Although water and energy resources are well-recognized concerns regarding economic and social development sustainability, little specific research has focused on both water and energy problems at the same time. This ...Although water and energy resources are well-recognized concerns regarding economic and social development sustainability, little specific research has focused on both water and energy problems at the same time. This study analyzed the water and electricity-use patterns in Shenzhen, South China during 2001-2009. A curve regression method was used to examine the relationship between water and electricity use per gross domestic product (GDP) in Shenzhen and its three sectors, i.e., agriculture, industry & construction, and residential life & services. Results showed that agriculture only covered less than 10% of water and electricity use in Shenzhen, while industry & construction and residential life & services accounted for more than 90% of water and electricity use in Shenzhen, which coincided with the city's industrial structure. The water and electricity use per GDP in agriculture was the biggest among three sectors in Shenzhen during 2001-2009, which means inefficiency of water and electricity use in agriculture. Due to transitioning to advanced materials and manufacturing, both water and electricity use per GDP their utilization efficiencies gradually increased over time. in industry & construction decreased during 2001-2009 and The same held true for those in residential life & services transformed toward modern business, creative culture, finance services, etc. Derived from the survival of the fittest in competing for limited water and electricity resources, agriculture in Shenzhen has been gradually substituted by industry & construction and residential life & services, with much higher efficiencies of water and electricity use. And traditional agriculture will not be sustainable in the process of urbanization and industrialization, except high-tech intensive agriculture with low water and energy cost. Furthermore, by means of curve regression, we found that there was a significant quadratic relationship between water use per GDP and electricity use per GDP in the entire city and its three sectors. Suitable industrial transformation and advancement was a very effective way to save water and energy for modern cities. This can provide some reference for systematic planning and design of water and electricity allocation and use in agriculture, industry & construction and residential life & services in a city.展开更多
一体式膜工艺以其占地面积小、污染物去除效率高等优点在水处理工艺中逐渐应用.然而,长期运行后,传统颗粒性吸附剂存在加剧膜表面损伤的风险,同时大多数研究所用吸附剂价格较高,如纳米铁、碳纳米管等.针对上述问题,本文将铝盐混凝剂水...一体式膜工艺以其占地面积小、污染物去除效率高等优点在水处理工艺中逐渐应用.然而,长期运行后,传统颗粒性吸附剂存在加剧膜表面损伤的风险,同时大多数研究所用吸附剂价格较高,如纳米铁、碳纳米管等.针对上述问题,本文将铝盐混凝剂水解后形成的松散絮体直接注入膜池,基于腐殖酸(HA)和密云水库原水,考察了一体式絮体-超滤膜工艺运行效能及膜污染行为.结果表明,仅HA过膜时,第12 d跨膜压差(transmembrane pressure,TMP)急剧增至76. 4 k Pa,将膜组件取出经自来水清洗膜表面后TMP降为10. 1 k Pa (13 d),表明滤饼层是膜污染的主要形式,并且运行期间HA平均去除率仅为23. 3%.絮体注入频率、曝气强度及溶液pH能显著影响该工艺运行效能,尤其溶液pH.当采用连续投加方式将43. 2mmol·L-1铝盐絮体注入到pH为6. 0、曝气速率为0. 3 L·min-1膜池内时,膜污染程度显著降低,第12 d时TMP仅增长到19. 5 k Pa,清洗之后TMP降为5. 6 k Pa (13 d),此时HA平均去除率提高至61. 2%.此外,密云水库原水实验表明,当原水直接过膜时,TMP也急剧增加,运行12 d时TMP达到38. 0 k Pa,而清洗膜表面后TMP降低至3. 8 k Pa (13 d),滤饼层仍然为主要污染方式,同时有机质平均去除率为7. 5%.在上述最佳工艺条件下(曝气0. 3 L·min-1、溶液pH 6. 0)投加43. 2mmol·L-1铝盐絮体时,TMP增长也极其缓慢,12 d时仅增至6. 1 k Pa,膜表面清洗后TMP降至2. 3 k Pa (13 d),有机质平均去除率高达58. 6%.本研究表明一体式铝盐絮体-超滤膜在水处理中具有潜在的应用价值.展开更多
基金supported by the Project of Philosophy and Social Science of Shenzhen City of China during the 12th Five-Year Plan period(125A019and125A037)
文摘Although water and energy resources are well-recognized concerns regarding economic and social development sustainability, little specific research has focused on both water and energy problems at the same time. This study analyzed the water and electricity-use patterns in Shenzhen, South China during 2001-2009. A curve regression method was used to examine the relationship between water and electricity use per gross domestic product (GDP) in Shenzhen and its three sectors, i.e., agriculture, industry & construction, and residential life & services. Results showed that agriculture only covered less than 10% of water and electricity use in Shenzhen, while industry & construction and residential life & services accounted for more than 90% of water and electricity use in Shenzhen, which coincided with the city's industrial structure. The water and electricity use per GDP in agriculture was the biggest among three sectors in Shenzhen during 2001-2009, which means inefficiency of water and electricity use in agriculture. Due to transitioning to advanced materials and manufacturing, both water and electricity use per GDP their utilization efficiencies gradually increased over time. in industry & construction decreased during 2001-2009 and The same held true for those in residential life & services transformed toward modern business, creative culture, finance services, etc. Derived from the survival of the fittest in competing for limited water and electricity resources, agriculture in Shenzhen has been gradually substituted by industry & construction and residential life & services, with much higher efficiencies of water and electricity use. And traditional agriculture will not be sustainable in the process of urbanization and industrialization, except high-tech intensive agriculture with low water and energy cost. Furthermore, by means of curve regression, we found that there was a significant quadratic relationship between water use per GDP and electricity use per GDP in the entire city and its three sectors. Suitable industrial transformation and advancement was a very effective way to save water and energy for modern cities. This can provide some reference for systematic planning and design of water and electricity allocation and use in agriculture, industry & construction and residential life & services in a city.
文摘一体式膜工艺以其占地面积小、污染物去除效率高等优点在水处理工艺中逐渐应用.然而,长期运行后,传统颗粒性吸附剂存在加剧膜表面损伤的风险,同时大多数研究所用吸附剂价格较高,如纳米铁、碳纳米管等.针对上述问题,本文将铝盐混凝剂水解后形成的松散絮体直接注入膜池,基于腐殖酸(HA)和密云水库原水,考察了一体式絮体-超滤膜工艺运行效能及膜污染行为.结果表明,仅HA过膜时,第12 d跨膜压差(transmembrane pressure,TMP)急剧增至76. 4 k Pa,将膜组件取出经自来水清洗膜表面后TMP降为10. 1 k Pa (13 d),表明滤饼层是膜污染的主要形式,并且运行期间HA平均去除率仅为23. 3%.絮体注入频率、曝气强度及溶液pH能显著影响该工艺运行效能,尤其溶液pH.当采用连续投加方式将43. 2mmol·L-1铝盐絮体注入到pH为6. 0、曝气速率为0. 3 L·min-1膜池内时,膜污染程度显著降低,第12 d时TMP仅增长到19. 5 k Pa,清洗之后TMP降为5. 6 k Pa (13 d),此时HA平均去除率提高至61. 2%.此外,密云水库原水实验表明,当原水直接过膜时,TMP也急剧增加,运行12 d时TMP达到38. 0 k Pa,而清洗膜表面后TMP降低至3. 8 k Pa (13 d),滤饼层仍然为主要污染方式,同时有机质平均去除率为7. 5%.在上述最佳工艺条件下(曝气0. 3 L·min-1、溶液pH 6. 0)投加43. 2mmol·L-1铝盐絮体时,TMP增长也极其缓慢,12 d时仅增至6. 1 k Pa,膜表面清洗后TMP降至2. 3 k Pa (13 d),有机质平均去除率高达58. 6%.本研究表明一体式铝盐絮体-超滤膜在水处理中具有潜在的应用价值.