趙玲(Zhao Ling)
研究員
博士/博士后,中共黨員
郵件:wszhaoling@sjtu.edu.cn
(長(zhǎng)期招聘博士后)

履歷

1998—2002年,西安建筑科技大學(xué),材料科學(xué)與工程學(xué)院,獲材料工程學(xué)士學(xué)位

2002—2005年,西安建筑科技大學(xué),環(huán)境與市政工程學(xué)院,獲環(huán)境工程碩士學(xué)位

2005—2008年,上海交通大學(xué),環(huán)境科學(xué)與工程學(xué)院,獲環(huán)境工程博士學(xué)位

2008—2011年,同濟(jì)大學(xué),環(huán)境學(xué)院,污染控制與資源化國(guó)家重點(diǎn)實(shí)驗(yàn)室,博士后


2011—2019年,上海交通大學(xué),環(huán)境科學(xué)與工程學(xué)院,助理研究員、副研究員

2013—2014年,分別于英國(guó)愛(ài)丁堡大學(xué)、美國(guó)伊利諾伊大學(xué),從事訪問(wèn)學(xué)者

2019 年 —  今,上海交通大學(xué),環(huán)境科學(xué)與工程學(xué)院,研究員,碩士、博士研究生導(dǎo)師

                         兼任本校中英國(guó)際低碳學(xué)院雙聘研究生導(dǎo)師

2023—2024年,上海市普陀區(qū)生態(tài)環(huán)境局,副局長(zhǎng)(掛職)


研究方向:土壤-地下水污染修復(fù)、土壤改良和固碳;生物炭環(huán)境功能材料研發(fā)和應(yīng)用;多源固廢的低碳協(xié)同處理處置

主持國(guó)家重點(diǎn)研發(fā)計(jì)劃土壤專項(xiàng)課題、國(guó)家自然科學(xué)基金項(xiàng)目、國(guó)家科技部水體污染控制與治理科技重大專項(xiàng)子課題等。作為研究骨干參與國(guó)家自然科學(xué)基金地區(qū)重點(diǎn)項(xiàng)目、國(guó)家環(huán)保部公益項(xiàng)目、國(guó)家科技支撐計(jì)劃、美國(guó)基金“Russell and Helen Dilworth Memorial Fund (USA) ”等。在環(huán)境領(lǐng)域主流期刊發(fā)表論文120多篇,獲專利授權(quán)10余項(xiàng)。其中第一/通訊作者SCI論文近50篇。

教學(xué)方面,建設(shè)并主講本科生課程“環(huán)境土壤學(xué)”,參講課程包括 “土壤-地下水污染修復(fù)工程”、“環(huán)境與可持續(xù)發(fā)展”、“環(huán)境學(xué)導(dǎo)論”、“環(huán)境工程大實(shí)驗(yàn)”等。完成教學(xué)改革項(xiàng)目“環(huán)境學(xué)導(dǎo)論課一體化教學(xué)模式:?jiǎn)栴}導(dǎo)向-案例分析-多元考核”,發(fā)表教學(xué)論文,并多次獲得教學(xué)獎(jiǎng)項(xiàng)。2024年秋為上海財(cái)經(jīng)大學(xué)高級(jí)金融學(xué)院MBA班級(jí)ESGF方向(全球首發(fā))上“環(huán)境科學(xué)導(dǎo)論”課。


主持的科研項(xiàng)目(代表性)

1. 國(guó)家自然科學(xué)基金面上項(xiàng)目,退役動(dòng)力電池提鋰后磷酸鐵殘?jiān)鼌f(xié)同生物質(zhì)熱解制復(fù)合生物炭及其土壤環(huán)境效應(yīng)(No. 52370143),2024/1-2027/12,51萬(wàn)元,在研。

2. 國(guó)家自然科學(xué)基金面上項(xiàng)目,生物炭負(fù)載微生物在“地下水抽提淋濾土壤共修復(fù)”體系中降解有機(jī)污染物的機(jī)制(No. 41877110),2019/1-2022/12,62萬(wàn)元,結(jié)題。

3. 國(guó)家自然科學(xué)基金面上項(xiàng)目,礦物質(zhì)對(duì)生物炭形成及其碳穩(wěn)定性的調(diào)控機(jī)制(No. 21577087),2016/1-2019/12,68萬(wàn)元,結(jié)題。

4.  國(guó)家自然科學(xué)基金青年項(xiàng)目,生物質(zhì)廢棄物源與生物質(zhì)炭的性質(zhì)-構(gòu)效關(guān)系(No. 21107070),2012/01-2014/12,26萬(wàn)元,結(jié)題。

5. 2020國(guó)家重點(diǎn)研發(fā)計(jì)劃項(xiàng)目“場(chǎng)地土壤污染成因與治理技術(shù)”,區(qū)域場(chǎng)地土壤跨介質(zhì)污染物多源清單與制定方法,課題一,區(qū)域場(chǎng)地污染物多源識(shí)別與排放清單(No. 2020YFC1806701),2020/11-2024/10,419萬(wàn)元/200萬(wàn)元,結(jié)題。

6.  國(guó)家水體污染控制與治理科技重大專項(xiàng),河網(wǎng)區(qū)上游滯留河道治理和生態(tài)凈化關(guān)鍵技術(shù)研發(fā)與工程示范子課題三,重污染河道底泥生境改善和資源化技術(shù)研發(fā)和應(yīng)用(No. 2017ZX07204002-03),2017/06-2020/06,222萬(wàn)元,負(fù)責(zé)子任務(wù)100萬(wàn),結(jié)題。

7. 國(guó)家水體污染控制與治理科技重大專項(xiàng),污泥與廢棄物處置及資源化利用技術(shù)集成與綜合示范,河道清淤底泥的脫水與分質(zhì)資源化利用研究與示范(No. 2017ZX07202005-05),2017/06-2020/06,260萬(wàn)元,負(fù)責(zé)子任務(wù)90萬(wàn),結(jié)題。

8. 上海市2022年度“科技創(chuàng)新行動(dòng)計(jì)劃”,科技支撐碳達(dá)峰碳中和專項(xiàng),“二氧化碳植物捕獲強(qiáng)化調(diào)控與土壤長(zhǎng)效封存關(guān)鍵技術(shù)研究與示范” (No. 22DZ1209400),2022/09-2025/09, 250萬(wàn)元,負(fù)責(zé)子任務(wù)30萬(wàn)元,在研。

9. 上海交大-愛(ài)丁堡大學(xué)種子基金項(xiàng)目,聯(lián)合生命周期分析和生物地球化學(xué)場(chǎng)模型研究生物炭土壤施入的減排潛勢(shì)(No. 2023 SJTU-UoE),2023/07-2024/06,7.905萬(wàn)元(中方)、9,300歐元(英方),在研。

10. 技術(shù)開(kāi)發(fā)項(xiàng)目,中鐵四局集團(tuán)有限公司第四工程分公司,氯堿化工場(chǎng)地土壤-地下水有機(jī)無(wú)機(jī)復(fù)合污染組合修復(fù)技術(shù)研究(No. 2023–34),2023/11-2025/08,60萬(wàn)元,在研。

11.  湖南省衡陽(yáng)市生態(tài)環(huán)境局技術(shù)服務(wù)項(xiàng)目,衡陽(yáng)市“十三五”環(huán)境保護(hù)規(guī)劃終期評(píng)估和“十四五”生態(tài)環(huán)境保護(hù)規(guī)劃編制(No. 1024645-20210721-58),2021/09-2021/12,69.5萬(wàn)元,結(jié)題。

12. 山東省技術(shù)服務(wù)項(xiàng)目,農(nóng)業(yè)局耕地質(zhì)量提升項(xiàng)目新技術(shù)研究試驗(yàn)(No. 37132441000220190008-001),2019/12-2020/6,17.5萬(wàn)元,結(jié)題。


作為骨干參與的科研項(xiàng)目

1. 國(guó)家自然科學(xué)基金重點(diǎn)項(xiàng)目,土壤-地下水典型重金屬多界面轉(zhuǎn)化與遷移過(guò)程(No. U42330706),2024/01-2028/12,233萬(wàn)元,參與(排名2),在研。

2. 國(guó)家自然科學(xué)基金聯(lián)合重點(diǎn)項(xiàng)目,山東海岸帶-近海區(qū)域重金屬的遷移轉(zhuǎn)化及生態(tài)環(huán)境效應(yīng)(No. U1906225),2020/01-2023/12,300萬(wàn)元,參與(排名2),結(jié)題。

3. 環(huán)境保護(hù)部公益項(xiàng)目子課題,重金屬污染土壤固化穩(wěn)定化修復(fù)后評(píng)估方法研究(No. 201509035),2015/01-2017/12,62萬(wàn)元,參與(排名2),結(jié)題。

4. 上海市“浦江人才”計(jì)劃,生物炭的固碳作用及其土壤生態(tài)環(huán)境效應(yīng)(No. 11PJ1404600),2011/3-2013/5,20萬(wàn)元,參與(排名2),結(jié)題。

5. 上海市科委重點(diǎn)支撐項(xiàng)目,重金屬污染土壤修復(fù)材料研發(fā)與綜合評(píng)估方法研究(No. 13231202502),2013/11-2015/11,25萬(wàn)元,參與(排名2),結(jié)題。


SCI收錄論文 (部分)

1) Guo, W.B., Li, D.P., Chen, B., Li, J.M., Li, Z.C., Cao, X.D., Qiu, H., Zhao, L.*, 2025. Microbial colonization on four types of microplastics to form biofilm differentially affecting organic contaminant biodegradation. Chem. Eng. J. 503, 158060.

2) Guo, W.B., Li, D.P., Zhai, Y., Xu, X.Y., Qiu, H., Miao, A.J., Cao, X.D., Zhao, L.*, 2024. Differential interaction modes of As(III)/As(V) with microbial cell membrane induces opposite effects on organic contaminant biodegradation in groundwater. Environ. Int. 193, 109074.

3) Li, D.P., Guo, W.B., Chen, B., Zhai, Y., Lang, Y., Guo, T.B., Cao, X.D., Zhao, L.*, 2024. Niche construction in a bioelectrochemical system with 3D-electrodes for efficient and thorough biodechlorination. Water. Res. 265, 122260.

4) Zhai, Y., Guo, W.B., Li, D.P., Chen, B., Xu, X.Y., Cao, X.D., Zhao, L.*, 2024. Size-dependent influences of nanoplastics on microbial consortium differentially inhibiting 2, 4-dichlorophenol biodegradation. Water. Res. 249, 121004.

5) Meng, F., Rong, G.Q., Zhao, R.J., Chen, B., Xu, X.Y., Qiu, H., Cao, X.D., Zhao, L.*, 2024. Incorporating biochar into fuels system of iron and steel industry: carbon emission reduction potential and economic analysis. Appl. Energ. 356, 122377.

6) Nan, H.Y., Yang, F., Wang, C.Q., Xu, X.Y., Qiu, H., Cao, X.D., Zhao, L.*, 2024. Phosphorus footprint in whole biowaste-biochar-soil-plant system: reservation, replenishment and reception. J. Agr. Food Chem. 72, 166-175.

7) Li, D.P., Guo, W.B., Zhai, Y., Xu, X.Y., Cao, X.D., Zhao, L.*, 2023. The aggregated biofilm dominated by Delftia tsuruhatensis enhances the removal efficiency of 2,4-dichlorophenol in a bioelectrochemical system. Environ. Pollut. 337, 122576.

8) Fang, S.W., Zhao, L.*, Rong, G.Q., Chen, B., Xu, X.Y., Qiu, H., Cao, X.D., 2023. Converting coastal silt into subgrade soil with biochar as reinforcing agent, CO2 adsorbent, and carbon sequestrating material. J. Environ. Manage. 344, 118394.

9) Xue, W.Z., Ying, D.W., Li, Y., Sheng, Y., He, T.H., Shi, P.L., Liu, M., Zhao, L.*, 2023. Method for establishing soil contaminant discharge inventory: An arsenic-contaminated site case study. Environ. Res. 227, 115700.

10) Nan, H.Y., Yang, F., Li, D.P., Cao, X.D., Xu, X.Y., Qiu, H., Zhao, L.*, 2023. Calcium enhances phosphorus reclamation during biochar formation: Mechanisms and potential application as a phosphorus fertilizer in a paddy soil. Waste Manage. 162, 83–91.

11) Yang, F., Lv, J.F., Zheng, Y.F., Cui, J.Y., Huang, Y.D., Cao, X.D., Liu, H.Z., Zhao, L.*, 2023. Enhancement of coal gangue performance by surface micro-crystalline glaze derived from mineral powder. Sci. Total Environ. 858, 159986.

12) Nan, H.Y., Ma?ek, O., Yang, F., Xu, X.Y., Qiu, H., Caop, X.D., Zhao, L.*, 2022. Minerals: A missing role for enhanced biochar carbon sequestration from the thermal conversion of biomass to the application in soil. Earth-Sci. Rev. 234, 104215.

13) Zhang, Y., Maierdan, Y.F., Guo, T.B., Chen, B., Fang, S.W., Zhao, L.*, 2022. Biochar as carbon sequestration material combines with sewage sludge incineration ash to prepare lightweight concrete. Constr. Build. Mater. 343, 128116.

14) Chen, H., Li, D.P., Ma?ek, O., Zhai, Y., Rong, G.Q., Xu, X.Y., Cao, X.D., Zhao, L.*, 2022. Simultaneous dissipation of trichloroethene and arsenic from co-contaminated groundwater by coupling biodechlorination and biodetoxification with assistance of biochar. Biochar 4, 69.

15) Luo, Y., Li, Z.P., Xu, H.C., Xu, X.Y., Qiu, H., Cao, X.D., Zhao, L.*, 2022. Development of phosphorus composite biochar for simultaneous enhanced carbon sink and heavy metal immobilization in soil. Sci. Total Environ. 831, 154845.

16) Yin, J.X., Zhao, L.*, Xu, X.Y., Li, D.P., Qiu, H., Cao, X.D., 2022. Evaluation of long-term carbon sequestration of biochar in soil with biogeochemical field model. Sci. Total Environ. 822, 153576.

17) Yang, F., Zuo, X.P., Yang H.R., Ke, Q., Huang, Y.D., Cao, X.D., Zhao, L.*, 2021. Ionic liquid-assisted production of high-porosity biochar with more surface functional groups: Taking cellulose as attacking target. Chem. Eng. J. 133811.

18) Liu, Y., Chen, H., Zhao, L.*, Li, Z.P., Yi, X.H., Guo, T.B., Cao, X.D., 2021. Enhanced trichloroethylene biodegradation: Roles of biochar-microbial collaboration beyond adsorption. Sci. Total Environ. 792, 148451.

19) Nan, H.Y., Yin, J.X., Yang, F., Luo, Y., Zhao, L.*, Cao, X.D., 2021. Pyrolysis temperature-dependent carbon retention and stability of biochar with participation of calcium: Implications to carbon sequestration. Environ. Pollut. 287, 117566.

20) Yang, Q.S., Ma?ek, O., Zhao, L.*, Nan, H.Y., Yu, S.T., Yin, J.X., Li, Z.P., Cao, X.D., 2021. Country-level potential of carbon sequestration and environmental benefits by utilizing crop residues for biochar implementation. Appl. Energ. 282, 116275.

21) Li, D.P., Zhao, L.*, Cao, X.D., Xiao, Z.Y., Nan, H.Y., Qiu, H., 2020. Nickel-catalyzed formation of mesoporous carbon structure promoted capacitive performance of exhausted biochar. Chem. Eng. J. 406, 126856.

22) Nan, H.Y., Xiao, Z.Y., Zhao, L.*, Yang, Fan; Xu, H.C., Xu, X.Y., Qiu, H., 2020. Nitrogen transformation during pyrolysis of various N-containing biowastes with participation of mineral calcium. ACS Sustainable Chem. Eng. 8, 32, 12197–12207.

23) Zhao, L.*, Xiao, D.L., Liu, Y., Xu, H.C., Nan, H.Y., Cao, X.D.*, 2020 Biochar as simultaneous shelter, adsorbent, pH buffer, and nutrient to promote biodegradation of high concentrations of phenol in wastewater. Water. Res. 172, 115494.

24) Zhao, L., Zhao, Y.H., Nan, H.Y., Yang, F., Qiu, H., Xu, X.Y., Cao, X.D.*, 2019. Suppressed formation of polycyclic aromatic hydrocarbons (PAHs) during Fe-preloaded barley straw pyrolysis. J. Hazar. Mater. 382, 121033

25) Yang, X.Y., Zhao, L.*, Aminul Haque, M., Chen, B., Ren, Z., Cao, X.D., Shen, Z.M., 2019. Sustainable conversion of contaminated dredged river sediment into eco-friendly foamed concrete. J. Clean. Prod. 252, 119799.

26) Nan, H.Y.; Yang, F.; Zhao, L.*; Ma?ek, O.; Cao, XD.; Xiao, Z.Y., 2019. Interaction of Inherent Minerals with Carbon during Biomass Pyrolysis Weakens Biochar Carbon Sequestration Potential. ACS Sustain Chem. Eng. 7, 1591–1599.

27) Zhao, L.; Zheng, W.; Ma?ek, O.; Chen, X.; Gu, B.; Sharma, B. K.; Cao, X., 2017. Roles of Phosphoric Acid in Biochar Formation: Synchronously Improving Carbon Retention and Sorption Capacity. J. Environ. Qual. 46 (2), 393–401.

28) Zhao L, Cao XD*, Zheng W, Scott JW, Sharma BK, Chen X, 2016. Copyrolysis of biomass with phosphate fertilizers to improve biochar carbon retention, slow nutrient release, and stabilize heavy metals in soil. ACS Sustain Chem. Eng. 4 (3): 1630?1636.

29) Zhao, L., Zheng, W., Cao, X.D.*, 2014. Distribution and evolution of organic matter phases during biochar formation and their importance in carbon loss and pore structure. Chem. Eng. J. 250: 240–247.

30) Zhao, L., Cao, X.D.*, Masek, O., Zimmerman, A., 2013. Heterogeneity of biochar properties as a function of feedstock sourcesand production temperatures. J. Hazar. Mater. 256–257 (15): 1–9.

31) Zhao, L., Cao, X.D.*, Wang, Q., Yang, F., Xu, S., 2013. Mineral constituents profile of biochar derived from diversified waste biomasses: implication on agricultural application. J. Environ. Qual. 42: 545–552.

32) Zhao, L., Gu, W.M., He, P.J.*, Shao, L.M., 2010. Effect of air-flow rate and turning frequency on bio-drying of dewatered sludge. Water Res. 44 (20): 6144?6152.

33) Zhao, L., Gu, W.M., He, P.J.*, Shao, L.M., 2011. Biodegradation potential of bulking agents in sludge bio-drying and their contribution to bio-generated heat. Water Res. 45 (6): 2322?2330.

34) Zhao, L., Wang, X.Y., Gu, W.M., Shao, L.M., He, P.J.*, 2011. Distribution of C and N in soluble fractionations for characterizing the respective biodegradation of sludge and bulking agents. Bioresour. Technol. 102, 10745?10749.

35) Zhao, L., Yang, D., Zhu, N.W.*, 2008. Bioleaching of spent Ni-Cd batteries by continuous flow system: Effect of hydraulic retention time and process load. J. Hazar. Mater. 160 (2-3), 648–654.


中文核心期刊論文

1. 盛溢,薛瑋真,應(yīng)迪文,吳駿,李曄,史沛麗,趙玲*. 場(chǎng)地土壤鎘污染排放清單與溯源—以銅冶煉廠為例. 中國(guó)環(huán)境科, 2024, 44 (8): 4462-4474.

2. 趙玲,曹心德.“新三中心”教學(xué)改革實(shí)踐探索—以環(huán)境學(xué)導(dǎo)論課為例. 大學(xué)教育. 2019. (教學(xué)類)

3. 楊小云,趙玲*,陳兵,申哲民. 河道疏浚底泥制備泡沫混凝土的參數(shù)優(yōu)化. 混凝土與水泥制品. 2019.

4. 楊秋爽,南紅巖,趙玲*. 我國(guó)農(nóng)作物殘?bào)w制生物炭的固碳潛勢(shì)和環(huán)境影響[J]. 信陽(yáng)師范學(xué)院學(xué)報(bào):自然科學(xué)版. 2019 (北大核心).

5. 肖冬林,趙玲*,曹心德,劉陽(yáng),于曉娟. 生物炭強(qiáng)化模擬廢水中高濃度苯酚的微生物降解. 環(huán)境科學(xué)學(xué)報(bào). 2019. 39 (6):1-9.

6. 顧博文,曹心德,趙玲*,趙英豪. 生物質(zhì)內(nèi)源礦物對(duì)熱解過(guò)程及生物炭穩(wěn)定性的影響. 農(nóng)業(yè)環(huán)境科學(xué)學(xué)報(bào). 2017, 36 (3): 591-597.

7. 王群, 李飛躍,曹心德,趙玲*. 植物基與固廢基生物炭的結(jié)構(gòu)性質(zhì)差異. 環(huán)境科學(xué)與技術(shù). 2013, 36 (8): 1-5.

8. 趙玲, 洪建靈, 朱南文*. 原油污染土壤中油成分的最佳萃取條件研究. 環(huán)境化學(xué). 2008, 27 (5): 668–671.

9. 趙玲, 楊棟, 朱南文*. 廢舊干電池的生物法資源回收技術(shù). 有色冶金設(shè)計(jì)與研究. 2007, 28 (23): 98–102.

10. 趙玲, 楊棟, 車承丹, 朱南文*. 污泥生物制酸的影響因素. 化工環(huán)保. 2007, 27 (5): 463–467

11. 趙玲, 彭黨聰, 朱南文*. 活性污泥3號(hào)模型對(duì)實(shí)際工藝的模擬與分析. 環(huán)境科學(xué)與管理. 2007, 32 (11): 81–86.


專利

1. 趙玲、曹心德、司馬菁軻、丁振亮、蔣穎。利用礦物磷強(qiáng)化生物炭碳存儲(chǔ)的方法,發(fā)明專利(DAG19062),申請(qǐng)?zhí)?專利號(hào):ZL2015100312722,授權(quán)日期:2017.12.30(已授權(quán))

2. 趙玲、曹心德、蔣穎、顧博文、闞俊紅。一種利用磷酸強(qiáng)化生物炭固碳的方法,發(fā)明專利(DAG19063),申請(qǐng)?zhí)?專利號(hào):ZL2015100312741,授權(quán)日期:2017.06.09(已授權(quán))

3. 趙玲、曹心德、王群、李飛躍、續(xù)曉云、楊帆。批式充氮?dú)鈫蜗蜥寜旱纳锾恐苽溲b置及方法,發(fā)明專利,申請(qǐng)?zhí)?專利號(hào):ZL201310082211.X,公開(kāi)日期:2014年10月15日,公開(kāi)號(hào):CN103215054A(已轉(zhuǎn)讓)

4. 趙玲,薛瑋真,應(yīng)迪文,曹心德,續(xù)曉云,仇浩. 工業(yè)場(chǎng)地土壤污染物排放清單的構(gòu)建方法及系統(tǒng)(實(shí)審中). 申請(qǐng)?zhí)枺?02310624065.2

5. 楊帆、王夢(mèng)瑤、趙玲、曹心德、黃遠(yuǎn)東。生物炭協(xié)同復(fù)合菌去除城市河道水體中氨氮的方法及裝置,發(fā)明專利(DAG5587554),專利號(hào):ZL2020 1 0853697.2 授權(quán)公告號(hào):CN 112047490 B(已公開(kāi))

6. 楊帆、呂峻帆、趙玲、曹心德、黃遠(yuǎn)東。利用氨氮增釋劑同步去除河道底泥和上覆水體氨氮的方法,發(fā)明專利(DAG5591030),專利號(hào):ZL2021 1 0183501.8 授權(quán)公告號(hào):CN 113024052 B(已公開(kāi))

7. 曹心德、魏亞強(qiáng)、趙玲、仇浩、續(xù)曉云。一種地下水水位波動(dòng)帶污染物遷移轉(zhuǎn)化模擬實(shí)驗(yàn)裝置,發(fā)明專利(DAG5430426),專利號(hào):ZL2020 1 0877991.7 授權(quán)公告號(hào):CN 112051383 B(已公開(kāi))

8. 曹心德、丁振亮、趙玲、司馬菁珂。一種同步穩(wěn)定化土壤重金屬Zn和Cr的修復(fù)方法,發(fā)明專利(DAG20452),申請(qǐng)?zhí)?專利號(hào):201510924583.1(已公開(kāi))

9. 曹心德,常國(guó)興,趙玲,楊帆。道路綠化帶負(fù)載炭化材料原位凈化徑流雨水的方法,發(fā)明專利,申請(qǐng)?zhí)?專利號(hào):201310180630.7,公開(kāi)號(hào):CN103270900A(已公開(kāi))

10. 曹心德,梁媛,常國(guó)興,趙玲。重金屬污染土壤與地下水一體化修復(fù)方法,發(fā)明專利,申請(qǐng)?zhí)?專利號(hào):201310278001.8 公開(kāi)號(hào):CN103736723A(已公開(kāi))

11. 朱南文,車承丹,李艷林,趙玲,王方林,尹炳奎。城市污水廠污泥的固化處理方法,發(fā)明專利,2009,申請(qǐng)?zhí)?專利號(hào):ZL2007100404772,公開(kāi)號(hào):CN101050046 (已公開(kāi))

12. 朱南文,車承丹,李艷林,趙玲,葉清。河流底泥的固化處理方法,發(fā)明專利,2009,申請(qǐng)?zhí)?專利號(hào):ZL200710040476.8,公開(kāi)號(hào):CN101050045 (已公開(kāi))


學(xué)術(shù)任職和公益

(1)《Biochar》SCI 期刊青年編委

(2)《Carbon Research》期刊青年編委

(3)《生態(tài)環(huán)境學(xué)報(bào)》期刊青年編委

(4) SCI期刊和中文核心期刊審稿人

(5) 國(guó)家自然科學(xué)基金評(píng)審專家

(6)上海市建設(shè)用地土壤污染環(huán)境評(píng)審專家

(7)  云南洱海湖泊生態(tài)系統(tǒng)國(guó)家野外科學(xué)觀測(cè)研究站 專家?guī)鞂<?

(8)   西利企源中學(xué)生科研營(yíng)授課導(dǎo)師

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