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241.
清洁生产审计废物评估县企业进行清洁生产审计工作的技术关键,本文提出的评估技术方法的主要内容是,对审计重点进行总物料平衡和水总量平衡的实测。进行废物起因分析和废物排放量分析。利用该技术方法,对化纤印花生产示范实例进行了清洁生产审计评估和分析。 相似文献
242.
随着电子产品、汽车报废高峰期的到来,作为其基本材料的热固性塑料的废弃量增长迅速。通过对国内外废弃热固塑料资源化技术进行分析,可以发现目前废弃热固塑料资源化存在的主要问题是收集困难,分类辨识技术低。由于废弃热固塑料的来源存在明显差异,在其回收体系中分别采用P-R模式、D-R模式和P-C-R模式,对不同来源的废弃热固塑料进行回收;并通过制定经济激励措施,细化并强制执行塑料分类标识标准,规范再生行业,加快废弃塑料分类辨识技术研发等对策来促进废弃热固塑料的资源化。 相似文献
243.
高效加压溶气气浮工艺在炼油污水处理中的应用 总被引:1,自引:0,他引:1
戴赏菊 《石油化工环境保护》2006,29(2):26-27
通过对传统溶气气浮工艺及高效加压溶气气浮工艺(SUPR-DAF)的工作原理、工艺流程、气浮效果、运行管理、技术经济等方面加以比较、分析,显示出SUPR-DAF工艺的高效性、灵活性、优越性。该工艺可适用于任何改建、扩建、新建的炼油污水处理项目。 相似文献
244.
废电池的环境污染及资源化价值分析 总被引:11,自引:0,他引:11
分析了各类废电池的资源化,安再生利用价值由高到低顺序依次为铅酸蓄电池、镍镉、镍氢电池、普通干电池。电池中含有的主要污染物质包括重金属以及酸、碱等电解质溶液。对环境和人体健康危害较大的废电池类别主要为:(1)含汞电池,指氧化汞电池,部分汞含量较高的锌锰和碱锰干电池;(2)铅酸蓄电池;(3)含镉电池,主要是Ni-Cd电池。废电池中化学物质释放进入环境过程是在电池包壳破损后发生的,或者是电池包壳本身发生浸蚀作用。普通家用干电池中的污染物质大多呈固态,由电池内部迁移到环境中是一种缓慢的过程。文中还分析了废电池污染环境的主要途径、采用各种不同处理、处置方式管理废电池可能引起的环境污染。 相似文献
245.
生物质转化利用技术研究进展 总被引:5,自引:0,他引:5
综述了当前国内外生物质转化利用技术的原理和特点,分析了生物质转化利用技术的研究现状以及存在的问题,展望了生物质利用的发展前景。 相似文献
246.
Penghao Su Yuejiao Hao Zhe Qian Weiwei Zhang Jing Chen Fan Zhang Fang Yin Daolun Feng Yingjun Chen Yifan Li 《环境科学学报(英文版)》2020,32(5):262-270
Ship auxiliary engines contribute large amounts of air pollutants when at berth.Biodiesel,including that from waste cooking oil(WCO),can favor a reduction in the emission of primary pollutant when used with internal combustion engines.This study investigated the emissions of gaseous intermediate-volatile organic compounds(IVOCs) between WCO biodiesel and marine gas oil(MGO) to further understand the differences in secondary organic aerosol(SOA) production of exhausts.Results revealed that WCO exhaust exhibited similar IVOC composition and volatility distribution to MGO exhaust,despite the differences between fuel contents.While WCO biodiesel could reduce IVOC emissions by 50% as compared to MGO,and thus reduced the SOA production from IVOCs.The compositions and volatility distributions of exhaust IVOCs varied to those of their fuels,implying that fuel-component-based SOA predicting model should be used with more cautions when assessing SOA production of WCO and MGO exhausts.WCO biodiesel is a cleaner fuel comparing to conventional MGO on ship auxiliary engines with regard to the reductions in gaseous IVOC emissions and corresponding SOA productions.Although the tests were conducted on test bench,the results could be considered as representative due to the widely applications of the test engine and MGO fuel on real-world ships. 相似文献
247.
基于生命周期评价(LCA),对生物质气化费托合成制航煤(Bio-Jet Fuel)工艺进行资源-环境性分析.根据副产品水蒸汽的用途研究了供热和发电两种方案,并进行了数据不确定度分析.结果显示:除EP指标外,发电方案的各环境影响指标比供热方案降低了11.7%~40.8%.相比化石航煤,生物质航煤GWP降低52.6%~71.9%,不可再生资源消耗减少84.4%~93.6%.生物质生长阶段采用不同的分配方法,资源消耗潜值差异较小,但GWP、EP环境影响负荷会产生较大差异.且生物质航煤综合性能对原料消耗率敏感性最大,变化幅度为-16.6%~+17.3%.采用不确定度分析方法对评价结果进行数据质量评估,各环境影响类型的不确定度处于5.0%~12.5%. 相似文献
248.
An advanced anaerobic biofilter (AF) was introduced for the treatment of coal gasification wastewater (CGW), and effluent recirculation was adopted to enhance phenol removal and methane production. The results indicated that AF was reliable in treating diluted CGW, while its efficiency and stability were seriously reduced when directly treating raw CGW. However, its performance could be greatly enhanced by effluent recirculation. Under optimal effluent recirculation of 0.5 to the influent, concentrations of chemical oxygen demand (COD) and total phenol in the effluent could reach as low as 234.0 and 14.2 mg/L, respectively. Also, the rate of methane production reached 169.0 mL CH4/L/day. Though CGW seemed to restrain the growth of anaerobic microorganisms, especially methanogens, the inhibition was temporary and reversible, and anaerobic bacteria presented strong tolerance. The activities of methanogens cultivated in CGW could quickly recover on feeding with glucose wastewater (GW). However, the adaptability of anaerobic bacteria to the CGW was very poor and the activity of methanogens could not be improved by long-term domestication. By analysis using the Haldane model, it was further confirmed that high effluent recirculation could result in high activity for hydrolytic bacteria and substrate affinity for toxic matters, but only suitable effluent recirculation could result in high methanogenic activity. 相似文献
249.
The adsorption characteristics and mechanisms of the biosorbent from waste activated sludge were investigated by adsorbing Pb2+and Zn2+in aqueous single-metal solutions. A p H value of the metal solutions at 6.0 was beneficial to the high adsorption quantity of the biosorbent. The optimal mass ratio of the biosorbent to metal ions was found to be 2. A higher adsorption quantity of the biosorbent was achieved by keeping the reaction temperature below 55°C. Response surface methodology was applied to optimize the biosorption processes, and the developed mathematical equations showed high determination coefficients(above 0.99 for both metal ions) and insignificant lack of fit(p = 0.0838 and 0.0782 for Pb2+and Zn2+, respectively). Atomic force microscopy analyses suggested that the metal elements were adsorbed onto the biosorbent surface via electrostatic interaction. X-ray photoelectron spectroscopy analyses indicated the presence of complexation(between –NH2,-CN and metal ions) and ion-exchange(between –COOH and metal ions). The adsorption mechanisms could be the combined action of electrostatic interaction, complexation and ion-exchange between functional groups and metal ions. 相似文献
250.