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101.
为探讨有机肥长期培肥盐渍土后土壤富里酸(FA)结构组成及土壤环境的变化特征,对黑龙江西北部盐渍土壤连续5 a采取不同施肥处理,设置CK(对照)和TR1(处理1,施用有机肥8 000 kg/hm2)、TR2(处理2,施用有机肥4 000 kg/hm2及化肥N 80 kg/hm2、P2O5 50 kg/hm2、K2O 35 kg/hm2)、TR3(处理3,施用化肥N 160 kg/hm2、P2O5 100 kg/hm2、K2O 70 kg/hm2) 4个处理组,分析土壤中富里酸荧光光谱特征的变化情况. 结果表明:与CK比较,TR1、TR2处理可明显增加土壤中ρ(富里酸),增幅分别为98.24%、72.16%;二维荧光参数分析显示,各处理下富里酸腐殖化程度均表现为TR1>TR2>TR3>CK;三维荧光光谱区域积分比值分析结果进一步证实,TR1、TR2处理通过增加可见区类富里酸的荧光响应比值和减少紫外区类富里酸的荧光响应比值来提高富里酸的腐殖化程度. 根据三维荧光光谱结合平行因子分析结果,可将富里酸分为C1组分(生物可利用富里酸组分)、C2组分(陆生来源富里酸组分)及C3组分(类蛋白组分);施用有机肥主要增加C1组分的比例,其次为增加C2组分的比例,说明施用有机肥可提高盐渍土供肥能力,对盐渍土生态环境改善具有积极作用. 传统荧光图谱解析手段结合统计分析结果显示,施用有机肥可明显提高盐渍土富里酸含量并增加其腐殖化程度. 相似文献
102.
A review of textile industry: Wet processing,environmental impacts,and effluent treatment methods
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The word “textile” means to weave and was taken from the Latin word “texere.” Nowadays, textiles not only fulfill humankind's basic necessity for clothing, they also allow individuals to make fashion statements. As one of the oldest industries, the textile industry occupies a unique place in India. It is responsible for 14% of the total industrial manufacture in India. However, the textile industry is also considered to be one of the biggest threats to the environment. Pretreatment, dyeing, printing, and finishing operations are among the various stages of the industrial textile manufacturing process. These fabrication operations not only utilize huge quantities of power and water, they also generate considerable amounts of waste. The textile industry utilizes a number of dyes, chemicals, and other materials to impart the required qualities to the fabrics. These operations produce a significant amount of effluents. The quality of effluents is such that they cannot be put to other uses, and they can create environmental problems if they are disposed of without appropriate treatment. This review discusses different textile processing stages, pollution problems associated with these stages, and their eco‐friendly alternatives. Textile wet processing is described in detail, as it is the key process in the industry and it also generates the greatest amount of pollutants in textile processing. The environmental impact of textile effluents is discussed, as textile effluents not only impose negative effects on the quality of water and soil, they also imperil plant and animal health. In this paper, various methods for treating textile effluents are described. Discussion of physical, chemical, biological, and advanced treatment technologies of effluent treatment are included in this paper. 相似文献
103.
在实验室常温条件下,利用生物移动床(MBBR)处理模拟农村生活污水,通过检测反应器进出水中各污染物的浓度变化特性,确定MBBR挂膜条件及对污水的处理效果。研究表明,启动期活性污泥产生的黏性膨胀对挂膜有较大的影响,通过调节ρ(C)∶ρ(N)∶ρ(P)=100∶5∶1,可以改善此现象;MBBR运行稳定后,进水ρ(COD)、ρ(NH+4-N)、ρ(TP)分别为400,35,7 mg/L时,在p H约为7、ρ(DO)为2~4 mg/L、HRT为3h的条件下,COD、NH+4-N、TN、TP的去除率分别达到85%、85%、60%、70%。MBBR对农村面源污水有较好的处理效果,适合于处理污水管网系统落后的地区和乡镇的面源污水。 相似文献
104.
袁英兰 《辽宁城乡环境科技》2011,(6):49-51,56
针对我国村镇污水特点,尤其是北方村镇污水特点,分析了国内外常用村镇污水处理技术优缺点及其在我国北方地区的适用性。 相似文献
105.
106.
味精废水厌氧处理稳态运行的控制研究 总被引:4,自引:0,他引:4
就目前较难处理的高浓度味精废水用厌氧法进行了稳态运行的控制研究。在中温条件下,获得了高浓度味精废水高效稳态运行的控制参数。COD去除率可达70%以上,产气量可达10.5m~3/m~3·d,其中甲烷含量占58%以上。表明高浓度(谷氨酸)味精废水进行厌氧处理是可行的。 相似文献
107.
介绍了某焦化企业苯加工系统危险分析的步骤、过程,所解决的技术问题及分析结果,可作为其它焦化企业相关系统进行危险分析时参考。 相似文献
108.
109.
K. A. Rosentrater T. L. Richard C. J. Bern R. A. Flores 《Resources, Conservation and Recycling》2003,39(4):341-367
Increasing production of corn masa for tortillas, chips, and related snack foods is resulting in large quantities of organic residuals requiring environmentally sound management. These byproduct streams appear suitable for use as livestock feed material, thus eliminating landfilling costs. Possibilities for developing livestock feed include direct shipping to livestock feeding facilities, blending prior to shipping, extrusion processing, pellet mill processing, and dehydration. To assess the viability of these options for reprocessing masa byproducts as livestock feed materials, an economic model was developed and applied to each of these alternatives. Through a series of simulation runs with this model, it was determined that direct shipping was by far the most inexpensive means of recycling masa processing residuals (10–57 $/Mg). Other alternatives examined in increasing order of costs included blending prior to shipping, extrusion, pellet mill processing (3–15, 5–18, and 4–18 times greater than direct shipping, respectively), while dehydration was clearly cost-prohibitive (33–81 times greater). Bagged feed was slightly more expensive to produce than bulk feed (1.1 times greater), and reprocessing costs increased as delivery distance increased, due to increased labor, equipment, and fuel costs, but decreased as byproduct generation rate increased, due to the development of the economies of scale. Alternately, based on a tipping fee of 50 $/Mg, the total estimated cost to landfill ranged from 65 to 112 $/Mg. Based on this cost analysis, direct shipping and feeding to livestock is the recycling option of choice for masa processing byproducts. Although specific details of process configurations and associated costs will vary, similar results are likely for other high moisture food processing residuals destined for utilization as livestock feed or components thereof. 相似文献
110.