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1.
刘宁  赵国  刘刚 《农业工程学报》2021,37(18):232-243
溶出伏安法具有分析速度快、成本低、灵敏度高等优点被广泛应用于检测土壤重金属含量,但在检测土壤重金属时,溶出伏安检测精度会受到多方面因素的影响。该文在介绍溶出伏安法工作原理的基础上,从伏安参数、试验条件和土壤物质成分三方面阐述溶出伏安法检测土壤Pb2+和Cd2+为的影响因素,解析各因素的影响机理,归纳影响削弱方法的研究进展。研究结论为:方波脉冲阳极溶出伏安法最常用于检测土壤Pb2+和Cd2+,伏安参数包括脉冲幅值、电压增量和脉冲频率,试验条件包括沉积时间、沉积电压和支持电解质种类及其pH值,土壤成分主要干扰因素包括非目标重金属和有机质。针对伏安参数和试验条件的影响可以设计优化试验有效削弱。针对非目标重金属和有机质的干扰影响,目前研究还没有提出有效的削弱方法。最后,展望了溶出伏安法检测土壤重金属的未来发展方向。  相似文献   
2.
具有除草活性的生防菌株GD-9发酵条件优化及菌剂制备   总被引:2,自引:0,他引:2  
为了明确具有除草活性的生防菌株GD-9发酵过程中各因子的配比和最优条件,采用单因素试验对菌株最适碳源、氮源、载体、固态发酵基质进行了筛选,应用正交试验设计研究了碳源、氮源、初始含水量、接种量、初始pH、培养时间、培养温度7种因素对菌株活菌数的影响。试验结果表明菌株GD-9最佳固态发酵条件为:氮源NaNO_3 58.4 mg/g,碳源葡萄糖48.4 mg/g,培养基质最适初始含水量为258 mg/g,最适接种量为0.26 mL/g,初始pH 7.6,最佳培养时间147.8 h,最佳培养温度30.7℃,最适宜的载体为黏土,分散剂为聚乙烯醇,稳定剂为膨润土,润湿剂为糊精。通过发酵试验结果制备生防菌株GD-9的固体菌剂,该研究为菌剂的商品化生产奠定基础。  相似文献   
3.
汽车变速器的关键部件齿轮因其加工和装配质量的影响,工作时容易引起振动噪声大及承载能力降低等问题,而齿轮修形是解决这些问题的有效方法,且成本较低。针对某款汽车变速器,利用Romax对齿轮进行修形分析。结果表明,修形后减小了齿轮的传动误差和最大接触应力,齿面载荷分布更加合理。有效改善了齿轮的传动性能,增加了齿轮寿命。  相似文献   
4.
利用传统的微生物学方法,从菜地土壤中筛选出高产纤维素酶的菌株,并对其产酶条件进行优化。结果表明,从4种菜地土壤中共分离获得16株纤维素降解菌,其中生菜地土壤中获得的菌株最多,白菜地土壤中获得的菌株最少;在16个菌株中,从油菜地中分离纯化的1个菌株具有最强的纤维素降解能力;对该菌株的产酶条件优化发现,以麸皮作为唯一碳源、培养温度35℃、培养时间96 h时酶活力最高。  相似文献   
5.
The microalga Rhodomonas salina is widely used in aquaculture. There is a need for optimization of the growth of the microalgae and its content of essential fatty acids. Here, the fatty acid profile of Rhodomonas in relation to cell density during cultivation in a tubular PBR is investigated. It is expected that cell density is an important factor in controlling productivity and fatty acid content of the microalgae because cell density is important in determining light availability due to the self‐shading of the algae. The carbon productivity as a function of cell density is described by a saturation curve. The carbon productivity and the productivity of total fatty acids are lowest at the lowest cell density, and independent of cell density at higher cell densities. The relative contribution of the two poly‐unsaturated fatty acids eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) increases with increasing cell density and saturates at 1 × 106 cells/ml. We conclude that large‐scale production of Rhodomonas in this tubular PBR should take place at cell densities of 1 × 106 cells/ml, while there are indications for increasing difficulties in maintaining steady‐state production in this PBR at higher cell densities.  相似文献   
6.
不同坡位条件对毛乌素沙地长柄扁桃林地土壤水分的影响   总被引:1,自引:0,他引:1  
[目的]揭示半干旱区固定沙丘不同坡位条件下土壤水分空间变化规律,为固定沙丘土壤水分合理利用提供决策依据。[方法]在毛乌素沙漠东南缘陕西省神木市生态协会毛乌素治沙造林基地,以固定沙丘12 a龄人工长柄扁桃林地为研究对象,建立土壤水分定位观测小区,使用CNC503DR型中子仪对2018年7—10月0—300 cm土层土壤水分进行测定,并分析不同坡位条件下长柄扁桃林地生长季土壤水分时空变化特征。[结果](1)坡顶与坡上0—300 cm土壤剖面含水量随土层深度的增加呈先增加后减小,之后趋于稳定的变化趋势,而坡中(上、下)与坡底表现为类似S形的变化规律,土壤含水量表现为:坡底坡中(上)坡上≥坡顶坡中(下);(2)坡底土壤含水量表现出强变异性,其他4种坡位条件下为中等变异;(3)不同坡位条件下蒸散发表现为:坡底坡顶坡中(下)坡上坡中(上),坡上属强变异,而坡底则表现出中等变异且变异系数最小。[结论]不同坡位条件对固定沙丘土壤水分及蒸散耗水具有重要影响,坡底土壤含水量及蒸散发量均最大,且具有较强的不稳定性。  相似文献   
7.
重金属毒性强、不可降解,在环境中可持续存在,土壤中的重金属可通过食物链累积,对生物体的健康构成严重威胁。土壤微生物修复重金属污染方法具有经济成本低、周期短、效率高、无二次污染等优点,也存在外源微生物在土壤环境中不易存活和繁殖的缺点。通过形态观察、生理生化试验以及16S rDNA同源性序列分析对前期研究中分离保存的一株铜富集细菌HNU1菌株进行鉴定,鉴定该菌为解淀粉芽孢杆菌(Bacillus amyloliquefaciens)。并通过单因素试验和正交试验找出该菌株的最适发酵条件,该菌的最适培养基组成为蔗糖2 g·L-1,酵母粉4 g·L-1,胰蛋白胨6 g·L-1,MgSO4 5 g·L-1。培养条件为初始pH为8.0,温度37 ℃,接种量0.1%,摇床转速180 r·min-1,50 mL三角瓶中装液量20 mL。鉴定的解淀粉芽孢杆菌HNU1菌株对Cu具有良好的富集作用,可进一步开发为微生物肥料用于重金属污染农田土壤的修复,对土壤修复和改良具有重大意义。  相似文献   
8.
  1. To determine whether or not signal crayfish Pacifastacus leniusculus and native white‐clawed crayfish Austropotamobius pallipes prey on European barbel Barbus barbus eggs, interstitial free‐embryos and emergent larvae, experiments were undertaken in salmonid (substratum) incubators (six treatments, four controls) fitted with video recorders.
  2. No corpses or remains of emergent barbel larvae or eggs, or parts thereof, were observed in any of the incubators containing buried eggs, and no emergent larvae showed any sign of attack. However, video evidence of a signal crayfish catching and consuming a barbel larva was obtained.
  3. There were no statistically significant differences between white‐clawed and signal crayfish either in carapace length or weight at the beginning and end of the experiments. The conservation implications of these results are discussed.
  相似文献   
9.
A high level of biological degradation is usually observed in soils under semiarid climate where the low inputs of vegetal debris constraint the development of microbiota. Among vegetal inputs, cellulose and lignin are dominant substrates but their assimilation by the microbial community of semiarid soils is yet not understood. In the present study, 13C-labeled cellulose and 13C-labeled lignin (75 μg 13C g−1 soil) were added to two semiarid soils with different properties and degradation level. Abanilla soil is a bare, highly degraded soil without plant cover growing on it and a total organic C content of 5.0 g kg−1; Santomera soil is covered by plants (20% coverage) based on xerophytic shrubs and has a total organic C content of 12.0 g kg−1. The fate of added carbon was evaluated by analysis of the carbon isotope signature of bulk soil-derived carbon and extractable carbon fractions (water and sodium-pyrophosphate extracts). At long-term (120 days), we observed that the stability of cellulose- and lignin-derived carbon was dependent on their chemical nature. The contribution of lignin-derived carbon to the pool of humic substances was higher than that of cellulose. However, at short-term (30 days), the mineralization of the added substrates was more related to the degradation level of soils (i.e. microbial biomass). Stable isotope probing (SIP) of phospholipid fatty acids (PLFA-SIP) analysis revealed that just a minor part of the microbial community assimilated the carbon derived from cellulose and lignin. Moreover, the relative contribution of each microbial group to the assimilation of lignin-derived carbon was different in each soil.  相似文献   
10.
Tillage changes the physical and chemical properties of soil and can also inhibit or enhance useful and harmful fauna. In agriculture, different tillage technologies are being tried to enhance crop productivity, but little concrete information seems to exist on their effects on pest abundance and damage. To address this lack of information, sowing of wheat was investigated under different tillage systems. In order to monitor pest abundance and damage in altered tillage systems, the present studies on the relative abundance and damage due to insect pests viz. pink stem borer (PSB, Sesamia inferens Walker), termites (Microtermes obesi Holmgren and Odontotermes obesus Rambur) and root aphid (Rhopalosiphum rufiabdominalis Sasaki) were undertaken in a rice–wheat cropping system during 2010–11 and 2011–12. Pest abundance and damage was monitored in four tillage systems i.e. conventional tillage (CT), zero tillage (ZT), ZT + mulch and rotary tillage (RT) under insecticide protected and unprotected conditions. The application of insecticide did not affect root aphid incidence or termite damage. However, significant differences in PSB damage in insecticide protected (0.9%) and unprotected (1.2%) conditions were observed. The investigations demonstrated that in CT, damage by PSB (0.6%) was minimum; however termite damage (2.2%) was maximum as compared to all other tillage conditions. In ZT, PSB damage (1.4%) was maximum and root aphid incidence (3.1 aphids/tiller) was minimum in comparison to other tillage conditions. ZT + mulch resulted in inter-mediate insect pest incidence/damage; however, RT was the least effective practice which showed relatively high incidence/damage of these three insects (1.2% PSB damage, 1.9% termite damage and 5.1 aphids/tiller). The insecticide × tillage interaction indicated that insecticide application is needed only in ZT and RT for PSB management.  相似文献   
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