极显著正相关(P<0.01),常年积水区、季节性积水区和常年干燥区的Q10(土壤呼吸温度敏感性)差异性极显著(P<0.01),其大小表现为常年干燥区(1.54)<常年积水区(2.22)<季节性积水区(3.36),各水分区域6月典型日的Q10最大,表现为常年干燥区(2.56)<季节性积水区(4.30)<常年积水区(4.75),说明水分条件显著影响Q10. ③巴音布鲁克天鹅湖高寒湿地土壤呼吸受地下5 cm处土壤温度(T)与0~5 cm土壤体积含水量(W)的综合影响,季节性积水区土壤呼吸速率与二者之间满足最佳拟合模型Rs=-1.113+0.041W-0.366T+0.008WT,常年干燥区则满足最佳拟合模型Rs=1.470+0.023W-0.027T+0.002WT.   相似文献   
9.
曝气生物滤池处理啤酒废水的研究   总被引:11,自引:3,他引:11  
曝气物滤池使用了新型的粒状填料,能同时发挥生物降解,过滤和吸附等多种功能。实验结果表明:曝气生物滤池处理啤酒废水效果较好,当COD容积负荷为10kg/(m^3.d)时,在0.8m/h、1.4m/h和2.5m/h3种不同水力负荷下COD的出水度分别在59mg/L、82mg/L和51mg/L以下;  相似文献   
10.
This paper presents a test scheme for assessing the biodegradation potential of polymers, starting with aquatic screening systems (aerobic and anaerobic) and continuing to long-term systems. At the end of the scheme the material has to prove its behavior under the relevant disposal conditions. Aerobic screening was performed mainly under aquatic conditions, but also in soil, using BOD-respirometry. Carbon balances were performed to obtain a better evaluation of the biodegradation potential. Under anaerobic conditions, biodegradation in an aquatic medium was followed by measuring CH4 and CO2 production. Polymers not fully degraded in the screening systems were tested in aquarium systems for at least 1 year. Biodegradation was followed by monitoring the DOC released in the water, mass loss, and microbial growth on the samples and in the water as well as via FTIR spectroscopy and SEM pictures. Results are presented for the polymers PHB, PHBV, PCL, Mater-Bi AI05H and ZF03U, and Bioceta. By combining the data from the screening with the aquarium system, a good picture of the degradation behavior of the polymers is obtained.Paper presented at the Bio/Environmentally Degradable Polymer Society—Third National Meeting, June 6–8, 1994, Boston, Massachusetts.  相似文献   
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