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201.
卢伟  朱曜曜  魏彬  杜蓉  汪力 《环境工程学报》2023,17(9):2813-2819
以华中地区某污水处理厂 (设计规模:25×104 m3·d−1) 为例,分析城镇污水处理厂的节能降碳的有效措施。该厂在2021年底实施了系列节能高效运行和工艺优化创新措施,取得显著降碳效果。措施包括:采用节能高效设备、生化池按需曝气、光伏发电等节约电耗措施,以及强化生物除磷、优化化学除磷、多点配水节约碳源、智能加药等。对比分析该污水处理厂2022年的运行数据与2019—2021年的数据。年平均吨水电耗、吨水消耗碳源、吨水消耗除磷剂分别由0.192 kW·h·m−3、5.010 mg·L−1 、4.199 mg·L−1降至0.161 kW·h·m−3、0 mg·L−1、2.980 mg·L−1。污水处理厂年消耗电费、药费等直接运行成本节约39.6%, 间接碳排放强度减少20.3%。相关举措可为类似污水处理厂的从运行管理角度实现减污降碳协同增效提供参考。  相似文献   
202.
孙旭  苏命  曹腾心  艾宇帆  厉巍  杨敏 《环境工程学报》2023,17(10):3148-3158
为明晰藻细胞最基本属性细胞形态在藻种时空分布与竞争演替中扮演的角色,选择来自蓝藻、绿藻等藻门的45个具有不同细胞形态特征的常见藻种,通过实验室分析藻细胞形态特征参数与光合特征间相关关系,并基于于桥水库藻类种群监测数据探究藻类形态时空分布的驱动因素。研究发现,反映藻细胞光合作用过程中捕光潜力的细胞投影面积 (CPA) 是影响藻种光合特性的关键形态学参数;通过构建CPA与光系统II中调节性能量耗散量子产量 (Y(NPQ))、光响应曲线初始斜率 (α) 、最大电子传递速率 (ETRmax) 等光合参数建的关系模型,发现CPA与Y(NPQ)呈现强正相关关系 (R2 = 0.31±0.01,p < 0.001) ,Y(NPQ)是影响藻类种群时空分布的关键参数。于桥水库中藻类种群的综合Y(NPQ)具有显著季节性,由春季到夏季逐渐降低,夏季藻类综合Y(NPQ)最低 (0.057±0.075) ,秋冬季呈现增加趋势,冬季藻类综合Y(NPQ)最高 (0.072±0.062) 。此外,藻类种群综合Y(NPQ)随水深增加呈降低趋势,Y(NPQ)是影响藻类形态空间分布的重要因素。基于于桥水库数据制定了以水体Y(NPQ)为核心的有害藻类预警防控体系,以期为实现针对水源地不同形态有害藻类的预警提供参考。  相似文献   
203.
The application of artificial intelligence techniques for performance optimization of the fuel lean gas reburn (FLGR) system is investigated. A multilayer, feedforward artificial neural network is applied to model static nonlinear relationships between the distribution of injected natural gas into the upper region of the furnace of a coal-fired boiler and the corresponding oxides of nitrogen (NOx) emissions exiting the furnace. Based on this model, optimal distributions of injected gas are determined such that the largest NOx reduction is achieved for each value of total injected gas. This optimization is accomplished through the development of a new optimization method based on neural networks. This new optimal control algorithm, which can be used as an alternative generic tool for solving multidimensional nonlinear constrained optimization problems, is described and its results are successfully validated against an off-the-shelf tool for solving mathematical programming problems. Encouraging results obtained using plant data from one of Commonwealth Edison's coal-fired electric power plants demonstrate the feasibility of the overall approach. Preliminary results show that the use of this intelligent controller will also enable the determination of the most cost-effective operating conditions of the FLGR system by considering, along with the optimal distribution of the injected gas, the cost differential between natural gas and coal and the open-market price of NOx emission credits. Further study, however, is necessary, including the construction of a more comprehensive database, needed to develop high-fidelity process models and to add carbon monoxide (CO) emissions to the model of the gas reburn system.  相似文献   
204.
Environmental Science and Pollution Research - Ionizing radiation (IR) is a form of high energy. It poses a serious threat to organisms, but radiotherapy is a key therapeutic strategy for various...  相似文献   
205.
Environmental Science and Pollution Research - Magnetic nanostructured MnFe2O4 with different morphologies, synthesized via chemical co-precipitation and hydrothermal method, was assayed as...  相似文献   
206.
Environmental Science and Pollution Research - The pollution of heavy metals (HMs) in the soil has become one of the important factors affecting the national environment and human health....  相似文献   
207.

Microbial communities are important for high composting efficiency and good quality composts. This study was conducted to compare the changes of physicochemical and bacterial characteristics in composting from different raw materials, including chicken manure (CM), duck manure (DM), sheep manure (SM), food waste (FW), and vegetable waste (VW). The role and interactions of core bacteria and their contribution to maturity in diverse composts were analyzed by advanced bioinformatics methods combined sequencing with co-occurrence network and structural equation modeling (SEM). Results indicated that there were obviously different bacterial composition and diversity in composting from diverse sources. FW had a low pH and different physiochemical characteristics compared to other composts but they all achieved similar maturity products. Redundancy analysis suggested total organic carbon, phosphorus, and temperature governed the composition of microbial species but key factors were different in diverse composts. Network analysis showed completely different interactions of core bacterial community from diverse composts but Thermobifida was the ubiquitous core bacteria in composting bacterial network. Sphaerobacter and Lactobacillus as core genus were presented in the starting mesophilic and thermophilic phases of composting from manure (CM, DM, SM) and municipal solid waste (FW, VW), respectively. SEM indicated core bacteria had the positive, direct, and the biggest (>?80%) effects on composting maturity. Therefore, this study presents theoretical basis to identify and enhance the core bacteria for improving full-scale composting efficiency facing more and more organic wastes.

  相似文献   
208.
Zhang  Fan  Xu  Nuohan  Zhang  Zhenyan  Zhang  Qi  Yang  Yaohui  Yu  Zhitao  Sun  Liwei  Lu  Tao  Qian  Haifeng 《Environmental science and pollution research international》2023,30(13):35972-35984

The rhizosphere microbiome plays critical roles in plant growth and is an important interface for resource exchange between plants and the soil environment. Crops at various growing stages, especially the seedling stage, have strong shaping effects on the rhizosphere microbial community, and such community reconstruction will positively feed back to the plant growth. In the present study, we analyzed the variations of bacterial and fungal communities in the rhizosphere of four crop species: rice, soybean, maize, and wheat during successive cultivations (three repeats for the seedling stages) using 16S rRNA gene and internal transcribed spacer (ITS) high-throughput sequencing. We found that the relative abundances of specific microorganisms decreased after different cultivation times, e.g., Sphingomonas, Pseudomonas, Rhodanobacter, and Caulobacter, which have been reported as plant-growth beneficial bacteria. The relative abundances of potential plant pathogenic fungi Myrothecium and Ascochyta increased with the successive cultivation times. The co-occurrence network analysis showed that the bacterial and fungal communities under maize were much more stable than those under rice, soybean, and wheat. The present study explored the characteristics of bacteria and fungi in crop seedling rhizosphere and indicated that the characteristics of indigenous soil flora might determine the plant growth status. Further study will focus on the use of the critical microorganisms to control the growth and yield of specific crops.

  相似文献   
209.
为探究饮用水厂滤池反冲洗水和排泥水的直接回用和处理后回用对水厂的影响及两类水处理过程中的差异,采用了污染负荷计算、实验室混凝小试和现场混凝-超滤中试装置对两类生产废水分别进行了研究。溶解性有机碳(dissolved organic carbon,DOC)、氨氮 (NH4+-N)、Al3+和全氟类化合物(perfluorinated compounds,PFASs)的污染负荷计算结果表明生产废水直接回用会为水厂带来一定的额外负荷,其中排泥水和反冲洗水分别对PFASs和Al3+负荷贡献较大;通过对小试中浊度,UV254以及5种荧光组分去除效果的对比,反冲洗水的混凝效果稍好于排泥水,同时10 mg·L−1的聚合氯化铝为最佳混凝剂方案;在中试过程中,两类水中的浊度、有机物、Al3+和PFASs均可被有效去除,出水差异较小,但反冲洗水中的亲水性和小分子有机物使得其去除效果低于排泥水。总体来说,经过处理之后,两类生产废水均可回用,回用可有效减少废水排放量,提高水厂水资源利用率。  相似文献   
210.
堆肥系统的通风设计   总被引:1,自引:0,他引:1  
对堆肥系统的两种不同风机选型方法及计算结果进行了比较.根据计算结果,方法二所选风机的风量、风压和功率都大于方法一所选的风机.对于堆肥系统,目前常用的风机选型方法为方法二.污泥堆肥中试的结果初步表明:方法二所选风机的风量偏大,而方法一所选风机的风量比较适宜.  相似文献   
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