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石德智


姓 名

石德智

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出生年月

1981-6

技术职务

副教授、硕导

行政职务

支部副书记

电子邮箱

shidezhi@cqu.edu.cn

通信地址

重庆市沙坪坝区沙正街174号世界杯在线开户环境工程系400045

1.主要研究方向:

固体废物污染控制与资源化、环境污染化学、光催化及过硫酸盐高级氧化水体有机污染物、功能化生物炭的环境修复行为

2. 社会兼职、国内外学术团体任职情况:

巴塞尔公约亚太区域中心化学品和废物环境管理智库专家、重庆市“无废城市”建设专家库专家、重庆市环境技术评估专家库专家;国际水协IWA(International Water Association)会员、美国化学学会ACS(American Chemical Society)会员、国际Society of Chemical Industry学会会员、中国环境科学学会会员、注册清洁生产审核师;国际SCI期刊Int. J. Environ. Res. Public Health青年编委;SCI学术期刊Journal of Hazardous Materials、Chemical Engineering Journal. Science of the Total Environment、Bioresource Technology、Chemosphere、Waste Management、Energy & Fuels、Fuel、Materials & Structures等审稿人

3. 教育及进修经历

2011年至今世界杯在线开户环境工程系讲师、副教授

2009年-2011年浙江大学化学工程与技术博士后流动站博士后

2006年美国康奈尔大学Cornell University学习交流

2003年-2009年浙江大学环境与资源学院环境工程专业工学博士

1999年-2003年同济大学环境科学与工程学院环境工程专业工学学士

4. 主持或主研的科学研究项目

1、生物质废弃物堆肥资源化与气化能源利用技术与示范,国家水体污染控制与治理科技重大专项子课题(项目批准号:2008ZX0701-006-04-02)

2、热处理残渣“铁磁性/非铁磁性”组分协同刺激填埋垃圾生物降解并原位削减生化污染物研究,国家自然科学基金(项目批准号:51308564)

3、人工湿地生物质发酵与琨基电子传递耦合强化反硝化机制研究,国家自然科学基金(项目批准号:51708056)

4、中小城市污泥、餐厨垃圾、食品工业有机废弃物联合发酵燃气化技术研究,国家科技支撑计划项目(项目批准号:2014BAC29B01)

5、乡村厕所卫生安全保障关键技术研究,国家重点研发计划项目子课题(项目批准号:2018YFD1100501)

6、基于模型的垃圾焚烧灰渣稳定化过程重金属迁移机理研究,中央高校基本科研业务费科研专项(项目批准号:106112012CDJZR210011)

7、碱性水热法稳定生活垃圾焚烧飞灰中重金属机理研究,重庆市前沿与应用基础研究项目(项目批准号:CSTC2014jcyjA20015)

8、亚/超临界水体系下垃圾焚烧飞灰中多环芳烃的氧化降解机理研究,重庆市基础科学与前沿技术研究项目(项目批准号:CSTC2017jcyjAX0035)

9、污泥与多种类城市生物质废物联合发酵燃气化技术研究,重庆市科技计划项目社会事业与民生保障科技创新专项(项目批准号:CSTC2015shmszx20020)

10、城市生活垃圾综合处理处置技术与示范研究,国家高技术研究发展(863)计划项目(项目批准号:G20050665)

11、废弃物处理系列环保试验装置装备研发,浙江省科技厅科研专项(项目批准号:N20100342)

12、畜禽养殖废弃物资源化生态化综合处置技术研究及示范,浙江省科技计划重大项目(项目批准号:021103723)

13、长生河流域河道整治疏浚底泥的风险识别与资源化技术研究,重庆水务环境控股集团有限公司科技创新课题(项目批准号:G202014)

14、环境污染物监测技术与系统研究开发,南京市科技计划项目(项目批准号:H2010166)

15、杭州市危险废物处置关键技术研究与示范,杭州市重大科技项目

16、重庆市第二垃圾焚烧厂清洁生产审核项目

5. 主要学术论文与代表作

1、Shi DZ, Wu WX*, Lu SY, Chen T, Huang HL, Chen YX, Yan JH. Effect of MSW source-classified collection on the emission of PCDDs/Fs and heavy metals from incineration in China.Journal of Hazardous Materials.2008, 153(1-2): 685-694.

2、Tang XJ, Shen CF,Shi DZ*, Cheema SA,et al. Heavy metal and persistent organic compound contamination in soil from Wenling: an emerging e-waste recycling city in Taizhou area, China.Journal of Hazardous Materials.2010, 173(1-3): 653-660.ESI高被引论文

3、Shen KL, Shen CF, Yu J, Yu CN,Shi DZ*, Chen YX. PCB congeners induced mitochondrial dysfunction in Vero cells.Journal of Hazardous Materials.2011, 185: 24-28.

4、Tang H, Xu XY, Wang B, Lv CP,Shi DZ*.Removal of ammonium from swine wastewater using synthesized zeolite from fly ash.Sustainability. 2020, 12(8): 3423.

5、Tong HH,Shi DZ*, Cai HY, Liu JY, Lv MY, Gu L, Luo L, Wang B. Novel hydroxyapatite (HAP)-assisted hydrothermal solidification of heavy metals in fly ash from MSW incineration: Effect of HAP liquid-precursor and HAP seed crystal derived from eggshell waste.Fuel Processing Technology. 2022, 236:107400.

6、Shi DZ*, Hu CY, Zhang JL, Li PF, Zhang C, Wang XM, Ma H. Silicon-aluminum additives assisted hydrothermal process for stabilization of heavy metals in fly ash from MSW incineration.Fuel Processing Technology. 2017,165:44-53.

7、Shi DZ*,Ma JY,Wang HL,Wang P,Hu CY,Zhang JL,Gu L. Detoxification of PCBs in fly ash from MSW incineration by hydrothermal treatment with composite silicon-aluminum additives and seed induction.Fuel Processing Technology. 2019,195:106157.

8、Shi DZ*, Lv MY, Tong HH, Liu JY, Cai HY, et al. Effect of magnetite on the catalytic oxidation of polycyclic aromatic hydrocarbons in fly ash from MSW incineration: A comparative study of one-step and two-step hydrothermal processes.Journal of Environmental Management. 2022, 303: 114238.

9、Shi DZ*, Zhang C, Zhang JL, Li PF, Wei YM.Seed-assisted hydrothermal treatment with composite silicon-aluminum additive for solidification of heavy metals in municipal solid waste incineration fly ash.Energy & Fuels.2016, 30 (12): 10661-10670.

10、Shi DZ*, Tong HH, Lv MY, Zhang HB, Wang HL, et al. Effect of Ca-Si-Al element proportion on formation of aluminosilicate minerals and detoxification of PAHs in fly ash from MSW incineration during hydrothermal process.Energy & Fuels. 2021, 35(11):9474-9488.

11、Shi DZ*, Tong HH, Lv MY, Luo D, Wang P, Xu XX, Han ZY. Optimization of hydrothermal synthesis of hydroxyapatite from chicken eggshell waste for effective adsorption of aqueous Pb(II).Environmental Science & Pollution Research. 2021, 28(41): 58189-58205.

12、Shi DZ*, Li PF, Zhang C, Tang XJ. Levels and patterns of polychlorinated biphenyls in residues from incineration of established source-classified MSW in China.Toxicological & Environmental Chemistry.2015, 97(10): 1337-1349.

13、Shi DZ, Tang XJ, Wu WX*, Shen CF, McBride BM, Chen YX. Effect of MSW source-classified collection on polycyclic aromatic hydrocarbons in residues from full-scale incineration in China.Water, Air & Soil Pollution.2009, 198: 347-358.

14、Shi DZ*, Wang P, Xu XY, Gu L, Li L, Ma H, Hu CY. Effect of source-classified collection of municipal solid waste on heavy metals and pozzolanic properties of incineration residues.International Journal of Environmental Research. 2018.12(5):661-670.

15、Shi DZ*, Zhang JL, Zhang C, Hu CY, Li PF. Seed-induced hydrothermal synthesis of tobermorite from municipal solid waste incinerator fly ash.Journal of Residuals Science & Technology.2017,14(1):11-19.

16、Shi DZ*, Zhang JL, Hu CY, Zhang C, Li PF. Research and application progress of the supercritical water oxidation technology on waste sludge treatment.Journal of Chemical Industry & Engineering.2017, 68(1): 37-49.

17、Shi DZ*, Wang P, Hu CY, Li PF, Zhang C, Wei YM, Gu L. Synergistic effect of silicon-aluminum addition and seed-induced on stabilization of heavy metals in MSW incineration fly ash during hydrothermal process.Journal of Chemical Industry & Engineering.2018,69(8): 3651-3661.

18、TongHH,Shi DZ*,Liu JY,Cai HY,Luo D,Chen F. Research progress on dark fermentative bio-hydrogen productionfrom lignocellulose assisted by metal nanoparticles.Journal of Chemical Industry & Engineering,2022, 73(4):1417-1435.

19、Shen CF, Huang SB,Shi DZ, Zhu YF, Shi JY, Chen XC, Setty K, Chen YX*. Identification of Ah receptor agonists in soil of E-waste recycling sites from Taizhou area in China.Environmental Science & Technology.2008, 42(1): 49-55.

20、Shen CF, Tang XJ, Yao J,Shi DZ,et al. Levels and patterns of polycyclic aromatic hydrocarbons and polychlorinated biphenyls in municipal waste incinerator bottom ash in Zhejiang province, China.Journal of Hazardous Materials.2010,179:197-202.

21、Xu XF, Xu QY, Du ZX, Gu L*, Chen C, Huangfu XL,Shi DZ. Enhanced phosphorus release from waste activated sludge using ascorbic acid reduction and acid dissolution.Water Research.2023,229, 119476.

22、Peng XY,Zhang SY, Li L*, Zhao XF, Ma Y,Shi DZ. Long-term high-solids anaerobic digestion of food waste: effects of ammonia on process performance and microbial community.Bioresource Technology. 2018,262: 148-158.

23、Zou HJ, Chen YD, Shi JH, Zhao T, Yu Q, Yu SK,Shi DZ, Chai HX, Gu L*, He Q*, Ai HN. Mesophilic anaerobic co-digestion of residual sludge with lignocellulosic biomass in the batch digester.Bioresource Technology. 2018, 268: 371-381.

24、Chen YD, Zhao ZY, Zou HJ, Yang HF, Sun T, Li MX, Chai HX, Li L, Ai HN,Shi DZ, He Q, Gu L*. Digestive performance of sludge with different crop straws in mesophilic anaerobic digestion.Bioresource Technology. 2019, 289: 121595.

25、Chen YD, Yang HF, Zhao ZY, Zou HJ, Jiang Q, Sun T, Li MX, Li L,Shi DZ, et al. Comprehensively evaluating the digestive performance of sludge with different lignocellulosic components in mesophilic anaerobic digester.Bioresource Technology. 2019, 293: 122042.

26、Zhu RL. Chen YD, Zhao T, Jiang Q, Wang HQ, Zheng LS,Shi DZ, et al. Enhanced mesophilic anaerobic co-digestion of waste sludge and food waste by using hematite (alpha-Fe2O3) supported bentonite as additive.Bioresource Technology. 2020, 313:123603.

27、Cao XK, Jiang L, Zheng H, Liao Y, Zhang Q, Shen QS, Mao YX, Ji FY*,Shi DZ. Constructed wetlands for rural domestic wastewater treatment: A coupling of tidal strategy, in-situ bio-regeneration of zeolite and Fe(Ⅱ)-oxygen denitrification.Bioresource Technology. 2022, 344:126185.

28、Yu XZ, He DF, Zhang XM*,Shi DZ, Luo GX, Deng J*. Surface-adaptive and initiator-loaded graphene as a light-induced free-radical generator for drug-resistant bacteria eradication.ACS Applied Materials & Interfaces. 2019,11(2): 1766-1781.

29、Wei YM*, Du L, Deng X, Liu XY, Mei XY,Shi DZ. Alkaline-assisted leaching of iron-cyanide complex from contaminated soils.Chemical Engineering Journal. 2018, 354:53-61.

30、Ao LG, Xia F, Ren Y, Xu J,Shi DZ, Zhang S, Gu L*, He Q*. Enhanced nitrate removal by micro-electrolysis using Ferric and Surfactant modified activated carbon.Chemical Engineering Journal. 2019, 357: 180-187.

31、Li SQ, Zhang Y, Duan WD, Deng R, Gu L*,Shi DZ.Insights into the resistance of different extracellular polymeric substance (EPS) layers to the fermentation environment in sludge anaerobic digestion.Chemical Engineering Journal. 2022, 449:137844.

32、Huang X,Shi DZ, Sun FQ, Wu WX*. Efficacy of sludge and manure compost amendments against fusarium wilt of cucumber.Environmental Science & Pollution Research.2012, 19(9):3895-3905.

33、Ma H*, Huang LP, Zhang J,Shi DZ,et al. Optical properties of straw-derived dissolved organic matter and growth inhibition ofMicrocystis aeruginosaby straw-derived dissolved organic matter via photo-generated hydrogen peroxide.Environmental Pollution. 2018,242:760-768.

34、Wei YM*, Li JY,Shi DZ, Liu GT, Zhao YC, Shimaoka T. Environmental challenges impeding the composting of biodegradable municipal solid waste: A critical review.Resources, Conservation & Recycling.2017,122: 51-65.

35、Chen XY*, Huang XD, Hu B,Shi DZ, Wu WX. Effects of bamboo charcoal and bamboo vinegar on nitrogen conservation and heavy metals immobility during pig manure composting.Chemosphere.2010, 78(9): 1177-1181.

36、Song NF,XuJ, CaoYP, XiaF, ZhaiJ, AiHN,ShiDZ, GuL*, He Q. Chemical removal and selectivity reduction of nitrate from water by (nano) zero-valent iron/activated carbon micro-electrolysis.Chemosphere.2020, 125986.

37、Wei YM*, Wang F, Liu X, Fu PR, Yao RX, Ren TT,Shi DZ, Li YY. Thermal remediation of cyanide-contaminated soils: process optimization and mechanistic study.Chemosphere. 2020. 239: 124707.

38、Xu YX*, He ZM, Tang H, Sun YD, Zhang SY,Shi DZ, Ji FY*. Removal of diclofenac and oxytetracycline from synthetic urine by furfuryl alcohol-derived mesoporous carbon.Chemosphere. 2022. 132317.

39、Zou HJ, Jiang Q , Zhu RL, Chen YD , Sun T , Li MX, Zha J,Shi DZ,Ai HN, Gu L*, He Q. Enhanced hydrolysis of lignocellulose in corn cob by using food waste pretreatment to improve anaerobic digestion performance.Journal of Environment Management. 2020, 254:109830.

40、Gao M, Li SQ, Zou HJ, Wen FS, Cai AR, Zhu RL, Tian WJ,Shi DZ, Chai HX, Gu L*. Aged landfill leachate enhances anaerobic digestion of waste activated sludgeJournal of Environmental Management. 2021, 293:112853.

41、Zhu RL, He LY, Li QY, Huang TX, Gao M, Jiang Q, Liu JY, Cai AR,Shi DZ, Gu L*, He Q. Mechanism study of improving anaerobic co-digestion performance of waste activated sludge and food waste by Fe3O4.Journal of Environmental Management. 2021, 300:113745.

42、He ZM, Xu XY*, Wang B*, Lu ZF,Shi DZ, Wu W. Evaluation of iron-loaded granular activated carbon used as heterogeneous fenton catalyst for degradation of tetracycline.Journal of Environmental Management. 2022, 322:116077.

43、Xu XY*, Jin ZX, Wang B,Shi DZ. Treatment of high-strength ammonia nitrogen wastewater by polyvinyl alcohol–sodium alginate immobilization of activated sludge.Process Biochemistry. 2017, 63:214-220.

44、Tian WJ, Chen YD, Shen YQ, Zhong C,Gao M, Shi DZ, He Q, Gu L*. Effects of hydrothermal pretreatment on the mono- and co -digestion of waste activated sludge and wheat straw.Science of the Total Environment. 2020,732: 139312.

45、Gao M, Zou HJ, Tian WJ,Shi DZ, Chai HX, He Q, Gu L*. Co-digestive performance of food waste and hydrothermal pretreated corn cob.Science of the Total Environment.2021, 768:144448.

46、Song NF, Chen ZH, Shi JH,Shi DZ, Gu L*. Performance and mechanism of chelating resin (TP-207) supported Pd/Cu bimetallic nanoparticles in selective reduction of nitrate by using ZVI (Zero Valent Iron) as reductant.Separation and Purification Technology. 2021, 272:118974.

47、Wang S, Yan C, Zhang XM,Shi DZ, Chi LX*, Luo GX*, Deng J*. Antimicrobial peptides modification enhances the gene delivery and bactericidal efficiency of gold nanoparticles for diabetic wound healing.Biomaterials Science. 2018, 6(10):2757-2772.

48、Zhao T, Chen YD, Yu Q,Shi DZ, Chai HX, Li L, Ai HN, Gu L*, He Q. Enhancement of performance and stability of anaerobic co-digestion of waste activated sludge and kitchen waste by using bentonite.PLoS One. 2019.14(7): e0218856.

49、Ding Y, Liu YX, Wu WX*,Shi DZ, Yang M. Evaluation of biochar effects on nitrogen retention and leaching in multi-layered soil columns.Water, Air & Soil Pollution.2010, 213(1-3): 47-55.

50、Wei YM*, Mei XX,Shi DZ, Liu GT, Li L, Shimaoka T. Separation and characterization of magnetic fractions from waste-to-energy bottom ash with an emphasis on the leachability of heavy metals.Environmental Science & Pollution Research. 2017, 24(17):14970-14979.

51、Huang XY, Wei XX, Liu HZ, Li W, Shi DZ, Qian SH, Sun WJ, Yue DB, Wang XM*.Occurrence of per- and polyfluoroalkyl substances (PFAS) in municipal solid waste landfill leachates from western China.Environmental Science & Pollution Research. 2022, 29: 69588–69598.

52、Xia F, Yang HF, Li L, Ren Y,Shi DZ, Chai HX, Ai HN, He Q, Gu L*. Enhanced nitrate adsorption by using cetyltrimethylammonium chloride (CTAC) pre-loaded activated carbon.Environmental Technology. 2020,41(27):3562-3572.

53、Chen YD, Jiang Q, Zhu RL, Shi JH, Chai HX, Li L, Ai HN,Shi DZ, He Q, Gu L*. Effects of green waste addition on waste activated sludge and fat, oil and grease co-digestion in mesophilic batch digester.Environmental Technology. 2021,42(18):2870-2884.

54、Tian WJ, Li JH, Zhu LR, Li W, He LY, Gu L*, Deng R*,Shi DZ, Chai HX, Gao M. Insights of enhancing methane production under high-solid anaerobic digestion of wheat straw by calcium peroxide pretreatment and zero valent iron addition.Renewable Energy. 2021,177:1321-1322.

55、Ding Y, Han ZY, Wu WX,Shi DZ, Chen YX, Li WH*. Performance evaluation of biofilters and biotrickling filters in odor control of n-butyric acid.Journal of Environmental Science and Health Part A -Toxic/Hazardous Substances & Environmental. 2011, 46(5): 441-452.

56、Luo L*, Zhu LY ,Hong W, Gu JD,Shi DZ, He Y, Xiao YL, Tian D, Zhang SR, Deng SH, Lan T, Deng OP*. Microbial resource limitation and regulation of soil carbon cycle in Zoige Plateau peatland soils.Catena. 2021, 205: 1054787.

57、Li RX, Luo HQ, Yu JL, Luo L, He Y, Deng SH, Deng OP,Shi DZ, He JS, Xiao H, Lwang LL, Lan T. The importance of moisture in regulating soil organic carbon content based on a comparison of“enzymic latch”and“iron gate”in Zoige Plateau peatland.Catena. 2023, 225:107019.

58Salam M*, Alam F,Shi DZ, Nabi G, Shahzadi A, UI Hassan S, Ali M, Saeed MA, Hassan J, Ali N, Bilal M*.Exploring the role of Black Soldier Fly Larva for sustainable management of municipal solid waste in developing countries.Environmental Technology & Innovation. 2021, 24:101934.

59、Salam M*, Shahzadi A, Zheng HL, Alam F, Nabi G,Shi DZ, Ullah W, Ammara S, Ali N, Bilal M*. Effect of different environmental conditions on the growth and development of Black Soldier Fly Larvae and its utilization in solid waste management and pollution migration.Environmental Technology & Innovation. 2022 .28:102649.

60、Li NY, Han ZY*, Zeng ZJ, Guo NF, Wang J,Shi DZ, Wang XM. Influencing environment factors on the spatial succession of the bacterial community in municipal solid waste landfills.Journal of Environmental Engineering. 2022, 148(7): 05022003

61、Wang B*, Mo QY, Qin B, Song L, Li J, Sheng GS,Shi DZ, Xu XY*, Hou LA. Adsorption behaviors of three antibiotics in single and co-existing aqueous solutions using mesoporous carbon.Environmental Research. 2022, 215:114375.

62、石德智*,张金露,胡春艳,张超,李鹏飞.超临界水氧化技术处理污泥的研究与应用进展.化工学报. 2017, 68(1): 37-49.(权威期刊,EI)

63、石德智*,王攀,胡春艳,李鹏飞,张超,等.硅铝调控与晶种诱导对水热稳定飞灰中重金属的协同影响.化工学报. 2018,69(8): 3651-3661.(权威期刊,EI)

64、童海航,石德智*,刘嘉宇,蔡桦伊,等.金属纳米颗粒辅助木质纤维素暗发酵生物制氢的研究进展.化工学报. 2022(权威期刊,EI)

65、石德智*,李鹏飞,张超,等.水热法外加硅铝添加剂稳定垃圾焚烧飞灰中重金属的研究.环境工程学报. 2017, 11(1):582-588.

66、石德智*,张金露,张超,李鹏飞.粉煤灰水热法合成沸石的研究进展.安全与环境学报. 2016, 16(3): 273-279.

67、石德智*,马靖元,张涵博,王海林,等.厕所恶臭物质组分及检测分析技术的研究进展.环境卫生工程. 2021, 29(3): 44-51.

68、石德智*,马彩灵,张涵博,刘嘉宇,蔡桦伊,等.污泥超临界水气化影响因素的研究进展.工业水处理2023, 43(1): 40-49.

69、魏云梅,周英,石德智*.垃圾焚烧炉渣铁磁性物质提取及特性表征.环境工程学报. 2015, 9(10): 5037-5044.

70、周英,石德智*,向先熙,李鹏飞.基于能量分析的生活垃圾分类收集方式探讨.环境科学与技术. 2014, 37(6): 300-303.

71、黄向东,韩志英,石德智*,黄啸,等.畜禽粪便堆肥过程中氮素的损失与控制.应用生态学报. 2010, 21(1): 247-254.

72、王成贤,石德智*,沈超峰,等.畜禽粪便污染负荷及风险评估—以杭州市为例.环境科学学报. 2011, 31(11): 2562-2569.

73、聂明建,张涵博,石德智*,童海航,等.基于CiteSpace的疏浚底泥全球研究态势可视化分析.环境保护科学. 2022, 48(3):81-88.

74、赖生平,张涵博,石德智*,童海航,等.重庆长生河河道底泥污染特征分析及生态风险评价.能源与环保. 2022, 44(4):39-44.

75、刘晶静,吴伟祥*,丁颖,石德智,等.氨氧化古菌及其在氮循环中的重要作用.应用生态学报.2010, 21(8): 2154-2160.

76、郭晓慧,吴伟祥*,韩志英,石德智.嗜酸产甲烷菌及其在厌氧处理中的应用.应用生态学报. 2011, 22(2): 537-542.

77、张蕊,韩志英*,陈重军,石德智,等.生物膜型污水脱氮系统中膜结构及微生物生态研究进展.生态学杂志. 2011, 30(11): 2628-2636.

78、谷萌,魏潇潇,李伟,石德智,张鹏,王小铭*.垃圾填埋场与焚烧厂渗滤液全(多)氟化合物赋存特征.中国环境科学. 2020, 40(4), 1555-1562(权威期刊,EI)

79、朱立超,刘元元*,王婉玉,石德智,等.施氏矿物的化学合成及其对含Ce(Ⅵ)地下水吸附修复.环境科学. 2017, 38(2): 629-639.( EI )

80、徐欣怡,彭韵,李芯雯,李蕾*,王小铭,石德智,等.超高温预处理对餐厨垃圾堆肥进程及产品质量的影响.环境科学研究.2022.

教学改革论文:

81、石德智*,刘国涛,等.准好氧填埋在固废综合实验中的体系设计.实验科学与技术, 2017, 15(5): 69-72.

82、石德智*,刘元元,刘国涛,等.应用导向下的案例式教学在清洁生产审核课程中的实践.课程教育研究. 2016, 15: 9-10.

83、石德智*,刘元元,等.《清洁生产与清洁生产审核》课程建设与教学改革探索.教育教学论坛. 2017,4:112-115.

84、石德智*,李莉,袁荣焕.固废综合实验中探究性实验的教学设计—以eggshell-derived HAP制备及其吸附性能研究为例.高教学刊. 2021, 7(13): 75-79

85、石德智*,林庆,袁荣焕,等.市政污泥好氧堆肥在固废综合实验中的教学设计与实践.科教导刊. 2022, 174: 92-95

86、石德智*,马华,李伟民.环境工程专业生产实习课程思政教学的探索与实践.教育教学论坛. 2023.2

87、魏云梅*,高俊敏,石德智,等.面向混合教学模式的课程知识点碎片化管理——以“固体废物处理与处置”课程为例.教育教学论坛. 2021,8: 137-140

发明专利:

1、一种城市生活垃圾的综合处理工艺.发明专利. ZL200610052079.8

2、一种适合于村镇的垃圾综合处理方法.发明专利. ZL200710068139.X

3、一种有机固体废物高温水解处理装置.发明专利. ZL200710069848.X

4、厌氧/缺氧-好氧序批式反应器内培养颗粒污泥的方法.发明专利. ZL200810163174.4

5、危险废液物化综合处理系统.发明专利. ZL201110217842.9

6、一种添加晶种诱导水热稳定垃圾焚烧飞灰中重金属的方法.发明专利. ZL201610264481.6

7、垃圾焚烧飞灰同步稳定重金属和降解多环芳烃的方法.发明专利. ZL201810495561.1

8、催化亚临界水氧化降解垃圾焚烧飞灰中多环芳烃的方法.发明专利. ZL201910315109.7

9、一种垃圾热处理灰渣中含铁物质的富集方法.发明专利. ZL201611239098.1

10、一种低温热处理技术修复氰化物污染土壤的方法.发明专利. ZL201811196444.1

11、水热无害化处理垃圾焚烧飞灰的方法.发明专利. ZL202010553992.6

12、一种用于吸附硫化氢的Cu-HAP-生物炭复合材料及其制备方法.发明专利. ZL202110064443.7

13、垃圾焚烧灰渣水热法重金属稳定方法.发明专利. CN107265470A

14、一种减少氮素损失的猪粪堆肥制备方法.发明专利. CN101423427A

15、一种快速升温脱水及减少堆肥时间的猪粪堆肥制备方法.发明专利. CN101560114A

16、一种碱溶液相转移技术修复氰化物污染土壤的方法.发明专利. CN107309262A

17、一种处理废水中氨氮的方法及固定化生物反应器.发明专利. CN106995238A

18、一种碱性废渣与城市污泥交互作用同步稳定的静态处理方法.发明专利. CN 109574447A

19、一种提高剩余污泥厌氧消化中甲烷产气率的方法.发明专利. CN 109467299A

20、一种静滞水面水动力抑制藻类的方法和实施该方法的装置.发明专利.CN108502974A

21、一种河湖疏浚底泥资源化处理的方法.发明专利. CN114212964A

22、一种有机垃圾快速堆肥腐熟的方法.发明专利. 202210038794.5.

6. 获奖情况

1、国家科学技术进步二等奖,畜禽养殖废弃物生态循环利用与污染减控综合技术(排名第15),2009

2、浙江省科学技术进步一等奖,养殖废水高效脱氮除磷处理与资源化利用技术(排名第9),2008

7. 参与的国际与国内会议情况

1、Southern Extension and Research Activity Group-17. 2006. Ithaca, NewYork.USA

2、中日KSI International Symposium The 1st Young Researchers’ Session Sustainability - from "Now" to the "Future" . 2007.杭州

3、浙江大学-富士電機システムズ研究開発センター. 2010 Tokyo. Japan

4、International Symposium on Science, Technology and Policy for Water PollutionControlat Watershed Scale. 2009

5、Symposium on Science and Technology for Water Pollution Control in China, Japan,andUS. 2010

6、InternationalSymposium on Environmental Behavior and Effects of Biomass-derived Charcoal. 2010

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