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751.
Biological soil disinfestation is an effective method to control soil-borne disease by flooding and incorporating with organic amendments, but field conditions and resources sometimes limited its practical application. A laboratory experiment was conducted to develop practice guidelines on controlling Fusarium wilt, a widespread banana disease caused by Fusarium oxysporum f. sp. cubense (FOC). FOC infested soil incorporated with rice or maize straw at rates of 1.5 tons/ha and 3.0 tons/ha was incubated under flooded or water-saturated (100% water holding capacity) conditions at 30°C for 30 days. Results showed that FOC populations in the soils incorporated with either rice or maize straw rapidly reduced more than 90% in the first 15 days and then fluctuated till the end of incubation, while flooding alone without organic amendment reduced FOC populations slightly. The rapid and dramatic decrease of redox potential (down to − 350 mV) in straw-amended treatments implied that both anaerobic condition and strongly reductive soil condition would contribute to pathogen inactivation. Water-saturation combined with straw amendments had the comparable effects on reduction of FOC, indicating that flooding was not indispensable for inactivating FOC. There was no significant difference in the reduction of FOC observed in the straw amendments at between 1.5 and 3 tons/ha. Therefore, incorporating soil with straw (rice or maize straw) at a rate of 3.0 tons/ha under 100% water holding capacity or 1.5 tons/ha under flooding, would effectively alleviate banana Fusarium wilt caused by FOC after 15-day treating under 30°C. 相似文献
752.
Simona Caprarescu Mihai Cosmin Corobe Violeta Purcar Catalin Ilie Spataru Raluca Ianchis Gabriel Vasilievici Zina Vuluga 《环境科学学报(英文版)》2015,35(9):27-37
Heterogeneous membranes were obtained by using styrene-acrylonitrile copolymer (SAN) blends with low content of ion-exchanger particles (5 wt.%). The membranes obtained by phase inversion were used for the removal of copper ions from synthetic wastewater solutions by electrodialytic separation. The electrodialysis was conducted in a three cell unit, without electrolyte recirculation. The process, under potentiostatic or galvanostatic control, was followed by pH and conductivity measurements in the solution. The electrodialytic performance, evaluated in terms of extraction removal degree (rd) of copper ions, was better under potentiostatic control then by the galvanostatic one and the highest (over 70%) was attained at 8 V. The membrane efficiency at small ion-exchanger load was explained by the migration of resin particles toward the pores surface during the phase inversion. The prepared membranes were characterized by various techniques i.e. optical microscopy, Fourier transform infrared spectroscopy, scanning electron microscopy, thermogravimetric analysis and differential thermal analysis and contact angle measurements. 相似文献
753.
754.
2012年木兰县监测站对木兰县饮用水源地水质状况进行了监测,监测了六项常规的监测项目,其中包括:pH、总硬度、铁、锰、浑浊度、总大肠菌群.通过这些监测数据可知,木兰县饮用水源地中pH、总硬度、浑浊度均能达到中国《生活饮用水卫生标准》和国家《地下水质量标准》(GB 14848-93)规定,总大肠菌群四个季度均未检出,但铁的含量在第三季度出现超标情况,锰的含量在第一、二、三季度出现超标,本文分析了超标的成因及处理的方法,并提出建议. 相似文献
755.
针对污水处理过程中存在的难降解有机物问题,介绍了芬顿的概念和特点,探讨了均相芬顿氧化在原位产生芬顿试剂的机理及应用.目前均相芬顿氧化技术总体可归纳为超声-芬顿氧化技术、微波-芬顿氧化技术、光-芬顿氧化技术、电-芬顿氧化技术.这些技术的应用能促进有机物的降解,提高芬顿技术的处理效率.通过介绍芬顿氧化技术降解废水中污染物的机理,综述了均相芬顿氧化技术在废水处理中的应用,分析了各种方法的适用范围和优缺点. 相似文献
756.
采用电化学沉积法将纳米钯粒子负载在钛板上,制备钛负载纳米钯粒子的NanoPd/Ti电极.利用循环伏安法和线性扫描伏安法对比研究NanoPd/Ti电极与Ti电极的电化学性能,以及分别对氯苯和硝基苯模拟废水电化学催化性能,表明NanoPd/Ti电极循环伏安过程出现新的氧化峰和还原峰,反应电位明显正移,反应过程峰电流也明显增大.通过降解实验,NanoPd/Ti电极可以在更低电压,更短时间内达到更好CODcr去除效果. 相似文献
757.
针对人类社会在日常运转中产生的大量餐厨垃圾,当下最有效的应对措施是发展相关的餐厨垃圾处理产业,以相关的工作模式和工作设备来应对餐厨垃圾的处理工作。由于餐厨垃圾的特殊性,不同于一般的日常生活垃圾,因此餐厨垃圾的处理设备自然也就有独特的特点与性质。当下社会中餐厨垃圾处理设备行业的发展可谓如火如荼,各种各样的餐厨垃圾处理设备应运而生,针对餐厨垃圾处理设备的发展现状与发展趋势详细的探讨,对促进中国餐饮垃圾处理行业的发展具有借鉴意义。 相似文献
758.
U. Pinto 《中国人口.资源与环境(英文版)》2015,13(3):250-264
The demand for potable water is rising rapidly due to an ever-increasing population, economic activities, and dwindling water supplies. To provide adequate water supplies in the future, understanding the issues and challenges in the reuse of water and developing appropriate strategies for reuse will be critical. One way to augment water supplies for residential use is to reuse graywater – the wastewater from kitchens, bathrooms, and laundries. In this article, we critically review the evolution of water reuse, the definition of graywater, graywater reuse practices, volumes and flow in different situations, and graywater characteristics. We then examine the issues associated with different graywater treatment methods and how using graywater for irrigation around homes affects soil quality and plant growth. The study concludes that graywater treatment costs, human health risks, and its effect on soil quality are some of the challenges that need to be addressed in the future for widespread and sustainable reuse of graywater for irrigation around homes. 相似文献
759.
760.
Effects of gas flow rate, inlet concentration and temperature on the biofiltration of toluene vapors 总被引:2,自引:0,他引:2
Vergara-Fernández A Lara Molina L Pulido NA Aroca G 《Journal of environmental management》2007,84(2):115-122
In this work the variation in the elimination capacity of a biofilter as a function of the gas flow and toluene concentration was studied. A bioreactor 0.75 m high x 14.5 cm diameter was used, divided into three equal stages, using compost to support the microorganisms, and sea shells to control the pH. The biofiltration of toluene was evaluated for flows between 0.12 and 0.73 m(3)h(-1) in a concentration range of 1-3.2 gm(-3). It was observed that on increasing the toluene inlet load by 90% (from 37 to 70 gm(3)h(-1)), the conversion by the biofilter varied by only 5% (from 98% to 93%). The biofiltration system used achieved elimination capacities of up to 82 gm(-3)h(-1) for a toluene load of 100 gm(-3)h(-1). 相似文献