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131.
Effect of wastewater composition on the calcium carbonate precipitation in upflow anaerobic sludge blanket reactors 总被引:1,自引:0,他引:1
Shucheng Yang Yanling He Yonghong Liu Charles Chou Pengxiang Zhang Dongqi Wang 《Frontiers of Environmental Science & Engineering in China》2010,4(2):142-149
Calcium carbonate often precipitates in anaerobic reactors treating wastewater with high calcium content. The aim of this
paper is to study the effect of wastewater composition on calcium carbonate precipitation in upflow anaerobic sludge blanket
(UASB) reactors. Two laboratory-scale UASB reactors were operated with calcium-containing influents using acetate and carbohydrate
as substrate, respectively. There was an obvious accumulation of inorganic precipitate observed in the biogranules. Observations
via scanning electron microscope (SEM) and energy dispersive spectroscopy (EDS) showed that the acclimated biogranules in
the two reactors differed in microstructure. Calcium carbonate was found to have precipitated on the surface of acetate-degrading
biogranules, but precipitated at the core of the carbohydrate-degrading biogranules. The results indicated that substrates
had significant influence on the location of calcium carbonate precipitation in anaerobic granular sludge, which was expected
due to the different methanogens distribution and pH gradient within the granular sludge degrading various substrates. Moreover,
the location of calcium carbonate precipitation substantially affected the specific methanogenic activity (SMA) of the granular
sludge. The SMA of the acetate-degrading biogranules dropped from $
1.96 gCOD_{CH_4 } \cdot gVSS^{ - 1} \cdot d^{ - 1}
$
1.96 gCOD_{CH_4 } \cdot gVSS^{ - 1} \cdot d^{ - 1}
to $
0.61 gCOD_{CH_4 } \cdot gVSS^{ - 1} \cdot d^{ - 1}
$
0.61 gCOD_{CH_4 } \cdot gVSS^{ - 1} \cdot d^{ - 1}
after 180-d of operation in the reactor. However, the SMA of the carbohydrate-degrading biogranules was not adversely affected
by calcium carbonate precipitation. 相似文献
132.
磷矿山清洁生产评价指标体系的构建——以贵阳市磷矿山为例 总被引:1,自引:1,他引:0
通过对磷矿山清洁生产评价指标选取原则和筛选方法的确定。并结合磷矿山的实际情况,经过多次专家咨询,从而筛选出适合磷矿山清洁生产的具体评价指标。并按层次分析法(AHP)的特点确定目标层、准则层、指标层、指标因子层四个层次,其中,目标层有1项;准则层有6项;指标层有28项;指标因子层有9项,最后建立磷矿山清洁生产评价指标体系,这将为磷矿采选业清洁生产评价提供技术支持和导向,从而有助于磷矿企业推行清洁生产技术,实现可持续发展。 相似文献
133.
134.
135.
随着中国生态环境影响评价的开展,中国正在积极推进生态经济评价预测层次上的环评,对其评价方法提出了更高的要求。当前国内外所用生态价值评价方法缺乏环境与经济相联系起来和在决策中体现生态环评结果的方法,缺乏量化评价指标体系及评价方法,没有从系统的角度考虑一个动态的、复杂系统的环境影响因素。在系统分析生态环境影响评价中经济评价方法的基础上,对吉林省三岔子林业局天然林生态系统中保持水土、涵养水源、调节气候、净化大气等生态价值进行生态环境影响经济分析、预测、评价,首先建立该区天然林生态系统服务价值评估指标体系,并结合野外调查测量及实地数据分析,初步对天然林生态系统价值进行测算;其次利用灰色系统预测分析,对2009年-2028年三岔子林业局天然林生态系统价值进行预测,最后计算出天然林生态系统带来的经济效益。 相似文献
136.
Natural zeolite was modified by loading cetylpyridinium bromide (CPB) to create more e cient sites for humic acid (HA) adsorption.
The natural and CPB modified zeolites were characterized with X-ray di raction, field emission scanning electron microscopy, Fourier
transform infrared spectroscopy and elemental analysis. The e ects of various experimental parameters such as contact time, initial HA
concentration, solution pH and coexistent Ca2+, upon HA adsorption onto CPB modified zeolites were evaluated. The results showed
that natural zeolite had negligible a nity for HA in aqueous solutions, but CPB modified zeolites exhibited high adsorption e ciency
for HA. A higher CPB loading on natural zeolites exhibited a larger HA adsorption capacity. Acidic pH and coexistent Ca2+ were
proved to be favorable for HA adsorption onto CPB modified zeolite. The kinetic process was well described by pseudo second-order
model. The experimental isotherm data fitted well to Langmuir and Sips models. The maximum monolayer adsorption capacity of CPB
modified zeolite with surfactant bilayer coverage was found to be 92.0 mg/g. 相似文献
137.
138.
总结了国内外著名跨国石油公司海外员工健康管理的方法和实践,对当前海外员工管理进行综合研究、分析,以某典型石油公司为例,提出海外员工健康管理平台的构建方法。 相似文献
139.
Yanhui Zhan Jianwei Lin Yanling Qiu Naiyun Gao Zhiliang Zhu 《Frontiers of Environmental Science & Engineering in China》2011,5(1):65-75
Surfactant-modified natural zeolites (SMNZ) with different coverage types were prepared by loading hexadecyltrimethyl ammonium
bromide (HTAB) onto the surface of a natural zeolite. The adsorption behavior of humic acid (HA) on SMNZ was investigated.
Results indicate that the adsorbent SMNZ exhibited a higher affinity toward HA than the natural zeolite. HA removal efficiency
by SMNZ increased with HTAB loading. Coexisting Ca2+ in solution favored HA adsorption onto SMNZ. Adsorption capacity decreased with an increasing solution pH. For typical SMNZ
with bilayer HTAB coverage, HA adsorption process is well described by a pseudo-second-order kinetic model. The experimental
isotherm data fitted well with the Langmuir model. Calculated maximum HA adsorption capacities for SMNZ with bilayer HTAB
coverage at pH 5.5 and 7.5 were 63 and 41 mg·g−1, respectively. E2/E3 (absorbance at 250 nm to that at 365 nm) and E4/E6 (absorbance at 465 nm to that at 665 nm) ratios of
the residual HA in solution were lower than that of the original HA solution. This indicates that the HA fractions with high
polar functional groups, low molecular weight (MW), and aromaticity had a stronger tendency for adsorption onto SMNZ with
bilayer HTAB coverage. Results show that HTAB-modified natural zeolite is a promising adsorbent for removal of HA from aqueous
solution. 相似文献
140.
Pratim Biswas Wei-Ning Wang Woo-Jin An 《Frontiers of Environmental Science & Engineering in China》2011,5(3):299-312
Energy issues are important and consumption is slated to increase across the globe in the future. The energy-environment nexus
is very important as strategies to meet future energy demand are developed. To ensure sustainable growth and development,
it is essential that energy production is environmentally benign. There are two temporal issues—one that is immediate, and
needs to address the environmental compliance of energy generation from fossil fuel sources; and second that is the need to
develop newer alternate and more sustainable approaches in the future. Aerosol science and technology is an enabling discipline
that addresses the energy issue over both these time scales. The paper is a review of aspects of aerosol science and engineering
that helps address carbon neutrality of fossil fuels. Advanced materials to meet these challenges are discussed. Future approaches
to effective harvesting of sunlight that are enabled by aerosol studies are discussed. 相似文献