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431.
张宁  庞军  温婧  王军霞 《中国环境科学》2022,42(5):2442-2452
通过构建电力部门细分的CGE模型,分别在电价管制和完全竞争市场背景下,评估了取消电价交叉补贴和可再生能源电价补贴,以及引入碳税政策并将碳税收入转移支付给风电及光伏行业的经济影响.研究发现:取消电价交叉补贴对GDP有负面影响,而取消可再生能源电价补贴后GDP有所提升;相比完全竞争市场,电价管制市场背景下取消电价交叉补贴对GDP的负面冲击强度增加了0.003%,而取消可再生能源电价补贴对GDP的促进作用幅度则相对减小0.056%;同时取消两种补贴时,在电价管制市场背景下GDP相比基准情景下降了0.022%,而在完全竞争市场背景下GDP则增加了0.038%.电价管制市场背景下取消电价补贴对电力结构及能源结构影响较小;而在完全竞争市场背景下取消电价补贴将刺激传统电力消费并导致碳排放有所增加.引入碳税政策并将碳税收入转移支付给风电及光伏行业可以有效控制碳排放并促进电力结构和能源结构改善,但会对行业总产出和GDP产生更大的负面冲击.我国未来应适度放开电价管制,并采取诸如适时征收碳税并将其收入转移支付给风电和光伏行业的支持性政策,推动我国能源结构优化和节能减排目标的实现.  相似文献   
432.
研究了3种外源硫(Na2SO4、Na2SO3和Na2S2O3·5H2O)对Desulfovibrio desulfuricans sub sp.(D.desulfuricans sp.)的胞外聚合物(EPS)的胁迫/诱导作用。结果表明,在还原性硫源0.50g/L Na2SO3的条件下,EPS产量最高,为2104.39mg/g VSS,蛋白质含量为1888.52mg/g VSS,较胁迫/诱导前均提高了300%以上;其对Zn(Ⅱ)的吸附性能最好,为954.4mg/g EPS,提高了98.17%。三维荧光(3D-EEM)结果表明,胁迫/诱导后EPS中类酪氨酸均大量增加;傅里叶红外光谱(FTIR)结果表明,胁迫后-OH、C=O、C-O-C等官能团均大量增加,在Zn(Ⅱ)的吸附中发挥了重要作用;X光电子能谱(XPS)结果表明,在还原性硫源(Na2SO3和Na2S2O3·5H2O)胁迫/诱导后,EPS中C-O/C-N、C=N和某种含氧基团(X)大量增加,可能是吸附Zn(Ⅱ)的主要基团。  相似文献   
433.
Drinking water utilities are interested in upgrading their treatment facilities to enhance micropollutant removal and byproduct control. Pre-oxidation by chlorine dioxide (ClO2) followed by coagulation-flocculation-sedimentation and advanced oxidation processes (AOPs) is one of the promising solutions. However, the chlorite (ClO2) formed from the ClO2 pre-oxidation stage cannot be removed by the conventional coagulation process using aluminum sulfate. ClO2 negatively affects the post-UV/chlorine process due to its strong radical scavenging effect, and it also enhances the formation of chlorate (ClO3). In this study, dosing micromolar-level ferrous iron (Fe(II)) into aluminum-based coagulants was proposed to eliminate the ClO2 generated from ClO2 pre-oxidation and benefit the post-UV/chlorine process in radical production and ClO3 reduction. Results showed that the addition of 52.1-µmol/L FeSO4 effectively eliminated the ClO2 generated from the pre-oxidation using 1.0 mg/L (14.8 µmol/L) of ClO2. Reduction of ClO2 increased the degradation rate constant of a model micropollutant (carbamazepine) by 55.0% in the post-UV/chlorine process. The enhanced degradation was verified to be attributed to the increased steady-state concentrations of HO· and ClO· by Fe(II) addition. Moreover, Fe(II) addition also decreased the ClO3 formation by 53.8% in the UV/chlorine process and its impact on the formation of chloro-organic byproducts was rather minor. The findings demonstrated a promising strategy to improve the drinking water quality and safety by adding low-level Fe(II) in coagulation in an advanced drinking water treatment train.  相似文献   
434.
As the biggest inter-basin water transfer scheme in the world,the South-to-North Water Diversion Project(SNWD) was designed to alleviate the water crisis in North China.The main channel of the middle route of the SNWD is of great concern in terms of the drinking water quality.In this study,we tested the hypothesis that the dissolved organic matter(DOM) derived from the planktonic algae causes the rising levels of CODMn along the middle route by monitoring data on water quality(2015-20...  相似文献   
435.
Recently, layered double hydroxide-peroxodisulfate (LDH-PDS) as an advanced oxidation system can effectively remove organics by the pathway of free radical. However, little has been known if there is a potential risk regarding the formation of high toxic iodine byproducts through another pathway when LDH-PDS is used in high iodide waters at coastal areas. Therefore, this study investigated phenol degradation pathways and transformation products to evaluate both removal mechanism and potential risk by LDH-PDS in high iodide waters. The results showed that in LDH-PDS system, with the degradation of PDS, phenol degraded till below detection limit in 1 hr in the presence of iodide, while PDS and phenol were hardly degraded in the absence of iodide, indicating iodide accelerated the transformation of PDS and the degradation of phenol. What is more, it reached the highest phenol removal efficiency under the condition of 100 mg/L LDH, 0.1 mmol/L PDS and 1.0 mmol/L iodide. In LDH-PDS system, iodide was rapidly oxidized by the highly active interlayer PDS, resulting in the formation of reactive iodine including hypoiodic acid, iodine and triiodide instead of free radicals, which contributed rapid degradation of phenol. However, unfortunately toxic iodophenols were detected. Specifically, 2-iodophenol and 4-iodophenol were formed firstly, afterwards 2,4-diiodophenol and 2,6-diiodophenol were produced, and finally iodophenols and diiodophenols gradually decreased and 2,4,6-Triiodophenol were produced. These results indicated that LDH-PDS should avoid to use in high iodide waters to prevent toxic iodine byproduct formation although iodide can accelerate phenol degradation.  相似文献   
436.
437.
米曲霉发酵厨余垃圾制备富酶产物的研究   总被引:1,自引:0,他引:1       下载免费PDF全文
为了探讨利用微生物发酵厨余垃圾产酶的最佳条件,实现厨余垃圾高值资源化,选取米曲霉为试验菌种,基于米曲霉BNCC142787 (简称“米曲霉B”)、米曲霉CGMCC3.4427 (简称“米曲霉C”)的生长特性解析,研究不同培养方式(静置、振荡)和培养温度(30、35、40 ℃)对米曲霉好氧发酵厨余垃圾产酶性能的影响. 结果表明:米曲霉B和米曲霉C分别在30 ℃和40 ℃、pH为6的培养条件下生长最佳;与静置培养相比,振荡培养可显著提高米曲霉菌丝体的形成和生长速率,促进淀粉酶和蛋白酶分泌. 米曲霉B在40 ℃下厨余垃圾好氧发酵48 h时蛋白酶活性最高,为66.64 U/g;在30 ℃下好氧发酵48 h时,其淀粉酶活性最佳,为129.44 U/g. 米曲霉C在40 ℃下、厨余垃圾好氧发酵96 h时蛋白质酶和淀粉酶活性均达到最高,分别为64.02和131.11 U/g. 研究显示,米曲霉B和米曲霉C产生蛋白酶与淀粉酶的能力相当,但米曲霉B生长速率快,所需发酵时间短,可在温和的条件下实现产酶,因此采用米曲霉B在40 ℃、好氧发酵48 h条件下进行酶源制备,可充分利用厨余垃圾中的营养物质获得富含淀粉酶和蛋白酶的产物,具有显著的应用潜力.   相似文献   
438.
439.
城市大气环境由于受人为活动影响,具有较高大气汞浓度和时空分布不均一特征。植被叶片虽具有较强富集大气汞的能力,但能否指示城市大气汞时空变化,目前尚有存疑。本文通过连续监测新疆乌鲁木齐市区内6个采样点5种常见树种叶片,在生长季(2019年5~10月)内的汞浓度,分析树叶汞浓度的时空分布变化特征,进而寻找潜在的最优树种叶片,反演乌鲁木齐大气汞污染程度。结果表明,城市内的局地污染能够显著提高叶片汞浓度;树种叶片对大气汞浓度的敏感性存在明显差异(P<0.01);落叶阔叶树的叶汞浓度与叶片生长时间呈显著正相关关系(P<0.01),即叶片在整个生长期不断积累大气汞;而针叶汞浓度一年之内与生长时间无显著关系。考虑到圆冠榆叶片对大气汞浓度敏感性较高且分布范围更广,圆冠榆作为乌鲁木齐城市大气汞的生物监测器较为合适。本研究为研究城市大气汞浓度生物监测提供了典型的案例与借鉴。  相似文献   
440.
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