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891.
High-pressure homogenization (HPH) technology was applied as a pretreatment to disintegrate sewage sludge. The effects of homogenization pressure, homogenization cycle number, and total solid content on sludge disintegration were investigated. The sludge disintegration degree (DDCOD), protein concentration, and polysaccharide concentration increased with the increase of homogenization pressure and homogenization cycle number, and decreased with the increase of sludge total solid (TS) content. The maximum DDCOD of 43.94% was achieved at 80 MPa with four homogenization cycles for a 9.58 g/L TS sludge sample. A HPH sludge disintegration model of DDCOD= kNaPb was established by multivariable linear regression to quantify the effects of homogenization parameters. The homogenization cycle exponent a and homogenization pressure exponent b were 0.4763 and 0.7324 respectively, showing that the effect of homogenization pressure (P) was more significant than that of homogenization cycle number (N). The value of the rate constant k decreased with the increase of sludge total solid content. The specific energy consumption increased with the increment of sludge disintegration efficiency. Lower specific energy consumption was required for higher total solid content sludge. 相似文献
892.
The reaction mechanism of ozone (O3) addition to the double bonds of gas phase keto-limonene was investigated using ab initio methods. Two different possibilities for O3 addition to the double bond were considered and two corresponding van derWaals complexes (Complex 1 and Complex 2) were found for 1-endo and 2-endo. The rate constants were calculated using the transition state theory at the CCSD(T)/6-31G(d) + CF//B3LYP/6-31G(d,p) level. The high-pressure limit of the total rate constant at 298 K was 3.51 × 10-16 cm3/(molecule sec), which was in a good agreement with the experimental data. 相似文献
893.
It is important to screen strains that can decompose polycyclic aromatic hydrocarbons (PAHs) completely and rapidly with good adaptability for bioremediation in a local area. A bacterial strain JM2, which uses phenanthrene as its sole carbon source, was isolated from the active sewage sludge from a chemical plant in Jilin, China and identified as Pseudomonas based on 16S rDNA gene sequence analysis. Although the optimal growth conditions were determined to be pH 6.0 and 37℃, JM2 showed a broad pH and temperature profile. At pH 4.5 and 9.3, JM2 could degrade more than 40% of fluorene and phenanthrene (50 mg/L each) within 4 days. In addition, when the temperature was as low as 4℃, JM2 could degrade up to 24% fluorene and 12% phenanthrene. This showed the potential for JM2 to be applied in bioremediation over winter or in cold regions. Moreover, a nutrient augmentation study showed that adding formate into media could promote PAH degradation, while the supplement of salicylate had an inhibitive effect. Furthermore, in a metabolic pathway study, salicylate, phthalic acid, and 9-fluorenone were detected during the degradation of fluorene or phenanthrene. In conclusion, Pseudomonas sp. JM2 is a high performance strain in the degradation of fluorene and phenanthrene under extreme pH and temperature conditions. It might be useful in the bioremediation of PAHs. 相似文献
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为了保护人类健康不受恶劣环境的侵害,就必须对依法保护环境进行相关研究。提出了环境与健康是人类健康生存头等大事的观点,总结中国主要环境保护法律法规的不足,提出新的修订措施。提出6条保护环境的新法规建议供环境保护法修订时参考应用,主要包括:1)环境与健康及保护法规的宣传教育立法;2)医疗卫生机构设立环境医学防治学科立法;3)国家普及设立环境污染监测和预报系统立法;4)人民政府环境保护行政主管部门应扩展和延伸立法;5)国家在任何单位均应设立环境污染保护行政主管科室立法;6)国家设立外国在华企业环境保护行政主管部门立法。 相似文献
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本文作者通过十年间对大型电站噪声治理工作的回顾,分析了火电设备噪声产生的机理,对火力发电设备所产生的噪声进行了综合整治,设备的进气处噪声采取安装消声器,未达到降噪标准的部分通过在发声设备外侧敷设吸声材料,通过吸声材料内耗衰减,在控制生产性噪声上已取得较好效果,对火电厂降低噪声是一种有益的尝试。文章介绍了大型电站机组噪声的治理方法及取得的成效。积极响应国家节能减排政策,研究开发保温材料的隔声吸声作用,丰富其环保的内涵,先后对嘉电一期两台300MW机组、二期四台600MW机组锅炉侧磨煤机、送风机、一次风机、引风机、脱硫区域等设备进行噪声整治,合计治理面积近万平方米。采用微穿孔板吸声结构应用于化学精处理值班室噪声治理项目中。三期两台1000MW机组采用隔声墙有效降低厂界噪声等。浙能嘉电作为"国家职业卫生示范企业",在噪声治理方面也走在全国同行的前列。 相似文献
900.
随着焚烧技术在垃圾处理方式中普遍采用,焚烧产生的灰渣数量也日益增加。灰渣与飞灰中有毒的重金属及有机物质会污染土壤与地下水,对人类健康造成极大的影响。本文对各类垃圾焚烧灰渣的物理化学性质及重金属浸出特性进行了详细的阐述,介绍了灰渣的毒性分析与控制方法。通过分析可知:为了避免灰渣二次污染应该重点控制铬、镉、铍、铅等重金属和二恶英、呋喃等有机物的污染;处置后的灰渣有害离子浸出能力降低,根据灰渣物理和工程性质,可以成为再生资源充当填充材料和混凝土与沥青路面骨料等。 相似文献