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991.
周红慧  马浩 《环境化学》1999,18(1):77-81
本文总结介绍了含膦羧酸共聚物TS-617组份的阻垢缓蚀剂的在灰水回收系统中稳定处理的实验方法及情况。  相似文献   
992.
聚乙烯及其废料油化技术中催化剂的研制与性能研究   总被引:5,自引:0,他引:5  
冀星  钱家麟 《环境化学》1999,18(5):437-444
本文研究了几种自制催化剂对聚乙烯热解产物的催化改质作用,催化反应温度与催化剂性质对催化改质所得气体收率及组成、汽油收率及辛烷值、柴油收率以及催化剂积碳的影响,探讨了适合聚乙烯及其废料热解产物催化改质的催化剂应具备的特性及热解产物在催化剂上反应的类型,同时探讨了本研究对废塑料油化技术的指导作用。应用此催化剂液体收率可达80%以上,汽油辛烷值为82(RON)。  相似文献   
993.
烷基苯磺酸钠对水生动物的生物效应研究   总被引:2,自引:0,他引:2  
本文通过洗涤剂的主要成分—烷基苯磺酸钠对大型蚤和鲤鱼的毒性试验,说明烷基苯磺酸钠的毒性属中等。对大型蚤24hEC50为7.23mg/L,48hEC50为3.83mg/L;对鲤鱼48hLC50为3.74mg/L,96hLC50为2.23mg/L。鲤鱼生活在0.5mg/L的烷基苯磺酸钠溶液中,15d就能引起鳃的损伤。  相似文献   
994.
广西不同地理区域森林土壤水文物理性质研究   总被引:1,自引:0,他引:1  
对广西9个不同区域森林土壤(0-100cm)水文物理性质进行测定,结果表明,不同林型的土壤容重为0.54~155g/cm3;总孔隙度39%一96.4%;最大持水量411.7~759.6mm;通气度3.2%~27.6%;平均渗透速度0.79~38.5mm/min。不同土类及林型的土壤容重的大小为;黄壤<红壤和阔叶林或针阔叶混交林<针叶林,而总孔隙度、持水量、通气度及渗透速度则相反。  相似文献   
995.
在活性污泥系统优化设计模型参数不确定性分析的基础上,考察了进水负荷、生物动力学参数、曝气设备性能参数和二沉池浓缩常数变化对优化设计的影响。灵敏度分析结果表明,对优化设计影响较大的参数为:进水水量水质、与氧转移效率相关的校正参数以及二沉池的浓缩常数等。研究结果对于低灵敏度系统的设计,提高优化设计结果的工程实用性具有重要的意义。  相似文献   
996.
悬浮态的光催化反应器相比固载的光催化反应器有更高的光催化效率。但是如何在光催化反应完成后使催化剂与水溶液的分离 ,成为了一个关键的问题。本研究采用溶胶 凝胶法将二氧化钛直接沉积在磁性颗粒的表面 ,制备出了磁载的光催化剂。这种催化剂在保留了磁性能具有可磁分离的基础上又具有很好的光催化降解效果。  相似文献   
997.
刘倩  王彬 《环境污染与防治》2022,44(3):409-412,419
生态修复是救济生态环境损害的方式,或体现为民事法律责任,或体现为行政法律义务.作为民事法律责任的生态修复体现了以环境权为权源通过民事法律规范以司法途径救济生态环境损害的救济方式,作为行政法律义务的生态修复体现了"行政命令+行政处罚+代履行"的生态环境损害救济方式.将生态修复作为民事法律责任是目前的主流做法,但将生态修复...  相似文献   
998.
● Methods for estimating the aging of environmental micro-plastics were highlighted. ● Aging pathways & characterization methods of microplastics were related and reviewed. ● Possible approaches to reduce the contamination of microplastics were proposed. ● The prospect and deficiency of degradable plastics were analyzed. With the increasing production of petroleum-based plastics, the problem of environmental pollution caused by plastics has aroused widespread concern. Microplastics, which are formed by the fragmentation of macro plastics, are bio-accumulate easily due to their small size and slow degradation under natural conditions. The aging of plastics is an inevitable process for their degradation and enhancement of adsorption performance toward pollutants due to a series of changes in their physiochemical properties, which significantly increase the toxicity and harm of plastics. Therefore, studies should focus on the aging process of microplastics through reasonable characterization methods to promote the aging process and prevent white pollution. This review summarizes the latest progress in natural aging process and characterization methods to determine the natural aging mechanism of microplastics. In addition, recent advances in the artificial aging of microplastic pollutants are reviewed. The degradation status and by-products of biodegradable plastics in the natural environment and whether they can truly solve the plastic pollution problem have been discussed. Findings from the literature pointed out that the aging process of microplastics lacks professional and exclusive characterization methods, which include qualitative and quantitative analyses. To lessen the toxicity of microplastics in the environment, future research directions have been suggested based on existing problems in the current research. This review could provide a systematic reference for in-depth exploration of the aging mechanism and behavior of microplastics in natural and artificial systems.  相似文献   
999.
● Medium poly Al salts dominated the PAC residual salts with a rational dosage. ● Settlement flocculation effect under medium poly Al salts showed a better trend. ● Complex of medium poly Al salts and enzymes promoted cell activity. ● Medium poly Al salts were beneficial to the effluent indexes. With the widespread introduction of pre-coagulation prior to the biological unit in various industrial wastewater treatments, it is noteworthy that long-term accumulation of residual coagulants has certains effect on both micro and macro characteristics of activated sludge (AS). In this study, the morphology distributions of residual aluminum salts (RAS) and their effects on the removal efficiency of AS were investigated under different PAC concentrations. The results showed that the dominance of medium polymeric RAS, formed under an appropriate PAC dose of 20 mg/L enhanced the hydrophobicity, flocculation, and sedimentation performances of AS, as well as the enzymatic activity in cells in the sludge system, improving the main pollutants removal efficiency of the treatment system. Comparatively the species composition with monomer and dimer / high polymer RAS as the overwhelming parts under an over-dosed PAC concentration of 55 mg/L resulted in excessive secretion of EPS with loose flocs structure and conspicuous inhibition of cellular activity, leading to the deterioration of physico-chemical and biological properties of AS. Based on these findings, this study can shed light on the role of the RAS hydrolyzed species distributions, closely relevant to Al dosage, in affecting the comprehensive properties of AS and provide a theoretical reference for coagulants dosage precise control in the pretreatment of industrial wastewater.  相似文献   
1000.
● A new adsorption-membrane separation strategy is used for phosphate removal. ● PVC/Zr-BT shows a selective adsorption ability to low-concentration phosphate. ● Low concentration of P below 0.05 mg/L was achieved in actual wastewater treatment. ● Algal biomass production served as a demonstration of phosphorus recycling. Enhanced phosphorus treatment and recovery has been continuously pursued due to the stringent wastewater discharge regulations and a phosphate supply shortage. Here, a new adsorption-membrane separation strategy was developed for rational reutilization of phosphate from sea cucumber aquaculture wastewater using a Zr-modified-bentonite filled polyvinyl chloride membrane. The as-obtained polyvinyl chloride/Zr-modified-bentonite membrane was highly permeability (940 L/(m2·h)), 1–2 times higher than those reported in other studies, and its adsorption capacity was high (20.6 mg/g) when the phosphate concentration in water was low (5 mg/L). It remained stable under various conditions, such as different pH, initial phosphate concentrations, and the presence of different ions after 24 h of adsorption in a cross-flow filtration system. The total phosphorus and phosphate removal rate reached 91.5% and 95.9%, respectively, after the membrane was used to treat sea cucumber aquaculture wastewater for 24 h and no other water quality parameters had been changed. After the purification process, the utilization of the membrane as a new source of phosphorus in the phosphorus-free f/2 medium experiments indicated the high cultivability of economic microalgae Phaeodactylum tricornutum FACHB-863 and 1.2 times more chlorophyll a was present than in f/2 medium. The biomass and lipid content of the microalgae in the two different media were similar. The innovative polyvinyl chloride/Zr-modified-bentonite membrane used for phosphorus removal and recovery is an important instrument to establish the groundwork for both the treatment of low concentration phosphate from wastewater as well as the reuse of enriched phosphorus in required fields.  相似文献   
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