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71.
以稻秆为原料进行酶解研究,考察了纤维素酶和β-葡萄糖苷酶单独作用及协同作用对稻秆酶解还原糖产量的影响,以确定最佳酶体系,并研究在最佳酶体系中不同种类表面活性剂辅助离子液体对稻秆酶解的影响和动力学特征,最后通过稻秆成分分析、FTIR、XRD、SEM对预处理前后的稻秆结构、结晶性进行了分析比较.结果表明,纤维素酶与β-葡萄糖苷酶具有协同作用,而且在最佳酶体系中,与未处理稻秆及单独离子液体预处理相比,不同种类表面活性剂辅助离子液体预处理的稻秆在酶水解48 h时纤维转化率分别增加40%~85%、10%~31%,并且预处理对反应速率的提高有促进作用.  相似文献   
72.
2,4-二氯酚废水处理的试验研究   总被引:2,自引:0,他引:2  
研究了活性炭吸附法处理2,4-二氯酚废水的工艺过程。研究结果表明。活性炭对该废水具有良好的吸附效果。此外,还对吸附过程的动力学进行了研究,结果表明吸附过程遵循Lagergren一级动力学模型,并得出25℃和35℃时速率常数分别为k298=0.0072min^-1、k308=0.0118min,吸附活化能Ea=38.5kj/mol。  相似文献   
73.
Fenton试剂催化氧化降解微囊藻毒素的动力学研究   总被引:3,自引:0,他引:3  
针对饮用水中藻毒素污染的问题,以微囊藻毒素作为研究对象,系统地研究了Fenton试剂催化氧化降解微囊藻毒素的效能,并对其催化氧化微囊藻毒素过程的反应动力学进行了探讨。实验结果表明,Fenton试剂对微囊藻毒素具有较好的催化氧化效果,当[H2O2]=8 g/L、[Fe2 ]/[H2O2]=1/12、pH=2时,反应在30 min内微囊藻毒素的去除率可达90%以上。同时通过实验得出了Fenton试剂催化氧化降解微囊藻毒素的动力学方程为:r=2.31×106exp[-23 300/(RT)]C0.H492O2C2.22M。  相似文献   
74.
Removal of heavy metals from a contaminated soil using tartaric acid   总被引:9,自引:0,他引:9  
This study reports the feasibility of remediation of a heavy metal (HM) contaminated soil using tartaric acid, an environmentally-friendly extractant. Batch experiments were performed to test the factors influencing remediation of the HM contaminated soil. An empirical model was employed to describe the kinetics of riM dissolution/desorption and to predict equilibrium concentrations of HMs in soil leachate. The changes of HMs in different fractions before and after tartaric acid treatment were also investigated. Tartaric acid solution containing HMs was regenerated by chestnut shells. Results show that utilization of tartaric acid was effective for removal of riMs from the contaminated soil, attaining 50%-60% of Cd, 40%-50% of Pb, 40%-50% of Cu and 20%-30% of Zn in the pH range of 3.5-4.0 within 24 h. Mass transfer coefficients for cadmium (Cd) and lead (Pb) were much higher than those for copper (Cu) and zinc (Zn). Sequential fractionations of treated and untreated soil samples showed that tartaric acid was effective in removing the exchangeable, carbonate fractions of Cd, Zn and Cu from the contaminated soil. The contents of Pb and Cu in Fe-Mn oxide fraciton were also significantly decreased by tartaric acid treatment. One hundred milliliters of tartaric acid solution containing HMs could be regenerated by 10 g chestnut shells in a batch reactor. Such a remediation procedure indicated that tartaric acid is a promising agent for remediation of HM contaminated soils. However, further research is needed before the method can be practically used for in situ remediation of contaminated sites.  相似文献   
75.
污染农田土壤修复产业发展面临的问题及建议   总被引:1,自引:0,他引:1  
雍正  杨浩  冉宇 《环境与发展》2020,(1):228-228,230
随着经济的发展,我国的农业建设也迎来了新的发展机遇,但是目前我国的农业发展过程中存在着严重的土壤污染问题,污染农田土壤修复的问题有待解决。本文围绕污染农田土壤修复这一问题展开研究,望有所助益。  相似文献   
76.
尹金珠  荆瑞英 《环境与发展》2020,(4):116-116,118
目前,土壤重金属污染已成为全球各国共同面临的棘手问题。土壤重金属污染具有隐蔽性、滞后性、积累性、持久性等特点,已严重危害到人类的健康。本文在全面了解国内外重金属污染土壤修复研究动态的基础上,对纳米多孔磁性螯合材料用于农田重金属污染土壤修复的新技术进行展望与探索研究,为国内这一领域的工作开展提供借鉴参考。  相似文献   
77.
制备了钾改性正硅酸锂(K-Li4SiO4),并对其进行了自活化,考察了活化后K-Li4SiO4吸附剂在不同温度和CO2浓度气氛中吸附CO2的性能及动力学行为。总体而言,吸附剂的CO2吸附能力随着温度的升高、CO2浓度的增加而提升。在700℃、100%体积分数CO2气氛中吸附剂的吸附量最大,可达7.9 mmol/g,吸附剂的利用率为95.2%。利用双指数模型能够很好地描述吸附剂在各个温度以及各个CO2浓度气氛下的CO2吸附过程。吸附活化能随着CO2气氛浓度的升高而降低,CO2体积分数为20%,50%,100%时的吸附活化能分别为26448,14035,6178 J/mol。  相似文献   
78.
San Vicente Bay is a coastal shallow embayment in Central Chile with multiple uses, one of which is receiving wastewater from industrial fisheries, steel mill effluents, and domestic sewage. A simulation model was developed and applied to dissolved oxygen consumption by organic residues released into this embayment. Three compartments were established as function of: depth, circulation and outfall location. The model compartments had different volumes, and their oxygen saturation value was used as baseline. The parameters: (a) BOD5 of the industrial and urban effluents, (b) oxygen demand by organic sediments, (c) respiration, (d) photosynthesis and (e) re-aeration were included in the model. Iteration results of the model showed severe alterations in Compartment 1, with a decrease of 65% in the oxygen below saturation. Compartment 2 showed a small decline (10%) and compartment 3 did not show apparent changes in oxygen values. Measures recommended for remediation were to decrease the BOD5 loading by 30% in the affected sector. Iteration of the model for 200 h following recommendations derived from the preceding results produced an increase in saturation of 60% (5 ml O2 L−1), which suggested an improvement of the environmental conditions.  相似文献   
79.
We report the preparation of poly(3,4-ethylene dioxythiophene) (PEDOT)-modified polyvinylidene fluoride electrospun fibers and their use as a novel adsorbent material for the removal of the anionic dye Methyl Orange (MO) from aqueous media. This novel adsorbent material can be used to selectively remove MO on a wide pH range (3.0–10.0), with a maximum capacity of 143.8 mg/g at pH 3.0. When used in a recirculating filtration system, the maximum absorption capacity was reached in a shorter time (20 min) than that observed for batch mode experiments (360 min). Based on the analyses of the kinetics and adsorption isotherm data, one can conclude that the predominant mechanism of interaction between the membrane and the dissolved dye molecules is electrostatic. Besides, considering the estimated values for the Gibbs energy, and entropy and enthalpy changes, it was established that the adsorption process is spontaneous and occurs in an endothermic manner. The good mechanical and environmental stability of these membranes allowed their use in at least 20 consecutive adsorption/desorption cycles, without significant loss of their characteristics. We suggest that the physical-chemical characteristics of PEDOT make these hybrid mats a promising adsorbent material for use in water remediation protocols and effluent treatment systems.  相似文献   
80.
在中温(35℃±1℃)厌氧条件下,以葡萄糖为共基质,采用间歇实验方法,研究了2,6-二硝基酚(2,6-DNP)的厌氧产甲烷毒性和厌氧降解动力学.厌氧毒性试验(ATA)以累计产甲烷量和相对活性(RA)为指标,评价了不同浓度2,6-DNP对产甲烷菌的抑制程度;结果表明,2,6-DNP浓度<20 mg/L时,对产甲烷菌没有抑制作用,浓度为40 mg/L时产生轻度抑制,浓度为80~120 mg/L时产生重度抑制;24 h 2,6-DNP的75%、50%、25%相对抑制浓度分别为30、70和>120 mg/L.2,6-DNP降解动力学可用Haldane方程来描述,利用非线性拟合求得动力学参数Ks、Rm、Ki分别为179.7 mg/L、4.84 mg/g VSS·h、206.5 mg/L,方差R2=0.94,拟合效果很好.  相似文献   
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