Cite

Behrens, W., Hawranek, P. M., 1978. Manual for the preparation of industrial feasibility studies. United Nations. Search in Google Scholar

Besné, A. G., Luna, D., Cobos, A., Lameiras, D., Ortiz-Moreno, H., Güereca, L. P., 2018. A methodological framework of eco-efficiency based on fuzzy logic and Life Cycle Assessment applied to a Mexican SME. Environmental Impact Assessment Review, 68(June 2017), 38–48. DOI: 10.1016/j.eiar.2017.10.008. Search in Google Scholar

Catarino, J., Henriques, J., Maia, A., 2016. Eco-efficiency in Portuguese companies of marble sector. International Journal of Sustainable Engineering, 9(1), 35–46. DOI: 10.1080/19397038.2015.1050479. Search in Google Scholar

Changwichan, K., Silalertruksa, T., Gheewala, S. H., 2018. Eco-efficiency assessment of bioplastics production systems and end-of-life options. Sustainability (Switzerland), 10(4), 1–15. DOI: 10.3390/su10040952. Search in Google Scholar

Faisal, M., Gani, A., Mulana, F., Daimon, H., 2016. Treatment and utilization of industrial tofu waste in Indonesia. Asian Journal of Chemistry, 28(3), 501–507. Search in Google Scholar

Fernández-Viñé, M. B., Gómez-Navarro, T., Capuz-Rizo, S. F., 2013. Assessment of the public administration tools for the improvement of the eco-efficiency of Small and Medium Sized Enterprises. Journal of Cleaner Production, 47, 265–273. DOI: 10.1016/j.jclepro.2012.08.026. Search in Google Scholar

Hartini, S., Ramadan, B. S., Purwaningsih, R., Sumiyati, S., Kesuma, M. A. A., 2021a. Environmental impact assessment of tofu production process: Case study in SME Sugihmanik, Grobogan. IOP Conference Series: Earth and Environmental Science, 894(1). DOI: 10.1088/1755-1315/894/1/012004. Search in Google Scholar

Hartini, S., Sari, D., Aisy, N., Widharto, Y., 2020. Eco-efficiency level of production process of waste cooking oil to be biodiesel with life cycle assessment. E3S Web of Conferences 202, 10004, 1–9. Search in Google Scholar

Hartini, S., Wicaksono, P. A., Prastawa, H., Hadyan, A. F., and Sriyanto., 2019. The environmental impact assessment of furniture production process using the life cycle assessment. IOP Conference Series: Materials Science and Engineering, 598(1). DOI: 10.1088/1757-899X/598/1/012078. Search in Google Scholar

Hartini, S., Widharto, Y., Indarto, S. R., Murdikaningrum, G., 2021b. Eco-efficiency analysis of waste cooking oil recycling into liquid dish soap using life cycle assessment. IOP Conference Series: Earth and Environmental Science, 896(1), 012066 DOI: 10.1088/1755-1315/896/1/012066. Search in Google Scholar

Heikkurinen, P., Young, C. W., Morgan, E., 2019. Business for sustainable change: Extending eco-efficiency and eco-sufficiency strategies to consumers. Journal of Cleaner Production, 218, 656–664. DOI: 10.1016/j.jclepro.2019.02.053 Search in Google Scholar

Ho, T. Q., Hoang, V. N., Wilson, C., Nguyen, T. T., 2018. Eco-efficiency analysis of sustainability-certified coffee production in Vietnam. Journal of Cleaner Production, 183, 251–260. DOI: 10.1016/j.jclepro.2018.02.147. Search in Google Scholar

Islam, M.R., 2018. Sample size and its role in Central Limit Theorem (CLT). International Journal of Physics and Mathematics. Search in Google Scholar

Kurniawati, S. D., Supartono, W., Suyantohadi, A., 2019. Life cycle assessment on a small scale tofu industry in Baturetno village - Bantu District - Yogyakarta. IOP Conference Series: Earth and Environmental Science, 365(1). DOI: 10.1088/1755-1315/365/1/012066. Search in Google Scholar

Lee, J. Y., Cha, K. H., Lim, T. W., Hur, T., 2011. Eco-efficiency of H2 and fuel cell buses. International Journal of Hydrogen Energy, 36(2), 1754– 1765. DOI: 10.1016/j.ijhydene.2010.10.074. Search in Google Scholar

Li, W., Li, Q., Zheng, L., Wang, Y., Zhang, J., Yu, Z., Zhang, Y., 2015. Potential biodiesel and biogas production from corncob by anaerobic fermentation and black soldier fly. Bioresource Technology, 194, 276–282. DOI: 10.1016/j.biortech.2015.06.112. Search in Google Scholar

Margono, H., Sharma, S. C., 2006. Efficiency and productivity analysis of indonesian manufacturing industries. Journal of Asian Economics, 17(6), 979–995. Search in Google Scholar

Müller, K., Holmes, A., Deurer, M., Clothier, B. E., 2015. Eco-efficiency as a sustainability measure for kiwifruit production in New Zealand. Journal of Cleaner Production, 106, 333–342. DOI: 10.1016/j.jclepro.2014.07.049. Search in Google Scholar

Pagan, B., Prasad, P., 2007. The Queensland food eco-efficiency project: reducing risk and improving competitiveness. Journal of Cleaner Production, 15(8–9), 764–771. DOI: 10.1016/j.jclepro.2006.06.014. Search in Google Scholar

Poczta-wajda, A., Sapa, A., 2020. Food Insecurity among Small-Scale Farmersin Poland. Search in Google Scholar

Prastawa, H., Hartini, S., Anshori, M., Hans, S., Wimba, C., 2018. Integration between green quality function deployment, modularity concept and life cycle assessment toward sustainable product design. MATEC Web of Conferences, 159. DOI: 10.1051/matecconf/201815902070. Search in Google Scholar

Prastawa, H., Hartini, S., 2019. The influence of product design on environmental impacts using life cycle assessment. In: AIP Conference Proceedings. p. 030015. Search in Google Scholar

Purwaningsih, R., Simanjuntak, C. F., Rosyada, Z. F., 2020. Eco-efficiency of pencil preduction using life cycle assessment to increase the manufacture sustainability. Jurnal Teknik Industri, 22(1), 47–54. DOI: 10.9744/jti.22.1.47-52. Search in Google Scholar

Rajagukguk, K., 2020. Pengolahan limbah cair tahu menjadi biogas menggunakan reaktor biogas portabel. Quantum Teknika : Jurnal Teknik Mesin Terapan, 1(2). DOI: 10.18196/jqt.010210. Search in Google Scholar

Risnah, S., Yudono, P., Syukur, A., 2013. Pengaruh abu sabut kelapa terhadap ketersediaan K di tanah dan serapan K pada pertumbuhan bibit kakao. Jurnal Ilmu Pertanian, 16(2), 79–91. DOI: 10.22146/ipas.2534. Search in Google Scholar

Rosyidah, M., Masruri, A., Putra, R. A., Mayanita, Ananda, Cindy., 2020. Analysis of environmental impact with the life cycle assessment (LCA) method on tofu production. International Journal of Science, Technology and Management, 1(4), 428–435. DOI: 10.46729/ijstm.v1i4.73. Search in Google Scholar

Susanty, A., Hartini, S., Puspitasari, D., Arsiwi, P., 2015. Measuring Efficiency of Using Resource in the Production Process of Making Stamped-Batik: A DEA Approach. Mediterranean Journal of Social Sciences MCSER Publishing 6, 2039–9340. Search in Google Scholar

Tatari, O., Kucukvar, M., 2012. Eco-efficiency of construction materials: data envelopment analysis. Journal of Construction Engineering and Management, 138(6), 733–741. DOI: 10.1061/(asce)co.1943-7862.0000484. Search in Google Scholar

van der Velden, N. M., Vogtländer, J. G., 2017. Monetisation of external socio-economic costs of industrial production: A social-LCA-based case of clothing production. Journal of Cleaner Production, 153, 320–330. DOI: 10.1016/j.jclepro.2017.03.161. Search in Google Scholar

Vásquez-Ibarra, L., Rebolledo-Leiva, R., Angulo-Meza, L., González-Araya, M. C., Iriarte, A., 2020. The joint use of life cycle assessment and data envelopment analysis methodologies for eco-efficiency assessment: A critical review, taxonomy and future research. Science of the Total Environment, 738, 139538. DOI: 10.1016/j.scitotenv.2020.139538. Search in Google Scholar

Vogtlander, J., 2010. A practical guide to LCA for students, designers and business managers: Cradle-to-grave and Cradle-to-cradle. VSSD. Search in Google Scholar

Vogtlander, J. G., Scheepens, A. E., Bocken, N. M. P., Peck, D., 2017. Combined analyses of costs, market value and eco-costs in circular business models: eco-efficient value creation in remanufacturing. Journal of Re-manufacturing, 7(1), 1–17. DOI: 10.1007/s13243-017-0031-9 Search in Google Scholar

WBCSD. 2006. Eco-Efficiency Learning modul. World Business Council for Sustainable Development. Search in Google Scholar

Zielińska-Chmielewska, A., Olszańska, A., Kaźmierczyk, J., Andrianova, E. V., 2021. Advantages and constraints of eco-efficiency measures: the case of the polish food industry. Agronomy, 11(2), 299. DOI: 10.3390/agronomy11020299. Search in Google Scholar